Biomolecules MCQs | 100 Out Of 492 MCQs | Class 11 Biology
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Biomolecules MCQs with Answers – Part 4 (Class 11 Biology)

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301. A mutant enzyme binds substrate normally and converts it into product, but product release from the active site is extremely slow. Which immediate pattern is most likely?
ⓐ. Enzyme-product complexes accumulate, leaving less free enzyme for new catalytic cycles.
ⓑ. Enzyme-substrate complexes cannot form, so substrate binding is completely absent.
ⓒ. Free enzyme accumulates rapidly because product remains permanently dissolved in the medium.
ⓓ. Substrate is converted without passing through any enzyme-bound state.
302. After a reaction has gone to completion, the enzyme is separated from the product and found to have the same primary structure and catalytic capacity it had initially. This observation most directly demonstrates that:
ⓐ. the enzyme supplied atoms that became permanent parts of the product
ⓑ. product formation required destruction of the enzyme's peptide bonds
ⓒ. the enzyme changed catalytic class during the reaction but retained its sequence
ⓓ. the enzyme acted catalytically and was regenerated after product release
303. One enzyme molecule completes \(40\) catalytic cycles each second. Assuming every cycle converts one substrate molecule into one product molecule, how many product molecules can \(250\) enzyme molecules form in \(3\,\text{s}\)?
ⓐ. \(10{,}000\)
ⓑ. \(30{,}000\)
ⓒ. \(3{,}000\)
ⓓ. \(750\)
304. Consider the following statements about a complete enzyme catalytic cycle. I. Substrate binding produces an enzyme-substrate complex. II. The active site promotes bond breaking or bond formation. III. Product may remain briefly bound in an enzyme-product complex. IV. Product release restores enzyme that can begin another cycle.
ⓐ. I and III only
ⓑ. II and IV only
ⓒ. I, II, III and IV
ⓓ. I, II and IV only
305. An enzyme is tested while four variables are changed separately: thermal condition, acidity, amount of available substrate and addition of an activity-reducing chemical. Which set names these variables?
ⓐ. Temperature, pH, product concentration and activator
ⓑ. Temperature, ionic composition, substrate concentration and enzyme mass
ⓒ. Pressure, pH, product concentration and cofactor type
ⓓ. Temperature, pH, substrate concentration and inhibitor
306. A reaction is initially performed at its optimum pH and temperature with abundant substrate. The mixture is then heated excessively and a chemical that binds the enzyme is added. Activity falls almost to zero. Which interpretation is strongest?
ⓐ. Heat can disrupt enzyme structure, and the added chemical may inhibit by binding the enzyme.
ⓑ. Abundant substrate guarantees maximum activity regardless of enzyme structure or regulatory chemicals.
ⓒ. The decline shows that substrate concentration became limiting after heating.
ⓓ. The effects of pH and temperature disappear once substrate concentration is high.
307. Match each activity factor with its most direct stated effect. A Column II entry is used once.
Column IColumn II
P. Excessive temperature\(1\). Alters ionisation and may disturb the active-site environment
Q. pH far from optimum\(2\). Can denature an ordinary protein enzyme
R. Increasing substrate concentration\(3\). Raises velocity until available active sites approach saturation
S. Specific inhibitor\(4\). Binds enzyme and lowers catalytic activity
ⓐ. P-\(1\), Q-\(2\), R-\(4\), S-\(3\)
ⓑ. P-\(2\), Q-\(1\), R-\(3\), S-\(4\)
ⓒ. P-\(3\), Q-\(4\), R-\(1\), S-\(2\)
ⓓ. P-\(2\), Q-\(3\), R-\(4\), S-\(1\)
308. A graph has temperature on the horizontal axis and reaction velocity on the vertical axis. Activity rises to a maximum at \(37^\circ\text{C}\) and decreases at both lower and higher temperatures. Which graph feature identifies the optimum temperature?
ⓐ. the first temperature showing detectable activity
ⓑ. the temperature causing permanent enzyme inactivity
ⓒ. the midpoint of the tested temperature range
ⓓ. the temperature giving the maximum measured velocity
309. Two enzymes are tested over the same temperature range. Enzyme P reaches maximum activity at \(35^\circ\text{C}\), while Enzyme Q reaches maximum activity at \(75^\circ\text{C}\). Which conclusion is justified?
ⓐ. P has the higher optimum temperature and greater activity at every point.
ⓑ. Q is necessarily inorganic because its optimum temperature is higher.
ⓒ. Q has the higher optimum, indicating adaptation to hotter conditions.
ⓓ. Both enzymes have the same optimum temperature near \(55^\circ\text{C}\).
310. Maximum activity occurs at pH \(7\). When the reaction mixture is adjusted to pH \(3\), activity decreases sharply even though temperature and substrate concentration remain unchanged. The most direct explanation is:
ⓐ. The low pH altered ionisation and the active-site environment.
ⓑ. The enzyme has reached substrate saturation at pH \(3\).
ⓒ. The substrate has necessarily become a lipid at the lower pH.
ⓓ. The number of enzyme molecules has automatically fallen to zero.
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