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PMID: 21623427 已发表 · ppublish 英语

Molybdenum metabolism in the alga Chlamydomonas stands at the crossroad of those in Arabidopsis and humans.

Metallomics : integrated biometal science ·第 3 卷 ·第 6 期 ·2011-10-04

Llamas Angel, Tejada-Jiménez Manuel, Fernández Emilio, Galván Aurora

摘要

Molybdenum (Mo) is a very scarce element whose function is fundamental in living beings within the active site of Mo-oxidoreductases, playing key roles in the metabolism of N, S, purines, hormone biosynthesis, transformation of drugs and xenobiotics, etc. In eukaryotes, each step from Mo acquisition until its incorporation into a biologically active molybdenum cofactor (Moco) together with the assembly of this Moco in Mo-enzymes is almost understood. The deficiency in function of a particular molybdoenzyme can be critical for the survival of the organism dependent on the pathway involved. However, incapacity in forming a functional Moco has a pleiotropic effect in the different processes involving this cofactor. A detailed overview of Mo metabolism: (a) specific transporters for molybdate, (b) the universal biosynthesis pathway for Moco from GTP, (c) Moco-carrier and Moco-binding proteins for Moco transfer and (d) Mo-enzymes, is analyzed in light of recent findings and three systems are compared, the unicellular microalga Chlamydomonas, the plant Arabidopsis and humans.

文献信息
期刊
Metallomics : integrated biometal science
期刊简称
Metallomics
发表日期
2011-10-04
收录日期
2011-06-09
更新日期
2013-11-21
语言
英语
国家/地区
England
NLM ID
101478346
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