True False Glucose oxidase can be used in determining glucose in the blood and urine Regardless of the distance between the enzyme and substrate, they will bind. Lipase is an enzyme primarily produced by the pancreas that breakdown peptide bonds between the oxygen molecules of glycerol and the hydroxyl molecules of fatty acids.

Biochemistry
9th Edition
ISBN:9781319114671
Author:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Publisher:Lubert Stryer, Jeremy M. Berg, John L. Tymoczko, Gregory J. Gatto Jr.
Chapter1: Biochemistry: An Evolving Science
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True
False
Glucose oxidase can be used
in determining glucose in the
blood and urine
Regardless of the distance
between the enzyme and
substrate, they will bind.
Lipase is an enzyme primarily
produced by the pancreas
that breakdown peptide
bonds between the oxygen
molecules of glycerol and the
hydroxyl molecules of fatty
acids.
Coenzymes are organic
substances, while cofactors
are inorganic.
L-Amino-acid oxidase will
catalyze reactions of D (-) -
glycine.
Redox reaction via
oxidoreductase is still
possible with one reactant
only.
The apoenzyme is the protein
part of the enzyme, which is
enzymatically inactive
without cofactors.
Lack of enzymes will lead to
block in metabolic pathways
causing inborn errors of
metabolism
Ligases are enzymes that
catalyze the breakdown of
chemical bonds.
Ribozymes are catalytically
active RNA molecules or
RNA-protein complexes
Transcribed Image Text:True False Glucose oxidase can be used in determining glucose in the blood and urine Regardless of the distance between the enzyme and substrate, they will bind. Lipase is an enzyme primarily produced by the pancreas that breakdown peptide bonds between the oxygen molecules of glycerol and the hydroxyl molecules of fatty acids. Coenzymes are organic substances, while cofactors are inorganic. L-Amino-acid oxidase will catalyze reactions of D (-) - glycine. Redox reaction via oxidoreductase is still possible with one reactant only. The apoenzyme is the protein part of the enzyme, which is enzymatically inactive without cofactors. Lack of enzymes will lead to block in metabolic pathways causing inborn errors of metabolism Ligases are enzymes that catalyze the breakdown of chemical bonds. Ribozymes are catalytically active RNA molecules or RNA-protein complexes
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