At what ph will the enzyme show 78% of maximal activity?

Answers

Answer 1

Answer:

The enzyme shows 78% maximal activity at pH 7.5 and 8. 0

Explanation:

At pH 5.5 and 6.5 it has lower activity (one tenth more or less). If it mixes this enzyme with another protein, an activity enhancement only at low pH where the enzyme was not fully active. In other words, a protein that is interacting with enzyme and expands the pH spectrum at which the enzyme is fully active. The pH need is typical because of the side groups of the amino acids. An alteration in pH changes the protonation design and can, in extreme cases, outcome in protein denaturation. The protein stabilizes the enzyme structure, thus keeping it active at sub optimal pH values.Changes in pH may not only affect the shape of an enzyme but it may also change the shape or charge properties of the substrate so that either the substrate cannot bind to the active site or it cannot undergo catalysis.    

Learn more:  

What biomolecules is an enzyme? what is the purpose of enzyme??

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What is enzyme, a substrate and competitive enzyme inhibition?

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Keywords:  enzyme, pH, protein, amino acid, catalysis


Related Questions

Tascha is on a medication that increases the pH of the stomach and makes it alkaline. What is the effect of this medication?

Answers

Ph is a quantitative measure of the hydrogen ions representing the acidity or alkalinity of a solution. Therefore anything that lowers Ph is an acid and anything that raises it is a base. The level of the acid in the stomach is usually in the 1-3 range, but usually closer to 2 empty and 5 full. So the medication Tascha is on, is a base. So I would say the effect would be to raise Ph of the gastric acid without reducing gastric acid secretion.

the answer is e on Plato

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Which is the most accurate description of ionic and covalent bonding

A. Both bonds happen when valence electrons are shared between atoms

B. Both bonds happen when valence electrons are transferred between ions

C. ionic bonds happen when valence electrons are transferred between ions

D. ionic bonds happen when valence electrons are shared between atoms

Answers

C is the most accurate
Hope this helps

Answer:

The correct answer is option C. "ionic bonds happen when valence electrons are transferred between ions".

Explanation:

Ionic and covalent bonding are among the most common chemical bonds that take place to form molecules in nature. One important difference between these two types of bondings are that ionic bonds happen when valence electrons are transferred between ions, while in covalent bonds the valence electrons are shared instead of transferred. This difference makes ionic bonds weaker than covalent bonding.

If a person experiences rapid breathing, muscle twitches, and perspiration when trying to quit using illegal opiates, he or she has probably developed _____.

Answers

This person is experiencing common physical symptoms of what is called "withdrawals". Opiates, when used illegally, can be highly addictive. This drug targets the central nervous system (the brain, cardiovascular and respiratory systems) and contains opioid receptors that receive opiate drugs. Abusing this drug can disrupt a person's brain chemistry, leading to severe physical withdrawal symptoms as listed in the question.

A 50-year-old client who has recently been diagnosed with a chronic degenerative illness has announced to the nurse the intention to commit suicide in order to prevent future suffering. which fact should underlie the nurse's response to this client?

Answers

The nurse should try to soothe the old lady and keep on motivating her positively. She must tell her that she is getting day by day and in the coming few days she will be in best of her health and will be able to live a normal life. This will distract the old lady mind to have any other negative thoughts and she will recover soon.

____ can be metabolized for atp production.

Answers

Final answer:

Glucose, lipids, and glutamine can be metabolized to produce ATP, the main source of energy in cells. Glucose metabolism involves glycolysis and the Krebs cycle, lipids undergo β-oxidation, and glutamine feeds into the Krebs cycle. These processes are essential for cellular energy and biosynthesis.

Explanation:

Glucose, lipids, and glutamine can be metabolized for ATP production. Glucose is metabolized via glycolysis and oxidative phosphorylation (OxPhos), where each molecule of glucose can eventually lead to the generation of up to 34 ATP molecules. Glycolysis occurs in the cytosol and produces two molecules of ATP, while OxPhos takes place in the mitochondria, creating additional ATP by utilizing electrons from reduced cofactors like NADH and FADH2 which are produced during the Krebs cycle.

Lipid catabolism involves the process known as β-oxidation, which generates acetyl-CoA and reduced cofactors NADH and FADH2 that also contribute to ATP production through OxPhos. Glycerol, which stems from triglycerides breakdown, enters glycolysis as glyceraldehyde 3-phosphate. Lastly, glutamine can enter the Krebs cycle after being converted to α-ketoglutarate, participating in anabolic and catabolic reactions that eventually lead to ATP synthesis.

all lipids share what characteristics?

