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Human METTL7B is an Alkyl Thiol Methyltransferase That Metabolizes Hydrogen Sulfide and Captopril

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Journal Sci Rep
Specialty Science
Date 2021 Mar 2
PMID 33649426
Citations 25
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Abstract

Methylation of alkyl thiols is a biotransformation pathway designed to reduce thiol reactivity and potential toxicity, yet the gene and protein responsible for human alkyl thiol methyltransferase (TMT) activity remain unknown. Here we demonstrate with a range of experimental approaches using cell lines, in vitro systems, and recombinantly expressed enzyme, that human methyltransferase-like protein 7B (METTL7B) catalyzes the transfer of a methyl group from S-adenosyl-L-methionine (AdoMet) to hydrogen sulfide (HS) and other exogenous thiol small molecules. METTL7B gene modulation experiments, including knockdown in HepG2 cells and overexpression in HeLa cells, directly alter the methylation of the drug captopril, a historic probe substrate for TMT activity. Furthermore, recombinantly expressed and purified wild-type METTL7B methylates several thiol compounds, including HS, 7α-thiospironolactone, L-penicillamine, and captopril, in a time- and concentration-dependent manner. Typical for AdoMet-dependent small molecule methyltransferases, S-adenosyl-L-homocysteine (AdoHcy) inhibited METTL7B activity in a competitive fashion. Similarly, mutating a conserved aspartate residue, proposed to anchor AdoMet into the active site, to an alanine (D98A) abolished methylation activity. Endogenous thiols such as glutathione and cysteine, or classic substrates for other known small molecule S-, N-, and O-methyltransferases, were not substrates for METTL7B. Our results confirm, for the first time, that METTL7B, a gene implicated in multiple disease states including rheumatoid arthritis and breast cancer, encodes a protein that methylates small molecule alkyl thiols. Identifying the catalytic function of METTL7B will enable future pharmacological research in disease pathophysiology where altered METTL7B expression and, potentially HS levels, can disrupt cell growth and redox state.

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References
1.
Tangerman A . Measurement and biological significance of the volatile sulfur compounds hydrogen sulfide, methanethiol and dimethyl sulfide in various biological matrices. J Chromatogr B Analyt Technol Biomed Life Sci. 2009; 877(28):3366-77. DOI: 10.1016/j.jchromb.2009.05.026. View

2.
Weinshilboum R, Sladek S . Mercaptopurine pharmacogenetics: monogenic inheritance of erythrocyte thiopurine methyltransferase activity. Am J Hum Genet. 1980; 32(5):651-62. PMC: 1686086. View

3.
Li L, Bhatia M, Zhu Y, Zhu Y, Ramnath R, Wang Z . Hydrogen sulfide is a novel mediator of lipopolysaccharide-induced inflammation in the mouse. FASEB J. 2005; 19(9):1196-8. DOI: 10.1096/fj.04-3583fje. View

4.
Turro S, Ingelmo-Torres M, Estanyol J, Tebar F, Fernandez M, Albor C . Identification and characterization of associated with lipid droplet protein 1: A novel membrane-associated protein that resides on hepatic lipid droplets. Traffic. 2006; 7(9):1254-69. DOI: 10.1111/j.1600-0854.2006.00465.x. View

5.
Gopinath A, Kulkarni M, Ahmed I, Chouhan O, Saikrishnan K . The conserved aspartate in motif III of b family AdoMet-dependent DNA methyltransferase is important for methylation. J Biosci. 2020; 45. View