RRC ID 25697
著者 Goyer A, Hasnain G, Frelin O, Ralat MA, Gregory JF 3rd, Hanson AD.
タイトル A cross-kingdom Nudix enzyme that pre-empts damage in thiamin metabolism.
ジャーナル Biochem J
Abstract Genes specifying the thiamin monophosphate phosphatase and adenylated thiazole diphosphatase steps in fungal and plant thiamin biosynthesis remain unknown, as do genes for ThDP (thiamin diphosphate) hydrolysis in thiamin metabolism. A distinctive Nudix domain fused to Tnr3 (thiamin diphosphokinase) in Schizosaccharomyces pombe was evaluated as a candidate for these functions. Comparative genomic analysis predicted a role in thiamin metabolism, not biosynthesis, because free-standing homologues of this Nudix domain occur not only in fungi and plants, but also in proteobacteria (whose thiamin biosynthesis pathway has no adenylated thiazole or thiamin monophosphate hydrolysis steps) and animals (which do not make thiamin). Supporting this prediction, recombinant Tnr3 and its Saccharomyces cerevisiae, Arabidopsis and maize Nudix homologues lacked thiamin monophosphate phosphatase activity, but were active against ThDP, and up to 60-fold more active against diphosphates of the toxic thiamin degradation products oxy- and oxo-thiamin. Deleting the S. cerevisiae Nudix gene (YJR142W) lowered oxythiamin resistance, overexpressing it raised resistance, and expressing its plant or bacterial counterparts restored resistance to the YJR142W deletant. By converting the diphosphates of damaged forms of thiamin into monophosphates, the Tnr3 Nudix domain and its homologues can pre-empt the misincorporation of damaged diphosphates into ThDP-dependent enzymes, and the resulting toxicity.
巻・号 454(3)
ページ 533-42
公開日 2013-9-15
DOI 10.1042/BJ20130516
PII BJ20130516
PMID 23834287
MeSH Antifungal Agents / pharmacology Arabidopsis Proteins / biosynthesis Arabidopsis Proteins / genetics Bacterial Proteins / biosynthesis Bacterial Proteins / genetics Drug Resistance, Fungal Gene Deletion Genetic Complementation Test Kinetics Oxythiamine / pharmacology Phylogeny Saccharomyces cerevisiae / drug effects Saccharomyces cerevisiae / enzymology Saccharomyces cerevisiae / genetics Schizosaccharomyces / enzymology* Schizosaccharomyces / genetics Sequence Homology, Amino Acid Stress, Physiological Thiamine Pyrophosphate / metabolism* Thiamine Triphosphate / metabolism* Zebrafish Proteins / biosynthesis Zebrafish Proteins / genetics
IF 4.097
引用数 25
WOS 分野 BIOCHEMISTRY & MOLECULAR BIOLOGY
リソース情報
酵母 NA