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Arsenite Methyltransferase Diversity and Optimization of Methylation Efficiency. | LitMetric

Arsenite Methyltransferase Diversity and Optimization of Methylation Efficiency.

Environ Sci Technol

Department of Cellular Biology and Pharmacology, Herbert Wertheim College of Medicine, Florida International University, Miami, Florida 33199, United States.

Published: July 2023

AI Article Synopsis

  • Arsenite (As(III)) is methylated by SAM methyltransferases (ArsMs) that have three structural domains: A (SAM binding), B (arsenic binding), and C (unknown function).
  • Comparative analysis revealed that smaller ArsMs (240-300 amino acids) with only A and B domains have higher methylation activity than larger ones with an additional C domain (320-400 amino acids).
  • Truncating the C domain in CrArsM led to increased methylation activity, indicating that this domain may inhibit catalysis, while lower efflux rates of arsenite also enhance methylation rates.

Article Abstract

Arsenic is methylated by arsenite (As(III)) -adenosylmethionine (SAM) methyltransferases (ArsMs). ArsM crystal structures show three domains (an N-terminal SAM binding domain (A domain), a central arsenic binding domain (B domain), and a C-terminal domain of unknown function (C domain)). In this study, we performed a comparative analysis of ArsMs and found a broad diversity in structural domains. The differences in the ArsM structure enable ArsMs to have a range of methylation efficiencies and substrate selectivities. Many small ArsMs with 240-300 amino acid residues have only A and B domains, represented by RpArsM from . These small ArsMs have higher methylation activity than larger ArsMs with 320-400 residues such as CrArsM, which has A, B, and C domains. To examine the role of the C domain, the last 102 residues in CrArsM were deleted. This CrArsM truncation exhibited higher As(III) methylation activity than the wild-type enzyme, suggesting that the C-terminal domain has a role in modulating the rate of catalysis. In addition, the relationship of arsenite efflux systems and methylation was examined. Lower rates of efflux led to higher rates of methylation. Thus, the rate of methylation can be modulated in multiple ways.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10669576PMC
http://dx.doi.org/10.1021/acs.est.3c00966DOI Listing

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