ENZYME SUBSTRATE COMPLEX----- Illustrates the induced fit model of operation. it also illustrates the lock and key model.
ENZYME--------- lowers the activation energy for a reaction....hence reduces the threshold and make the reaction fast.
COMPETITIVE INHIBITION------ prevents substrate binding via active site. the competition molecule is an structural analogue of the substrate and hence compete to the substrate in binding.
SUBSTRATE------- always consumed in an enzymatic reaction. Without substrate, no enzymatic reaction is possible.
NON COMPETITIVE INHIBITION--------involves an allosteric molecule for inhibition. the allosteric molecule bind to other active site and changes the configuration of the substrate active site, so that the substrate fail to bind to the active site and the enzymatic reaction doesnt occur.
Question 3 Answer saved Points out of 5 P Flag question FIND THE BEST FIT AMONG...
a- In the induced-fit model of enzyme action, a _______ must bind to the enzyme's______ for the enzyme to perform its function. (A) catalyst; activation energy (B) product; catalytic site (C) product; active site (D) water molecule; allosteric site (E) substrate; active site b- Which of the following is CORRECT for an exergonic reaction? (A) more activation energy is needed than for an endergonic reaction (B) less activation energy is needed than for an endergonic reaction (C) products have more...
A. Choose anly one correcet answer for each of the following questions (4 pts cach). AL Some and KM values are shown below for enzyme-substrate pairs. Which of the following enzymes is most efficient in converting the substrate into the product? b) kes.-4x10s s", KM-0.026 M d)k,,-5.7 x1o's", K-2x10s M c)人at-900 s", KM-2.5 × 10.5 M A2. Which of the following enzyme reaction mechanisms has multiple substrates? a) induced-fit e) Michaclis-Menton b) random sequential d) reversible covalent modification e) None...
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Part A Which of the following is/are means whereby a catalyst can lower the activation energy of a reaction? quantum tunneling decreasing the number of reactive molecules permanently binding substrates inefficient collisions altering the temperature within the cell to one appropriate for reactions to proceed Subrnit Request Answer Part A An enzyme Obinds substrates in a manner that facilitates the formation of product decreases the rate of a reaction. is always...
Question 5 Answer saved Points out of 1.00 Remove flag A pharmacology student asks the instructor what an accurate description of a drug agonist is. What is the instructor's best response? Select one: O a Adrug that reacts with a receptor site on a cell preventing a reaction with another chemical ons different receptor site O O O b. A drug that interferes with the enzyme systems that act as catalyst for different chemical reactions C. A drug that interacts...
Match the term to the correct description. Choices may only be used once. Group of answer choices [ Choose ] An inhibitor molecule binds to the active site. Part of an enzyme where the substrate binds to Protein molecules that function as biological catalysts An inhibitor molecule binds to an allosteric site and prevents the substrate from binding to the active site. A substance...
biochemistry
if you could please help me answer the following questions!
* 1. (5 pts) Which of the following is a catalytic mechanism utilize by enzymes? Multiple answers may be correct. Select all that are correct. 1. Acid-base a) acid-base catalysis d. metal-ion catalysis 12. Covalent b covalent catalysis e. transition state binding c. heterogeneou 3. Metalion . Proximin onentation, E 2. 76 pts) What is the "steady-state" assumption in the derivation of the s.clectrosch? Tynsin Michaelis-Menten equation? Sie binding...
1. According to the paper, what does lactate dehydrogenase
(LDH) do and what does it allow to happen within the myofiber? (5
points)
2. According to the paper, what is the major disadvantage of
relying on glycolysis during high-intensity exercise? (5
points)
3. Using Figure 1 in the paper, briefly describe the different
sources of ATP production at 50% versus 90% AND explain whether you
believe this depiction of ATP production applies to a Type IIX
myofiber in a human....