Unit 6: Metabolism III - Practice Quiz

BTY501 — Biomolecules And Metabolism 60 Questions
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1 Which coenzyme is required for transamination reactions?

Transamination reactions Easy
A. Thiamine pyrophosphate (TPP)
B. Biotin
C. Pyridoxal phosphate (PLP)
D. Cobalamin

2 In a transamination reaction, an amino group is transferred from an amino acid to which common acceptor molecule?

Transamination reactions Easy
A. Oxaloacetate only
B. Acetyl-CoA
C. -Ketoglutarate
D. Pyruvate only

3 The enzyme alanine aminotransferase (ALT) catalyzes the transfer of an amino group between alanine and which keto acid?

Transamination reactions Easy
A. Succinate
B. Pyruvate
C. Citrate
D. Fumarate

4 Which enzyme is primarily responsible for oxidative deamination of glutamate in the liver?

Oxidative deamination reaction Easy
A. Carbamoyl phosphate synthetase
B. Glutamine synthetase
C. Aspartate aminotransferase
D. Glutamate dehydrogenase

5 What is released as a product during the oxidative deamination of an amino acid?

Oxidative deamination reaction Easy
A. Free ammonia ()
B. Lactic acid
C. Molecular oxygen
D. Carbon dioxide

6 Glutamate dehydrogenase can use which coenzyme(s) as electron acceptors?

Oxidative deamination reaction Easy
A. Both and
B. Only ATP
C. Only
D. Only

7 Glucogenic amino acids are those that can be converted into which of the following?

Glucogenic amino acids Easy
A. Cholesterol
B. Fatty acids only
C. Glucose
D. Ketone bodies only

8 Which of the following is a purely glucogenic amino acid?

Glucogenic amino acids Easy
A. Leucine
B. Alanine
C. Lysine
D. Isoleucine

9 Glucogenic amino acids typically enter metabolism by forming pyruvate or intermediates of which pathway?

Glucogenic amino acids Easy
A. The pentose phosphate pathway
B. The urea cycle
C. Fatty acid synthesis
D. The citric acid (TCA) cycle

10 Which two amino acids are exclusively ketogenic?

Ketogenic amino acids Easy
A. Aspartate and glutamate
B. Serine and cysteine
C. Leucine and lysine
D. Alanine and glycine

11 Ketogenic amino acids are degraded to acetyl-CoA or which other molecule?

Ketogenic amino acids Easy
A. Succinyl-CoA
B. -Ketoglutarate
C. Oxaloacetate
D. Acetoacetyl-CoA

12 The products of ketogenic amino acid degradation can be used to synthesize which of the following?

Ketogenic amino acids Easy
A. Ketone bodies and fatty acids
B. Nucleotides only
C. Urea only
D. Glucose only

13 In which organ does the urea cycle primarily occur?

Urea cycle and its significance Easy
A. Kidney
B. Muscle
C. Brain
D. Liver

14 What is the main physiological significance of the urea cycle?

Urea cycle and its significance Easy
A. Synthesis of glucose from lactate
B. Production of ATP for muscle contraction
C. Detoxification of ammonia by converting it to urea
D. Storage of nitrogen as glycogen

15 The urea cycle occurs partly in the mitochondria and partly in which cellular compartment?

Urea cycle and its significance Easy
A. Lysosome
B. Cytosol
C. Golgi apparatus
D. Nucleus

16 How many nitrogen atoms does one molecule of urea contain?

Urea cycle and its significance Easy
A. 4
B. 3
C. 1
D. 2

17 In the de novo synthesis of purine nucleotides, the purine ring is built upon which starting molecule?

Biosynthesis of nucleotides Easy
A. Uracil
B. Glucose-6-phosphate
C. Free adenine base
D. Ribose-5-phosphate (as PRPP)

18 Which pathway reuses free purine and pyrimidine bases to form nucleotides?

Biosynthesis of nucleotides Easy
A. De novo pathway
B. Glycolysis
C. Salvage pathway
D. Beta-oxidation

19 In pyrimidine biosynthesis, the pyrimidine ring is first synthesized and then attached to ribose-5-phosphate. This differs from purine synthesis in which key way?

Biosynthesis of nucleotides Easy
A. It occurs only in mitochondria without cytosolic steps
B. The ring is never attached to a sugar
C. The ring is made before being joined to the sugar in pyrimidine synthesis
D. It requires no PRPP at any stage

20 What is the final end product of purine degradation in humans?

Degradation of nucleotides Easy
A. Allantoin
B. Ammonia
C. Uric acid
D. Urea

21 During transamination, the amino group of an amino acid is transferred to -ketoglutarate, converting it into which product?