Answers

All lipids share Hydrophobic. Hope this help. GOOD LUCK

Final answer:

Lipids are hydrophobic and nonpolar molecules that do not dissolve in water. They include triglycerides, fatty acids, phospholipids, waxes, and sterols. Lipids serve multiple roles in cells, such as storing energy and forming cell membranes.

Explanation:

Lipids are a diverse group of compounds that share certain characteristics. They are hydrophobic (water-fearing) and do not dissolve in water. This is because they consist of nonpolar molecules, such as hydrocarbons that only have nonpolar carbon-carbon or carbon-hydrogen bonds. Examples of lipids include triglycerides, fatty acids, phospholipids, waxes, and sterols. Lipids have various functions in cells, including energy storage, insulation, and the building blocks of hormones.

When we say that something gives us “energy”, what does that mean? what is a biological definition of energy?

Answers

Power that can be translated into motions.

According to endosymbiosis theory, what is the most likely explanation for the origin of the two mitochondrial membranes

Answers

The endosymbiotic theory designates how a large host cell and consumed bacteria could simply become dependent on one different for survival, thus resulting in a permanent relationship. The explanation behind the origin of the two mitochondrial membranes is the inner membrane was derived from folding of the prokaryotic plasma membrane and the outer from folding in of the eukaryotic plasma membrane.

Final answer:

According to endosymbiosis theory, the most likely explanation for the origin of the two mitochondrial membranes is that mitochondria were derived from one cell engulfing another cell.

Explanation:

The most likely explanation for the origin of the two mitochondrial membranes according to endosymbiosis theory is that mitochondria were derived from one cell engulfing another cell. The inner membrane of mitochondria is bacterial in nature, while the outer membrane is eukaryotic. This supports the idea that one membrane-bound organism was engulfed by another membrane-bound organism.

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1. Why is it difficult to evaluate thresholds for toxic pollutants? a. Synergistic effects are difficult to account for. b. There is not enough research on the consequences of multiple exposures. c. Lack of knowledge on the effect of possible interactions of mutiple toxins. d. All of the above

Answers

The options are all related, and the answer is D) All of the Above. 

The synergistic effects of exposure to multiple toxins are more difficult to quantify and study. As a result, there is not sufficient research on how much a system can take when exposed to multiple pollutants. This lack of research also means that we often do not even know what the effect of these interactions between multiple toxins are.

As a result of these gaps in our knowledge of the interactions between toxins, it is difficult to evaluate the threshold for pollutants, since a system will rarely feature only one pollutant in isolation. 

Imagine yourself in a dark classroom reading PowerPoint slides. If an audience member were to check the internet using her cell phone and causing her screen to light up, chances are that many people would notice the change in illumination in the classroom. However, if the same thing happened in a brightly lit classroom during a discussion, very few people would notice. The cell phone brightness does not change, but its ability to be detected as a change in illumination varies dramatically between the two contexts. This is an example of ________.

Answers

The answer is Weber's law

The scenario described is an example of Weber's Law. The ability to detect a change in a stimulus is proportional to the strength of the initial stimulus, according to Weber's Law, a psychophysical principle.

According to Weber's Law, a psychophysical principle, the ability to detect a change in a stimulus is proportional to the strength of the initial stimulus. In the example, the mobile phone screen's continual change in illumination is more obvious in the dark classroom due to the lower initial luminance.

Given that the relative change is more obvious in the darker setting, this illustrates Weber's Law. The same change is less obvious in a well-lit classroom since the relative change is smaller and the initial illumination level is higher. Weber's Law explains how the context and the stimulus's initial intensity affect how we perceive changes in stimuli.

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what does DNA stand for? also what does RNA stand for?

Answers

RNA, is ribonucleic acid
DNA, is deoxyribonucleic acid
DNA stands for Deoxyribo, Nucleic, Acid.

RNA stands for Ribo, Nucleic, Acid.

At what age is a baby able to grasp with its thumb and fingers?

Answers

At four months or five months a baby can pick up large objects, such as building blocks. She won't be able to let go of them easily, though. At six months a baby starts to hone her hand-eye coordination. A baby can rake an object toward herself, and will start moving objects from one hand to the other.

