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拟南芥 DJ-1D 含双 DJ-1 结构域是一种强大的大分子去糖基化酶。

Double DJ-1 domain containing Arabidopsis DJ-1D is a robust macromolecule deglycase.

机构信息

National Centre for Biological Sciences, GKVK Campus, Bangalore, 560 065, India.

Department of Biochemistry, Indian Institute of Science, C.V. Raman Avenue, Bangalore, 560 012, India.

出版信息

New Phytol. 2022 Nov;236(3):1061-1074. doi: 10.1111/nph.18414. Epub 2022 Aug 17.

Abstract

Plants, being sessile, are prone to genotoxin-induced macromolecule damage. Among the inevitable damaging agents are reactive carbonyls that induce glycation of DNA, RNA and proteins to result in the build-up of advanced glycated end-products. However, it is unclear how plants repair glycated macromolecules. DJ-1/PARK7 members are a highly conserved family of moonlighting proteins having double domains in higher plants and single domains in other phyla. Here we show that Arabidopsis DJ-1D offers robust tolerance to endogenous and exogenous stresses through its ability to repair glycated DNA, RNA and proteins. DJ-1D also reduced the formation of reactive carbonyls through its efficient methylglyoxalase activity. Strikingly, full-length double domain-containing DJ-1D suppressed the formation of advanced glycated end-products in yeast and plants. DJ-1D also efficiently repaired glycated nucleic acids and nucleotides in vitro and mitochondrial DNA in vivo under stress, indicating the existence of a new DNA repair pathway in plants. We propose that multi-stress responding plant DJ-1 members, often present in multiple copies among plants, probably contributed to the adaptation to a variety of endogenous and exogenous stresses.

摘要

植物是固着生物,容易受到遗传毒物诱导的大分子损伤。在不可避免的损伤剂中,有活性羰基化合物,它诱导 DNA、RNA 和蛋白质的糖化,导致晚期糖基化终产物的积累。然而,目前尚不清楚植物如何修复糖化的大分子。DJ-1/PARK7 成员是一个高度保守的分子伴侣家族,在高等植物中具有双结构域,在其他门中具有单结构域。在这里,我们表明拟南芥 DJ-1D 通过修复糖化的 DNA、RNA 和蛋白质,为植物提供了强大的对内源和外源胁迫的耐受性。DJ-1D 还通过其高效的甲基乙二醛酶活性降低了活性羰基的形成。引人注目的是,全长双结构域 DJ-1D 抑制了酵母和植物中晚期糖基化终产物的形成。DJ-1D 还能在应激下有效地修复体外糖化的核酸和核苷酸以及体内的线粒体 DNA,表明植物中存在一种新的 DNA 修复途径。我们提出,多应激响应的植物 DJ-1 成员通常在植物中存在多个拷贝,可能有助于适应各种内源性和外源性胁迫。

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