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在拟南芥中,细胞质 HPPK/DHPS 在应激下具有叶酸非依赖性作用。

A folate independent role for cytosolic HPPK/DHPS upon stress in Arabidopsis thaliana.

机构信息

Laboratory of Functional Plant Biology, Department of Physiology, Ghent University, KL Ledeganckstraat 35, B-9000 Gent, Belgium.

出版信息

Phytochemistry. 2012 Jan;73(1):23-33. doi: 10.1016/j.phytochem.2011.09.008. Epub 2011 Oct 11.

Abstract

Cytosolic HPPK/DHPS (cytHPPK/DHPS) in Arabidopsis is a functional enzyme with activity similar to its mitochondrial isoform. Genomic complementation of the cytHPPK/DHPS knockout mutant with the wild type gene led to a complete rescue of the stress sensitive mutant phenotype in seed germination tests under abiotic stress conditions. Moreover, over-expression of the gene resulted in higher germination rate under stress as compared to the wild-type, confirming its role in stress resistance. Analysis of folates in seedlings, inflorescence and dry seeds showed unchanged levels in the wild-type, mutant and over-expressor line, upon stress and normal conditions, suggesting a role for cytHPPK/DHPS distinct from folate biosynthesis and a folate-independent stress resistance mechanism. This apparently folate-independent mechanism of stress resistance points towards a possible role of pterins, since the product of HPPK/DHPS is dihydropteroate.

摘要

拟南芥细胞质 HPPK/DHPS(cytHPPK/DHPS)是一种具有与线粒体同工酶相似活性的功能性酶。在非生物胁迫条件下的种子萌发试验中,用野生型基因对 cytHPPK/DHPS 敲除突变体进行基因组互补,导致应激敏感突变体表型完全得到挽救。此外,与野生型相比,该基因的过表达导致胁迫下更高的萌发率,证实了其在应激抗性中的作用。对幼苗、花序和干种子中叶酸的分析表明,在应激和正常条件下,野生型、突变体和过表达系中叶酸水平不变,表明 cytHPPK/DHPS 的作用不同于叶酸生物合成和叶酸非依赖性应激抗性机制。这种明显的叶酸非依赖性应激抗性机制表明蝶呤可能具有一定作用,因为 HPPK/DHPS 的产物是二氢喋呤。

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