The ability to grasp objects with the thumb and fingers, known as the pincer grasp, typically develops around nine months of age. Before this, infants use a palmer grasp. Hence, the correct answer is around nine months. Option a is correct.

The ability to grasp objects with the thumb and fingers,  is a significant developmental milestone for infants. This skill typically develops around nine months of age. Before this, infants use a palmer grasp, which involves using the whole hand to pick up objects. By nine to twelve months, infants refine their fine motor skills further, enabling them to pick up smaller objects using their thumb and index finger.

Complete question as follows:

At what age is a baby able to grasp with its thumb and fingers?

a. around  nine months

b. around 6 month

c. around 1 year

How can we address the growing scarcity of common minerals as the human population grows?
A. move communities to uninhabitated areas.
b. Use more energy to locate existing minerals.
c.Find uses for more plentiful minerals.
d. Construct more and larger landfills.

Answers

Answer:

c.Find uses for more plentiful minerals.

Explanation:

A heterogeneous mixture is a

Answers

It's the mixture that composes of components that aren't uniform or they have localized regions that all have different properties.

I hoped the was useful! :>
A type of mixture which is composed of components that aren't uniform or have localized regions that all have properties that are different.

Which lists the three major groups of primates in the proper order from earliest to most recent?

Answers

the 1 first oneeee
the proper order can be exempted if only the brainly user knew how to do it 

What products of digestion are transported by the lymphatic system and enter the blood circulation without passing through the liver?

Answers

Most nutrients absorbed by the small intestine pass to the portal venous system which drains to the liver, where they are processed. Fats (lipids) are passed to the lymphatic system through lymph vessels called lacteals. They are passed from the lymphatic system to the blood circulation via the thoracic duct.

What is the role of the ozone?

Answers

It protects earths surface from dangerous radiation. Your answer is A

Answer:

It protects earths surface from dangerous radiation is the correct answer.

Explanation:

ozone absorbs the ultraviolet rays and prevents the rays from reaching the earth's atmosphere.

ozone is present in the stratosphere region and the ozone present in this region is called the ozone layer and the about 10 percent ozone is present in the below region of the atmosphere called troposphere.

ultraviolet radiation is very harmful as it can cause cancer, damage to the crops and destroy some types of aquatic life.

ozone absorbs the ultraviolet rays and prevents the rays from reaching the earth's atmosphere.

ozone plays an important role in protecting the living things present on the earth as it acts as a guard to protect the earth from the harmful ultraviolet rays.

Why? from the smallest single celled organism to the tallest tree, all life model 1?

Answers

From the smallest single celled organism to the tallest tree all life depend on the properties and reactions of four marcro molecules which are carbohydrate, protein, lipids and nucleic acid.
This is because, these organic molecules are the building blocks of all living things and they are responsible for most of the structure and functions in the body.

why is it important to keep a microscope at least 10 cm from the edge of thr table?

Answers

Final answer:

Keeping a microscope at least 10 cm from the edge of the table is essential in order to prevent accidental damage from falls, which can impair the device's ability to produce high-quality, magnified images. The delicate lenses and components of microscopes need to be protected and maintained properly, a factor which extends to the microscope's table positioning.

Explanation:

The importance of keeping a microscope at least 10 cm away from a table edge lies in the delicate nature of the instrument's construction. Microscopes are comprised of delicate components like lenses and bulbs that can be easily damaged if the microscope falls or is knocked over. A fall can scratch or break the lenses, which are carefully designed to refract light, and subsequently degrade the quality of the image produced.

A microscope's purpose is to create magnified images of small objects for easy viewing and understanding. A damaged lens could inhibit the microscope's ability to effectively magnify an image, altering the final image represented to the observer. Thus, keeping the microscope away from the edge helps protect it from accidental falls and damage.

Additionally, proper microscope maintenance involves practices that protect it from damage. These include cleaning the lenses, avoiding rapid changes in focus, not pushing an objective into a slide, and storing the microscope in a safe location when not in use. Thus, the position of the microscope on the table is an important aspect of caring for the device.

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Keeping a microscope at least 10 cm from the edge of the table is crucial to prevent accidental falls or damage to the equipment.

Placing the microscope too close to the edge increases the risk of it being knocked over, potentially causing costly damage or injury. Additionally, microscopes are delicate instruments that require stability to function properly.

Placing them too close to the edge of the table increases the likelihood of vibrations or disturbances, which can affect the accuracy of observations.

Therefore, maintaining a safe distance from the table's edge ensures the microscope remains stable and secure during use, enhancing both safety and the longevity of the equipment.

