The presence of arginase confirms that : from Biology Respiratio

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 Multiple Choice QuestionsMultiple Choice Questions

61.

Decarboxylation is involved in

  • electron transport system

  • glycolysis

  • Krebs' cycle

  • lactic acid fermentation


62.

The process after glycolysis in anaerobic respiration is known as

  • fermentation

  • respiration

  • Krebs' cycle

  • decomposition


63.

Fermentation products of yeast are

  • H2O + CO2

  • Methyl alcohol + CO2

  • Methyl alcohol + water

  • Ethyl alcohol + CO2


64.

RQ for fatty substance/ fat is

  • unity

  • less than one

  • more than one

  • zero


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65.

Terminal cytochrome of respiratory chain which donates electrons to oxygen is :

  • cytochrome b

  • cytochrome c

  • cytochrome a

  • cytochrome a3


66.

How many ATP are formed by oxidation of one glucose molecular in liver cells ?

  • 36

  • 38

  • 2

  • 8


67.

Glycolysis occurs in :

  • cytoplasm

  • nucleus

  • mitochondria

  • both 'a' and 'c


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68.

The presence of arginase confirms that :

  • urea cycle is operating

  • urea cycle may be operating

  • arginine is being converted into ornithine

  • arginine is being converted into citrulline


C.

arginine is being converted into ornithine

During urea cycle, cytosolic enzyme arginase cleaves arginine to yield urea and ornithine. Ornithine is transported into the mitochondria in order to initiate another round of urea cycle.

Enzymes used in urea cycle are

  1. Carbamoyl phosphate synthase
  2. Ornithine carbamoyltransferase
  3. Arginosuccinate synthase
  4. Arginosuccinate lyase
  5. Arginase


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69.

Glycolysis is found in cytoplasm of virtually all types of aerobic/ anaerobic cells. In this process glucose is converted into

  • PEP

  • acetyl CoA

  • pyruvic acid

  • citric acid


70.

In which of the following steps of citric acid cycle, COis evolved?

I. Citric acid – Ketoglutaric acid 

II. Succinic acid – Malic acid 

III. Malic acid – Oxaloacetic acid 

IV. α-ketoglutaric acid – Succinyl CoA

  • I and II only

  • I and IV only

  • II and III only

  • II and IV only

  • II and IV only


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