1B. 1C. NH.F Ⓒ Polypeptide Chain CH₂ CH, CH, Endosulfan OTyrosine O-H. CH, Carboxyl group C on side chain O C =0 Given b

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1B. 1C. NH.F Ⓒ Polypeptide Chain CH₂ CH, CH, Endosulfan OTyrosine O-H. CH, Carboxyl group C on side chain O C =0 Given b

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1b 1c Nh F Polypeptide Chain Ch Ch Ch Endosulfan Otyrosine O H Ch Carboxyl Group C On Side Chain O C 0 Given B 1
1b 1c Nh F Polypeptide Chain Ch Ch Ch Endosulfan Otyrosine O H Ch Carboxyl Group C On Side Chain O C 0 Given B 1 (217.42 KiB) Viewed 86 times
1B. 1C. NH.F Ⓒ Polypeptide Chain CH₂ CH, CH, Endosulfan OTyrosine O-H. CH, Carboxyl group C on side chain O C =0 Given below is the structure of endosulfan, a chemical pesticide, and ATP. a) Can endosulfan react with ATP in living systems? Justify. b) Whether this pesticide can be expected in well water in dissolved form? Justify. NH₂ CI NH, H Observe the figure alongside and answer the following questions: a) Name the interactions at position B and D. b) What is the level of organization of the given polypeptide chain? Whether primary, secondary or tertiary? Justify. c) If one of the amino acids at site C was replaced by Alanine, how would it affect the stability of the polypeptide chain? Explain. HO OH ATP OH OH OH
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