With open-choice mate selection, the ensuing marriages are totally subservient to:

Answers

With open-choice mate selection, the ensuing marriages are totally subservient to individual needs and desires.


Mate decision, otherwise called intersexual choice, is a developmental procedure in which choicely is subject to the allure of a person's phenotypic characteristics. Developmental change is conceivable in light of the fact that the qualities that are wanted in a mate are all the more every now and again passed on to every age after some time.

Stitching of the large tissue that acts as a tendon and attaches muscles to bone is called

Answers

The appropriate response is aponeurorrhaphy. Aponeurorrhaphy alludes to the stutured of an aponeurosis, which is the more profound and thicker band of stringy connective tissue appending muscles to bones. It is a strategy in which the solid sheet of tissue that fortified the patient's muscle to close-by bone.

Visible light represents a very small portion of the electromagnetic spectrum. Radiation to the left in the image, such as microwaves, has a longer wavelength than visible light. Radiation to the right has a shorter wavelength than is observable. Which radiation has a higher frequency than visible light?

Answers

Radiation waves I learned this in college.

The right answer is Ultraviolet, X-ray and gamma radiations.

The relation between the wavelength and the frequency is thus:

λ = c / f

Previous relationship involves that the wavelength is inversely proportional to the frequency, and therefore that it is even higher than the frequency is weak, and vice versa.

High frequency (low wavelength) waves correspond to Ultraviolet, X-ray and gamma radiations.

Each water molecule can join to _____ other water molecules by ____ bonds.

Answers

four and hydrogen.
each water molecule can join four other water molecules by hydrogen bonds. that is what I think. 

Give one advantage of using enzymes in industrial manufacturing processes

Answers

The benefits of using enzymes is that they are wonderfully specific catalysts ..Use of Enzymes in industry gives specific product which is required as well as ... One of the major advantage is the purity of product we can get up to 99.96% pure product which seems to be extremely hard by chemical process or fermentation.

The nurse is caring for a patient who has coronary heart disease (chd). the nurse tells the patient, "your cholesterol levels are abnormal; you are at a high risk of having a heart attack." what did the nurse discover regarding the lipoprotein levels in the patient's blood report?

Answers

High levels of low-density lipoproteins (LDL)

What cellular components do some bacterial cells have that make them powerful pathogens? explain your answer. 2. why are penicillins often more effective against gram positive bacteria than gram negative bacteria? 3. why is it important to understand the structure of a bacterial cell when developing an antibioti 4. how do antibiotics work without harming the surrounding human cells? 5. what class of antibiotics would you prescribe for sue? explain your answer. 6. why are antibiotics not effective against viruses? (think back to what you learned about viruses in pbs.)?

Answers

1. The cellular components of bacteria that make them powerful pathogens include the pili, the capsule and the endospores. The pili allows the bacteria to attach itself to the host very tightly, the capsule protects the bacteria from been destroyed and the endospores enable the bacteria to survive in harsh conditions.
2. Penicillin are more effective against gram positive bacteria because, gram positive bacteria possess only one layer of  cytoplasmic membrane, this allow for easy penetration of their cells by penicillin. Penicillin is not effective against gram negative bacteria because they possess two layers of cytoplasmic membranes. 
3. It is very important to understand the structure of a bacteria cell when developing an antibiotic because the effectiveness of the antibiotic depend on the knowledge of the structure of the bacteria and its mechanism of action. Understanding the structure of the bacteria will provides the antibiotic developer the knowledge of the best structure of the bacteria to attack in order to destroy it.
4. The antibiotics which are used as medications against bacteria are usually targeted at the cell wall of the bacteria and human cells do not have cell wall. The antibiotics works by specifically targeting and destroying the bacterial cell wall and invading the cell.
5.The class of antibiotic that should be prescribed for Sue is the sulfa antibiotics.
Sue is suffering from Neisseria menigiditis bacterial infection. Neisseria menigiditis is a gram negative bacteria and so penicillin is not effective against it. The sulfa class of antibiotic destroy the bacteria by interfering with the folic acid synthesis of the bacteria. It does this by preventing the addition of a chemical call PABA to the folic acid molecule during synthesis.
6. Antibiotics are not effective against viruses because, viruses use their host cells to carry out their activities. Antibiotics drugs are designed in such a way that they interfere with one or two of the processes that are vital to the survival of the bacterial cell, thus killing it. But this mechanism can not work in virus because viruses use their hosts' cells to replicate and survive.