Transamination reactions Medium
A. Glutamate
B. Alanine
C. Pyruvate
D. Aspartate

22 Which coenzyme is essential for the catalytic activity of aminotransferases (transaminases)?

Transamination reactions Medium
A. Pyridoxal phosphate (PLP)
B. Flavin adenine dinucleotide (FAD)
C. Biotin
D. Thiamine pyrophosphate (TPP)

23 Elevated serum levels of ALT (alanine aminotransferase) most specifically indicate damage to which organ?

Transamination reactions Medium
A. Kidney
B. Liver
C. Heart
D. Skeletal muscle

24 Which enzyme catalyzes the oxidative deamination of glutamate, and what is a key product besides -ketoglutarate?

Oxidative deamination reaction Medium
A. Glutaminase; releases urea
B. Transaminase; releases pyruvate
C. Glutamate dehydrogenase; releases free ammonia
D. Glutamine synthetase; releases

25 Glutamate dehydrogenase is an allosteric enzyme. Which molecule acts as an allosteric activator?

Oxidative deamination reaction Medium
A. GTP
B. NADH
C. ADP
D. ATP

26 Why is the oxidative deamination of glutamate metabolically important for nitrogen disposal?

Oxidative deamination reaction Medium
A. It converts ammonia into glutamine for storage
B. It funnels amino groups collected by transamination into free ammonia for the urea cycle
C. It transfers nitrogen to fatty acids for excretion
D. It directly synthesizes urea from amino acids

27 A glucogenic amino acid is one whose carbon skeleton can be converted into which intermediate for gluconeogenesis?

Glucogenic amino acids Medium
A. Free fatty acids
B. Acetyl-CoA only
C. Acetoacetyl-CoA only
D. Pyruvate or a citric acid cycle intermediate

28 Which of the following amino acids is purely glucogenic?

Glucogenic amino acids Medium
A. Lysine
B. Isoleucine
C. Leucine
D. Alanine

29 During prolonged fasting, which glucogenic amino acid released from muscle is the major carrier of nitrogen to the liver for gluconeogenesis?

Glucogenic amino acids Medium
A. Glutamine
B. Valine
C. Alanine
D. Leucine

30 Which pair of amino acids is exclusively ketogenic?

Ketogenic amino acids Medium
A. Serine and threonine
B. Aspartate and asparagine
C. Leucine and lysine
D. Alanine and glycine

31 Why can the carbon skeletons of purely ketogenic amino acids NOT be used for net glucose synthesis?

Ketogenic amino acids Medium
A. They enter the urea cycle instead of gluconeogenesis
B. They yield acetyl-CoA, which cannot be converted to pyruvate in humans
C. They are converted only into nucleotides
D. They are directly excreted in urine

32 Which amino acids are considered both glucogenic and ketogenic?

Ketogenic amino acids Medium
A. Leucine, lysine, valine, methionine
B. Alanine, glycine, serine, cysteine
C. Phenylalanine, tyrosine, tryptophan, isoleucine
D. Aspartate, glutamate, arginine, proline

33 In which two subcellular compartments do the reactions of the urea cycle occur?

Urea cycle and its significance Medium
A. Cytosol and nucleus
B. Mitochondria and endoplasmic reticulum
C. Lysosome and cytosol
D. Mitochondria and cytosol

34 Which enzyme catalyzes the committed, rate-limiting step of the urea cycle and requires N-acetylglutamate as an activator?

Urea cycle and its significance Medium
A. Carbamoyl phosphate synthetase I
B. Ornithine transcarbamoylase
C. Argininosuccinate synthetase
D. Arginase

35 In the overall urea cycle, the two nitrogen atoms of urea are derived from which sources?

Urea cycle and its significance Medium
A. Two molecules of aspartate
B. Free ammonia and glutamate
C. Free ammonia and aspartate
D. Glutamine and alanine

36 How many high-energy phosphate bonds (ATP equivalents) are consumed to synthesize one molecule of urea?

Urea cycle and its significance Medium
A. 4
B. 3
C. 6
D. 2

37 In de novo purine synthesis, the purine ring is assembled on which activated starting molecule?

Biosynthesis of nucleotides Medium
A. Orotic acid
B. 5-Phosphoribosyl-1-pyrophosphate (PRPP)
C. Inosine monophosphate
D. Carbamoyl aspartate

38 Which key difference distinguishes de novo pyrimidine synthesis from purine synthesis?

Biosynthesis of nucleotides Medium
A. The pyrimidine ring is synthesized first, then attached to PRPP
B. PRPP is not required at any step
C. The ring is built directly on the ribose sugar
D. It begins with inosine monophosphate

