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Physiological comparison of d-cysteine desulfhydrase of Escherichia coli with 3-chloro-d-alanine dehydrochlorinase of Pseudomonas putida CR 1-1
Authors:Toru Nagasawa  Takafumi Ishii  Hideaki Yamada
Affiliation:(1) Department of Agricultural Chemistry, Kyoto University, 606 Kyoto, Japan
Abstract:d-Cysteine desulfhydrase of Escherichia coli W3110 DeltatrpED102/Fprime DeltatrpED102 was physiologically characterized. It was found to be located in the cytosolic fraction, as 3-chloro-d-alanine dehydrochlorinase is. d-Cysteine desulfhydrase catalyzed not only the agr,beta-elimination reaction of O-acetyl-d-serine to form pyruvate, acetic acid and ammonia, but also the beta-replacement reaction of O-acetyl-d-serine with sulfide to form d-cysteine. However, these reactions appeared not to proceed in vivo. No other activity of d-cysteine synthesis from O-acetyl-d-serine and sulfide was detected in a crude cell extract of E. coli which was immunotitrated with antibodies raised against the purified d-cysteine desulfhydrase. Although d-cysteine desulfhydrase catalyzes the degradation (agr,beta-elimination reaction) of 3-chloro-d-alanine, which is an effective antibacterial agent, E. coli W3110 DeltatrpED102/Fprime DeltatrpED102 did not show resistance against 3-chloro-d-alanine. Therefore, d-cysteine desulfhydrase does not contribute to 3-chloro-d-alanine detoxification in vivo.
Keywords:  font-variant:small-caps"  >d-Cysteine desulfhydrase  Cytosolic location  3-chloro-  font-variant:small-caps"  >d-alanine sensitive  3-chloro-  font-variant:small-caps"  >d-alanine dehydrochlorinase  Escherichia coli
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