Dimethoate is a commonly used agrochemical. However, chronic exposure to it can cause an individual to develop hyper-ß-alaninemia (i.e., excessive alanine) in the muscles. Would hyper-ß-alaninemia impact glycolysis? O Yes, pyruvate kinase would be suppressed as a consequence of hyper-B-alaninemia. Yes, glucokinase would be suppressed as a consequence of hyper-ß-alaninemia. No, hyper-ß-alaninemia would not impact glycolysis. Yes, hexokinase would be suppressed as a consequence of hyper-ß-alaninemia. O Yes, phosphofructokinase would be suppressed as a consequence of hyper-B-alaninemia.

Biochemistry
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Dimethoate is a commonly used agrochemical. However, chronic exposure to it can cause
an individual to develop hyper-ß-alaninemia (i.e., excessive alanine) in the muscles. Would
hyper-ß-alaninemia impact glycolysis?
O Yes, pyruvate kinase would be suppressed as a consequence of hyper-ß-alaninemia.
Yes, glucokinase would be suppressed as a consequence of hyper-ß-alaninemia.
No, hyper-ß-alaninemia would not impact glycolysis.
Yes, hexokinase would be suppressed as a consequence of hyper-ß-alaninemia.
O Yes, phosphofructokinase would be suppressed as a consequence of hyper-ß-alaninemia.
Transcribed Image Text:Dimethoate is a commonly used agrochemical. However, chronic exposure to it can cause an individual to develop hyper-ß-alaninemia (i.e., excessive alanine) in the muscles. Would hyper-ß-alaninemia impact glycolysis? O Yes, pyruvate kinase would be suppressed as a consequence of hyper-ß-alaninemia. Yes, glucokinase would be suppressed as a consequence of hyper-ß-alaninemia. No, hyper-ß-alaninemia would not impact glycolysis. Yes, hexokinase would be suppressed as a consequence of hyper-ß-alaninemia. O Yes, phosphofructokinase would be suppressed as a consequence of hyper-ß-alaninemia.
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