Question 22.2: Enzyme Classification Using Table 22.1, identify the chemica...

Enzyme Classification
Using Table 22.1, identify the chemical reaction catalyzed by each of the following:
(a) Alcohol dehydrogenase
(b) Ribose-5-phosphate isomerase

Table 22.1 Classification of Enzymes
Section
Number
in This Book
Reaction Catalyzed Typical Example Class
27.2 \underset{\text{L-(+)-Lactate}\hspace{65 pt}\text{Pyruvate}}{\begin{matrix} \text{CH}_{3}-\underset{|}{\text{C}}\text{H}-\text{COO}^{-} \longrightarrow \text{CH}_{3}-\underset{||}{\text{C}}-\text{COO}^{-} \\ \hspace{-10 pt}\text{OH}\hspace{93 pt}\text{O} \end{matrix} } Lactate dehydrogenase 1. Oxidoreductases
27.8 \underset{\substack{\text{Aspartate}}}{\begin{matrix}\hspace{-23 pt} \underset{|}{\text{C}}\text{OO}^{-}\\ \hspace{-32 pt} \underset{|}{\text{C}}\text{H}_{2}\\ \underset{|}{\text{C}}\text{H}-{\text{NH}_{3}}^{+}\\ \hspace{-23 pt} \text{COO}^{-}\\ \text{}\end{matrix} }  +   \underset{\substack{\text{α-Ketoglutarate}}}{\begin{matrix} \underset{|}{\text{C}}\text{OO}^{-}\\ \underset{|}{\text{C}}=\text{O}\\ \hspace{-10 pt } \underset{|}{\text{C}}\text{H}_{2}\\ \hspace{-10 pt } \underset{|}{\text{C}}\text{H}_{2}\\ \text{COO}^{-}\end{matrix} }\longrightarrow\underset{\substack{\text{Oxaloacetate}}}{\begin{matrix} \underset{|}{\text{C}}\text{OO}^{-}\\ \hspace{-10 pt} \underset{|}{\text{C}}\text{H}_{2}\\ \underset{|}{\text{C}}=\text{O}\\ \text{COO}^{-}\\ \text{}\end{matrix} } +   \underset{\substack{\text{Glutamate}}}{\begin{matrix} \hspace{-23 pt} \underset{|}{\text{C}}\text{OO}^{-}\\ \underset{|}{\text{C}}\text{H}-{\text{NH}_{3}}^{+}\\ \hspace{-32 pt} \underset{|}{\text{C}}\text{H}_{2}\\ \hspace{-32 pt} \underset{|}{\text{C}}\text{H}_{2}\\ \hspace{-23 pt} \text{COO}^{-}\end{matrix} } Aspartate amino transferase or aspartate transaminase 2. Transferases
23.3 \begin{matrix} \text{CH}_{3}-\underset{||}{\text{C}}-\text{OCH}_{2}\text{CH}_{2}\overset{+}{\text{N}}{(\text{CH}_{3})_{3}} + \text{H}_{2}\text{O} \longrightarrow \text{CH}_{3}\text{COOH} + \text{HOCH}_{2}\text{CH}_{2}\overset{+}{\text{N}}{(\text{CH}_{3})_{3}} \\ \hspace{-4 pt} \text{O} \hspace{160 pt} \substack{\text{Acetic acid}}  \hspace{47 pt}\substack{\text{Choline}} \\ \hspace{ -200 pt} \substack{\text{Acetylcholine}} \end{matrix} Acetylcholinesterase 3. Hydrolases
26.4 \begin{matrix} \underset{|}{\text{C}}\text{OO}^{-}\hspace{99 pt} \underset{|}{\text{C}}\text{OO}^{-} \\ \hspace{-11 pt} \underset{|}{\text{C}}\text{H}_{2} \hspace{108 pt} \underset{|}{\text{C}}\text{H}_{2} \\ \hspace{25 pt} \underset{||}{\text{C}}-\text{COO}^{-}+\text{H}_{2}\text{O} \longrightarrow \hspace{24 pt} \underset{|}{\text{C}}\text{H}-\text{COO}^{-} \\ \hspace{-5 pt} \underset{|}{\text{C}}\text{H} \hspace{85 pt} \text{HO}-\underset{|}{\text{C}}-\text{H} \\ \text{COO}^{-} \hspace{98 pt} \text{COO}^{-}\\ \substack{cis-\text{Aconitate}\hspace{75 pt}\text{Isocitrate}} \end{matrix} Aconitase 4. Lyases
27.2 Phosphohexose isomerase 5. Isomerases
25.6 \text{ATP} + \text{L-tyrosine} + \text{tRNA} \longrightarrow \text{L-tyrosyl-tRNA} + \text{AMP} + \text{PP}_{\text{i}} Tyrosine-tRNA synthetase 6. Ligases

Strategy
With most enzymes, the name alone gives a good indication of what it does. Usually, as in these two examples, the name of the enzyme includes the molecule being acted on plus the action being done.

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(a) Alcohol dehydrogenase would take an alcohol and remove hydrogen, creating a carbonyl group where there once was a hydroxyl. In this case it primarily uses ethanol and creates acetaldehyde. However, alcohol dehydrogenase can also perform the same action, to a lesser degree, on methanol.
(b) An isomerase converts one molecule into another molecule with the same empirical formula, such as \text{C}_{\text{x}}\text{H}_{\text{y}}\text{O}_{\text{z}}. Ribose-5-phosphate isomerase converts the phosphorylated sugar ribose (an aldose) to ribulose-5-phosphate (a ketose).

Quick Check 22.2
In Chapter 20 we saw the action of the enzyme lipase. What does lipase do and how would it be classified?

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