For each of the metabolic transformations in (a) through (h) below, determine whether oxidation or reduction has occurred.  Balance each equation by adding H-H and, where necessary, H2O on the appropriate side of the chemical equation.

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For each of the metabolic transformations in (a) through (h) below, determine whether oxidation or reduction has occurred.  Balance each equation by adding H-H and, where necessary, H2O on the appropriate side of the chemical equation.



cleavage (reaction 2 below). (The square brackets mean "it happens in ti
active site".) Conversely oxidation results from dehydrogenation. In ma
biochemical redox reactions the coenzymes NAD+ and FAD
dehydrogenate/hydrogenate (oxidize/reduce) organic molecules in the
presence of the proper enzymes.
reduction
CH,-C-H + H-H
oxidation
Acetaldehyde
O-H
(1)
reduction
сH, с - н (1)
oxidation
Ethanol
For each of the metabolic transformations in (a) through (h) below,
determine whether oxidation or reduction has occurred. Balance each
reduction
+ H+ + H-H
equation by adding H-H and, where necessary, H2O on the appropriate si
of the chemical equation.
CH, C,
CH
oxidation
Acetate
(2)
This should be the anionic form
reduction
CH,--H + o
(2)
of benzoic acid
oxidation
H
Acetaldehyde
H.
(a)
сн, — он
- H-C-H
(f)
+H+
H.
Methanol
Formaldehyde
H
Toluene
Benzoate
(b)
н-С—н — н-с,
Formaldehyde
Formate
(g)
CH,- CH,
(c)
0=C=0 -
H-C
This should be
a hydroxyl.
Succinate
Fumarate
Carbon dioxide
Formate
он о
он
OH
ČH,-
CH,-C-c
H.
(d)
+H+
(h) сн,— с.
CH,-
+ co,
Glycerate
Glyceraldehyde
он
OH OH
он о он
Pyruvate
Acetate
(e) CH,-C-CH,
CH,-C-CH,
H
From Problem 3, chapter 16.
Glyceraldehyde
Dihydroxyacetone
Glycerol, not
glyceraldehyde
Transcribed Image Text:cleavage (reaction 2 below). (The square brackets mean "it happens in ti active site".) Conversely oxidation results from dehydrogenation. In ma biochemical redox reactions the coenzymes NAD+ and FAD dehydrogenate/hydrogenate (oxidize/reduce) organic molecules in the presence of the proper enzymes. reduction CH,-C-H + H-H oxidation Acetaldehyde O-H (1) reduction сH, с - н (1) oxidation Ethanol For each of the metabolic transformations in (a) through (h) below, determine whether oxidation or reduction has occurred. Balance each reduction + H+ + H-H equation by adding H-H and, where necessary, H2O on the appropriate si of the chemical equation. CH, C, CH oxidation Acetate (2) This should be the anionic form reduction CH,--H + o (2) of benzoic acid oxidation H Acetaldehyde H. (a) сн, — он - H-C-H (f) +H+ H. Methanol Formaldehyde H Toluene Benzoate (b) н-С—н — н-с, Formaldehyde Formate (g) CH,- CH, (c) 0=C=0 - H-C This should be a hydroxyl. Succinate Fumarate Carbon dioxide Formate он о он OH ČH,- CH,-C-c H. (d) +H+ (h) сн,— с. CH,- + co, Glycerate Glyceraldehyde он OH OH он о он Pyruvate Acetate (e) CH,-C-CH, CH,-C-CH, H From Problem 3, chapter 16. Glyceraldehyde Dihydroxyacetone Glycerol, not glyceraldehyde
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