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PMID: 22081593 已发表 · ppublish 英语

Comprehensive genomic analysis of sulfur-relay pathway genes.

Genome informatics. International Conference on Genome Informatics ·第 24 卷 ·2014-01-23

Kotera Masaaki, Bayashi Takeshiko, Hattori Masahiro, Tokimatsu Toshiaki, Goto Susumu, Mihara Hisaaki, Kanehisa Minoru

摘要

Many cofactors and nucleotides containing sulfur atoms are known to have important functions in a variety of organisms. Recently, the biosynthetic pathways of these sulfur containing compounds have been revealed, where many enzymes relay sulfur atoms. Increasing evidence also suggests that the prokaryotic sulfur-relay enzymes might be the evolutionary origin of ubiquitination and the related systems that control a wide range of physiological processes in eukaryotic cells. However, these sulfur-relay enzymes have been studied in only a small number of organisms. Here we carried out comparative genomic analysis and examined the presence and absence of sulfurtransferases utilized in the biosynthetic pathways of molybdenum cofactor (Moco), 2-thiouridine (S(2)U), and 4-thiouridine (S(4)U), and IscS, a cysteine desulfurase. We found that all eukaryotes and many other organisms lack the intermediate enzymes in S(2)U biosynthesis. It is also found that most genes lack rhodanese homology domain (RHD), a catalytic domain of sulfurtransferase. Some organisms have a conserved sequence composed of about 100 residues in the C terminus of TusA, different from RHD. Host-associated organisms have a tendency to lose Moco biosynthetic enzymes, and some organisms have MoaD-MoaE fusion protein. Our findings suggest that sulfur-relay pathways have been so diversified that some putative sulfurtransferases possibly function in other unknown pathways.

文献信息
期刊
Genome informatics. International Conference on Genome Informatics
期刊简称
Genome Inform
ISSN
0919-9454
发表日期
2014-01-23
收录日期
2011-11-14
更新日期
2011-11-14
语言
英语
国家/地区
Japan
NLM ID
101280573
外部链接
PubMed 原文
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