39 The salvage pathway enzyme HGPRT, deficient in Lesch-Nyhan syndrome, is involved in the reuse of which molecules?

Biosynthesis of nucleotides Medium
A. Pyrimidine bases cytosine and uracil
B. Purine bases hypoxanthine and guanine
C. The amino acid glutamine
D. Ribose-5-phosphate

40 What is the final excretory product of purine degradation in humans?

Degradation of nucleotides Medium
A. Uric acid
B. Allantoin
C. Urea
D. Ammonia

41 During transamination, the pyridoxal phosphate (PLP) cofactor forms a covalent intermediate with the amino acid substrate. Which intermediate is the immediate species formed before the ketimine, and what is its significance?

Transamination reactions Hard
A. An external aldimine (Schiff base) that labilizes the -carbon bond
B. A pyridoxamine phosphate–pyruvate adduct
C. A quinonoid stabilized by carboxyl resonance only
D. An internal aldimine with the active-site lysine

42 A clinician measures elevated serum ALT (alanine aminotransferase). Which reaction does ALT catalyze, and why is it a useful marker?

Transamination reactions Hard
A. Glutamine + -ketoglutarate 2 glutamate
B. Alanine + -ketoglutarate pyruvate + glutamate
C. Glutamate + oxaloacetate aspartate + -ketoglutarate
D. Aspartate + -ketoglutarate oxaloacetate + glutamate

43 Glutamate dehydrogenase (GDH) occupies a central role because it channels nitrogen from transamination into free ammonia. Which statement about its regulation is correct?

Oxidative deamination reaction Hard
A. It is activated by NADH and inhibited by NAD
B. It is irreversibly committed to the reductive amination direction
C. ADP inhibits it, while GTP allosterically activates it
D. GTP and ATP inhibit it, while ADP and GDP activate it

44 Why is glutamate uniquely positioned to undergo oxidative deamination while most other amino acids are not directly deaminated this way?

Oxidative deamination reaction Hard
A. Only glutamate possesses a side-chain carboxyl that stabilizes the imine intermediate
B. Glutamate dehydrogenase can use either NAD or NADP and acts on the collector of amino groups
C. Glutamate is the sole amino acid whose -keto acid is a TCA intermediate
D. Glutamate is transaminated by no other enzyme, forcing deamination

45 An amino acid is catabolized to succinyl-CoA. Explain why this makes it glucogenic despite succinyl-CoA being a TCA intermediate.

Glucogenic amino acids Hard
A. Succinyl-CoA condenses with glucose to form glycogen
B. Succinyl-CoA yields acetyl-CoA which supports net glucose synthesis
C. Succinyl-CoA is directly decarboxylated to pyruvate
D. Succinyl-CoA is converted to oxaloacetate, which feeds phosphoenolpyruvate for gluconeogenesis

46 Which set contains amino acids that are exclusively glucogenic (neither ketogenic nor both)?

Glucogenic amino acids Hard
A. Leucine, lysine, isoleucine, phenylalanine
B. Tyrosine, tryptophan, threonine, alanine
C. Alanine, aspartate, methionine, valine
D. Isoleucine, phenylalanine, tyrosine, threonine

47 Leucine and lysine are the only two purely ketogenic amino acids. What is the metabolic consequence of this classification during prolonged starvation?

Ketogenic amino acids Hard
A. They are spared from catabolism because they cannot be deaminated
B. Their carbons are converted to oxaloacetate to sustain gluconeogenesis
C. Their skeletons enter the cycle as -ketoglutarate for glucose output
D. Their carbon skeletons cannot generate net glucose and instead yield ketone bodies or acetyl-CoA

48 Isoleucine is classified as both glucogenic and ketogenic. Which pair of end products justifies this dual classification?

Ketogenic amino acids Hard
A. Oxaloacetate and fumarate
B. Succinyl-CoA and acetyl-CoA
C. -ketoglutarate and acetyl-CoA
D. Pyruvate and acetoacetate

49 In the urea cycle, the two nitrogen atoms of urea originate from distinct sources. Identify them correctly.

Urea cycle and its significance Hard
A. One from glutamate and one from glutamine directly
B. Both from free ammonia via two molecules of carbamoyl phosphate
C. Both from aspartate donated in two condensation steps
D. One from free ammonia (via carbamoyl phosphate) and one from aspartate

50 Carbamoyl phosphate synthetase I (CPS-I) requires an allosteric activator. What is it, and what does its requirement signify metabolically?