Final answer:

Certain bacterial cell components, like capsules and pili, make bacteria powerful pathogens. Penicillins are more effective against Gram-positive bacteria due to the structure of their cell wall. It's crucial to understand bacterial cell structures when developing antibiotics to create treatments that can target bacteria without harming human cells. Antibiotics are ineffective against viruses due to their lack of cellular structures.

Explanation:

Some bacterial cells possess components like a capsule, which protects them from the host's immune system, and pili, which enable attachment to host cells. Both increase their virulence as pathogens.  

2. Penicillins are more effective against Gram-positive bacteria due to their thick peptidoglycan cell wall, which the drug can easily disrupt. Gram-negative bacteria, however, have an outer membrane that prevents the drug from reaching the cell wall.

3. Understanding the structure of a bacterial cell aids in developing antibiotics that can specifically target bacterial components without harming human cells.

4. Antibiotics work by targeting specific components of bacterial cells, such as the cell wall or protein synthesis machinery, which are not present in human cells. This specificity allows antibiotics to harm bacteria without affecting the host.

5. Without information on Sue's condition, a specific class of antibiotics cannot be prescribed. It is dependent on the type of bacteria responsible for her condition.

6. Antibiotics are ineffective against viruses as viruses lack cellular structures and metabolic processes that antibiotics can target. Viruses instead use host cells to replicate, making it difficult for antibiotics to differentiate between virus and host.

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Which statements are true? Check all that apply. In eukaryotes, DNA is found in the cytoplasm of the cell. RNA is the nucleic acid that helps build proteins. DNA is the nucleic acid that carries genetic information. The structure of proteins is determined by DNA. A chromosome is made of RNA.

Answers

RNA is the nucleic acid that helps build proteins. DNA is the nucleic acid that carries genetic information. The structure of proteins is determined by DNA. These answer are true

Genetic material is the factor that is responsible for transfer of traits from parent to offspring. Options B, C, and D are correct. DNA is the genetic material while RNA builds protein.

DNA:

DNA is the genetic material for all living organisms. It is the polymer of nucleotides. In Eukaryotes it is found inside the nucleus.

DNA is condensed to form chromosomes.DNA code for mRNA via the process of transcription.The mRNA has codons that code for amino acids (Protein) via the process of translation.

Hence, Options A and E are incorrect.

Therefore, DNA carries the genetic information and is responsible for the structure of proteins.

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Sperm cells have a very specialized structure, including a flagellum and very little cytoplasm. explain how the structure of a sperm cell contributes to its function.

Answers

A sperm cell's structure is very specialized. Its flagellum is used for locomotive function, to rapidly swim directly through the egg cell. While the cytoplasm, it contains organelles, such as the Mitochondria, wherein respiration occurs, to release the energy needed for the sperm's journey towards the egg cell. Sperm cells, contain special enzymes known as acrosomes, this special enzymes allows the sperm to break through the cell membrane of the egg.

Final answer:

The specialized structure of sperm, including the acrosome, mitochondria-packed mid-piece, and tail, significantly contributes to its functionality in reproduction by enabling mobility and efficiency in fertilizing the egg.

Explanation:

The structure of a sperm cell is highly specialized, contributing significantly to its function. The sperm consists of three main parts: the head, mid-piece, and tail. The head contains a compact haploid nucleus, with very little cytoplasm, to ensure a small size for better mobility. It is covered by the acrosome, a cap filled with lysosomal enzymes essential for penetrating the egg during fertilization.

The mid-piece is densely packed with mitochondria that produce ATP, powering the flagellum for motility. The tail, or flagellum, enables movement through the female reproductive tract, significantly increasing the chance of reaching and fertilizing the egg.

In considering the reactions between molecules unique to living systems—carbohydrates, lipids (fats), proteins, and nucleic acids—which molecule does not rely on hydrolysis reactions

Answers

DNA is the molecule that doesn't rely on hydrolysis reactions.

If a cell membrane were composed of only a phospholipid bilayer what properties would it have

Answers

Life aint a game 10 is correct. Also the cell would be unable to respond to its environment as this relys on molecules binding to proteins on the cell surface. For the same reason most mechanism of cell signaling not work because the initial step is for a molecule to bind to a receptor. Also no proteins = no receptors = no immune response in white blood cells because this also requires receptors to recognise foreign material.
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