Identify the chemical reasons for the large negative Delta G associated with hydrolysis of ATP to ADP + P₁. (Select all that apply, a) The ability to tranfer a phosphate, pyrophosphate or an adenylate group to the reacting substrate. b) Resonance stabilization of the inorganic phosphate product c) The presence of the enzyme pyrophosphatase which hydrolyzes PP; to 2 P₁. d) The ability of the phosphate group of ATP to participate in a variety of reactions with common functional groups. e) Release of charge repulsion among the negative charges f) ionization of ADP2 to form ADP3- and H+
Identify the chemical reasons for the large negative Delta G associated with hydrolysis of ATP to ADP + P₁. (Select all that apply, a) The ability to tranfer a phosphate, pyrophosphate or an adenylate group to the reacting substrate. b) Resonance stabilization of the inorganic phosphate product c) The presence of the enzyme pyrophosphatase which hydrolyzes PP; to 2 P₁. d) The ability of the phosphate group of ATP to participate in a variety of reactions with common functional groups. e) Release of charge repulsion among the negative charges f) ionization of ADP2 to form ADP3- and H+
Human Anatomy & Physiology (11th Edition)
11th Edition
ISBN:9780134580999
Author:Elaine N. Marieb, Katja N. Hoehn
Publisher:Elaine N. Marieb, Katja N. Hoehn
Chapter1: The Human Body: An Orientation
Section: Chapter Questions
Problem 1RQ: The correct sequence of levels forming the structural hierarchy is A. (a) organ, organ system,...
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Transcribed Image Text:Identify the chemical reasons for the large negative Delta G associated with
hydrolysis of ATP to ADP + P₁. (Select all that apply,
a) The ability to tranfer a phosphate, pyrophosphate or an adenylate group to
the reacting substrate.
b) Resonance stabilization of the inorganic phosphate product
c) The presence of the enzyme pyrophosphatase which hydrolyzes PP₁ to 2 P₁.
d) The ability of the phosphate group of ATP to participate in a variety of
reactions with common functional groups.
e) Release of charge repulsion among the negative charges
f) ionization of ADP2-to form ADP³- and H+
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