Urea cycle and its significance Hard
A. Fructose-2,6-bisphosphate, signaling high carbohydrate flux
B. Citrulline, signaling downstream cycle backpressure
C. Biotin, signaling adequate fixation capacity
D. N-acetylglutamate, signaling high amino acid/nitrogen load

51 A newborn presents with hyperammonemia, elevated orotic acid in urine, and low citrulline. Which enzyme deficiency best explains this pattern?

Urea cycle and its significance Hard
A. Ornithine transcarbamoylase (OTC)
B. Carbamoyl phosphate synthetase I (CPS-I)
C. Argininosuccinate synthetase (ASS)
D. Arginase

52 How many high-energy phosphate bonds (ATP equivalents) are consumed to synthesize one molecule of urea, and why?

Urea cycle and its significance Hard
A. 4, because 2 ATP 2 ADP in CPS-I and 1 ATP AMP + PPi in ASS
B. 3, one ATP consumed at each of three cycle steps
C. 5, including two ATP regenerated in the aspartate shuttle
D. 2, one at CPS-I and one at arginase

53 In de novo purine synthesis, the purine ring is built directly on ribose-5-phosphate. Which is the true committed and rate-limiting step of the pathway?

Biosynthesis of nucleotides Hard
A. IMP AMP via adenylosuccinate
B. Ribose-5-phosphate + ATP PRPP (by PRPP synthetase)
C. Formation of formylglycinamide ribonucleotide
D. Glutamine + PRPP 5-phosphoribosylamine (by glutamine-PRPP amidotransferase)

54 The conversion of IMP to AMP and GMP is reciprocally regulated by energy status. Which statement is correct?

Biosynthesis of nucleotides Hard
A. GTP drives AMP synthesis and ATP drives GMP synthesis
B. ATP drives AMP synthesis and GTP drives GMP synthesis
C. NADPH drives both directions equally
D. AMP and GMP each require their own product as a cofactor

55 Ribonucleotide reductase converts ribonucleotides to deoxyribonucleotides. Which reductant ultimately supplies the electrons, and what regenerates it?

Biosynthesis of nucleotides Hard
A. Thioredoxin (or glutaredoxin), regenerated by NADPH
B. Ascorbate, regenerated by glutathione directly
C. FADH, regenerated by the TCA cycle
D. NADH, regenerated by glycolysis

56 In de novo pyrimidine synthesis, the ring is assembled first and then attached to ribose. Which reaction supplies the sugar-phosphate, and at what stage?

Biosynthesis of nucleotides Hard
A. Aspartate + PRPP forms the first ring atom before carbamoylation
B. Orotate + PRPP orotidine-5'-monophosphate (OMP), after ring completion
C. PRPP condenses with carbamoyl phosphate at the outset
D. Uracil + ribose-1-phosphate salvages to UMP as the de novo step

57 A patient with gout has hyperuricemia. Which enzyme's activity most directly produces uric acid, and what reaction does it catalyze?

Degradation of nucleotides Hard
A. Xanthine oxidase, oxidizing hypoxanthine to xanthine and xanthine to uric acid
B. Purine nucleoside phosphorylase, cleaving the glycosidic bond
C. Guanase, converting guanine to xanthine only
D. Adenosine deaminase, converting adenosine to inosine

58 Lesch-Nyhan syndrome results from HGPRT deficiency. Why does loss of a salvage enzyme paradoxically cause overproduction of uric acid?

Degradation of nucleotides Hard
A. PRPP accumulates and hypoxanthine/guanine are diverted to degradation, boosting de novo synthesis and purine turnover
B. HGPRT normally degrades uric acid directly, so its loss raises urate
C. Loss of salvage forces xanthine oxidase to work in reverse
D. HGPRT deficiency blocks the urea cycle, backing up purines

59 Adenosine deaminase (ADA) deficiency causes severe combined immunodeficiency (SCID). What is the biochemical mechanism linking ADA loss to lymphocyte toxicity?

Degradation of nucleotides Hard
A. Ammonia builds up from failed deamination, poisoning lymphocytes
B. dATP accumulates and inhibits ribonucleotide reductase, blocking DNA synthesis in lymphocytes
C. Uric acid accumulates and directly lyses T cells
D. Inosine depletion starves cells of purine salvage substrate

60 Compared to purines, the degradation of pyrimidines yields highly soluble products. Which set represents typical pyrimidine catabolic end products?

Degradation of nucleotides Hard
A. Xanthine, hypoxanthine, and urea
B. -aminoisobutyrate only, with no nitrogen release
C. Uric acid, allantoin, and
D. -alanine, , and (from uracil/cytosine)