Deck 18: Amino Acid and Nitrogen Metabolism

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Question
The Krebs-Henseleit urea cycle takes place in liver cells entirely within the mitochondrion.
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Question
Nitrate can be reduced to ammonia by virtually all organisms.
Question
Which of the following amino acids is both glucogenic and ketogenic?

A) Lysine
B) Leucine
C) Tryptophan
D) Cysteine
E) Arginine
Question
Transamination reactions can be used to degrade or synthesize amino acids because they have an ________ that has a value close to one.
Question
N2 gas can be converted to NH3 by:

A) most organisms.
B) mammals.
C) all plants.
D) all bacteria.
E) legumes.
Question
Arginine and methionine can be synthesized by mammals but are generally classed as essential amino acids.
Question
With appropriate nutrition, animals maintain nitrogen intake and excretion at equivalent rates.
Question
The proteasome is a large multisubunit ATP-dependent protease that degrades proteins that have been modified by the attachment of ________.
Question
Pyridoxal phosphate is a versatile coenzyme as it is capable of forming a stable ________ base between an amino acid substrate and the coenzyme.
Question
Nitrogen fixation requires the hydrolysis of 8 ATPs to produce 2 NH3 molecules from 1 N2.
Question
The common degradation product of lysine, tryptophan, phenylalanine and tyrosine is ________.
Question
The H2S produced by metabolism of cysteine is a waste product with no physiological or biochemical function.
Question
Which of the following enzymes is NOT involved in the conversion of NH3 to an organic nitrogen-containing compound?

A) Glutamate dehydrogenase
B) Carbamoyl phosphate dehydrogenase
C) Glutamate-oxaloacetate transaminase
D) Glutamine synthetase
E) Asparagine synthetase
Question
Which of the following amino acids cannot be used to provide an intermediate of the citric acid cycle?

A) Histidine
B) Proline
C) Phenylalanine
D) Lysine
E) Tyrosine
Question
The oxidation of branched chain amino acids shares a similar chemical strategy with β-oxidation of fatty acids.
Question
In the degradation of amino acids in muscle NH4+ is carried to the liver for conversion into urea by:

A) glutamine.
B) asparagine.
C) alanine.
D) either alanine or glutamine.
E) any amino acid.
Question
All amino acids can be synthesized from intermediates of the:

A) glycolytic pathway alone.
B) glycolytic pathway and the pentose phosphate pathway.
C) citric acid cycle alone.
D) the glycolytic pathway and citric acid cycle.
E) the glycolytic pathway, the pentose phosphate pathway and citric acid cycle.
Question
________ high energy phosphates from ATP are consumed in each turn of the urea cycle.
Question
Tetrahydrofolate is a coenzyme involved in the mobilization and utilization of single carbon functional units in the:

A) metabolism of serine, glycine, methionine, and histidine.
B) biosynthesis of purine nucleotides.
C) biosynthesis of thymine.
D) biosynthesis of formylmethionyl-tRNA.
E) all of the above.
Question
In mammals excess dietary protein is degraded with amino acid nitrogen being excreted as ________.
Question
Folate deficiency results in increased risk of cardiovascular disease associated with abnormally high levels of serum ________ due to decreased levels of tetrahydrofolate cofactors required for the methionine synthase reaction.
Question
The catecholamine neurotransmitters are derived from ________.
Question
Apart from in the synthesis of methionine, S-adenosylmethionine is the only biological ________ group donor.
Question
Tyrosine is the precursor of serotonin which has a number of roles in the nervous system.
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Deck 18: Amino Acid and Nitrogen Metabolism
1
The Krebs-Henseleit urea cycle takes place in liver cells entirely within the mitochondrion.
False
2
Nitrate can be reduced to ammonia by virtually all organisms.
False
3
Which of the following amino acids is both glucogenic and ketogenic?

A) Lysine
B) Leucine
C) Tryptophan
D) Cysteine
E) Arginine
C
4
Transamination reactions can be used to degrade or synthesize amino acids because they have an ________ that has a value close to one.
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5
N2 gas can be converted to NH3 by:

A) most organisms.
B) mammals.
C) all plants.
D) all bacteria.
E) legumes.
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6
Arginine and methionine can be synthesized by mammals but are generally classed as essential amino acids.
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7
With appropriate nutrition, animals maintain nitrogen intake and excretion at equivalent rates.
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8
The proteasome is a large multisubunit ATP-dependent protease that degrades proteins that have been modified by the attachment of ________.
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9
Pyridoxal phosphate is a versatile coenzyme as it is capable of forming a stable ________ base between an amino acid substrate and the coenzyme.
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10
Nitrogen fixation requires the hydrolysis of 8 ATPs to produce 2 NH3 molecules from 1 N2.
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11
The common degradation product of lysine, tryptophan, phenylalanine and tyrosine is ________.
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12
The H2S produced by metabolism of cysteine is a waste product with no physiological or biochemical function.
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13
Which of the following enzymes is NOT involved in the conversion of NH3 to an organic nitrogen-containing compound?

A) Glutamate dehydrogenase
B) Carbamoyl phosphate dehydrogenase
C) Glutamate-oxaloacetate transaminase
D) Glutamine synthetase
E) Asparagine synthetase
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14
Which of the following amino acids cannot be used to provide an intermediate of the citric acid cycle?

A) Histidine
B) Proline
C) Phenylalanine
D) Lysine
E) Tyrosine
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15
The oxidation of branched chain amino acids shares a similar chemical strategy with β-oxidation of fatty acids.
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16
In the degradation of amino acids in muscle NH4+ is carried to the liver for conversion into urea by:

A) glutamine.
B) asparagine.
C) alanine.
D) either alanine or glutamine.
E) any amino acid.
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17
All amino acids can be synthesized from intermediates of the:

A) glycolytic pathway alone.
B) glycolytic pathway and the pentose phosphate pathway.
C) citric acid cycle alone.
D) the glycolytic pathway and citric acid cycle.
E) the glycolytic pathway, the pentose phosphate pathway and citric acid cycle.
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18
________ high energy phosphates from ATP are consumed in each turn of the urea cycle.
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19
Tetrahydrofolate is a coenzyme involved in the mobilization and utilization of single carbon functional units in the:

A) metabolism of serine, glycine, methionine, and histidine.
B) biosynthesis of purine nucleotides.
C) biosynthesis of thymine.
D) biosynthesis of formylmethionyl-tRNA.
E) all of the above.
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20
In mammals excess dietary protein is degraded with amino acid nitrogen being excreted as ________.
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21
Folate deficiency results in increased risk of cardiovascular disease associated with abnormally high levels of serum ________ due to decreased levels of tetrahydrofolate cofactors required for the methionine synthase reaction.
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22
The catecholamine neurotransmitters are derived from ________.
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23
Apart from in the synthesis of methionine, S-adenosylmethionine is the only biological ________ group donor.
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24
Tyrosine is the precursor of serotonin which has a number of roles in the nervous system.
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