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  5. Arsenic methylation by a novel ArsM As(III) <i>S</i>‐adenosylmethionine methyltransferase that requires only two conserved cysteine residues

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Article
English
2017

Arsenic methylation by a novel ArsM As(III) <i>S</i>‐adenosylmethionine methyltransferase that requires only two conserved cysteine residues

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English
2017
Molecular Microbiology
Vol 107 (2)
DOI: 10.1111/mmi.13882

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Fang-jie Zhao
Fang-jie Zhao

Nanjing Agricultural University

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Ke Huang
Yan Xu
Charles Packianathan
+6 more

Abstract

Summary Arsenic (As) biomethylation is an important component of the As biogeochemical cycle that can influence As toxicity and mobility in the environment. Biomethylation of As is catalyzed by the enzyme arsenite (As[III]) S ‐adenosylmethionine methyltransferase (ArsM). To date, all identified ArsM orthologs with As(III) methylation activities have four conserved cysteine residues, which are thought to be essential for As(III) methylation. Here, we isolated an As(III)‐methylating bacterium, Bacillus sp. CX‐1, and identified a gene encoding a S ‐adenosylmethionine methyltranserase termed BlArsM with low sequence similarities (≤ 39%) to other ArsMs. BlArsM has six cysteine residues (Cys10, Cys11, Cys145, Cys193, Cys195 and Cys268), three of which (Cys10, Cys145 and Cys195) align with conserved cysteine residues found in most ArsMs. BlarsM is constitutively expressed in Bacillus sp. CX‐1. Heterologous expression of BlarsM conferred As(III) resistance. Purified BlArsM methylated both As(III) and methylarsenite (MAs[III]), with a final product of dimethylarsenate (DMAs[V]). When all six cysteines were individually altered to serine residues, only C145S and C195S derivatives lost the ability to methylate As(III) and MAs(III). The derivative C10S/C11S/C193S/C268S was still active. These results suggest that BlArsM is a novel As(III) S ‐adenosylmethionine methyltransferase requiring only two conserved cysteine residues. A model of As(III) methylation by BlArsM is proposed.

How to cite this publication

Ke Huang, Yan Xu, Charles Packianathan, Fan Gao, Chuan Chen, Jun Zhang, Qirong Shen, Barry P. Rosen, Fang-jie Zhao (2017). Arsenic methylation by a novel ArsM As(III) <i>S</i>‐adenosylmethionine methyltransferase that requires only two conserved cysteine residues. Molecular Microbiology, 107(2), pp. 265-276, DOI: 10.1111/mmi.13882.

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Publication Details

Type

Article

Year

2017

Authors

9

Datasets

0

Total Files

0

Language

English

Journal

Molecular Microbiology

DOI

10.1111/mmi.13882

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