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叶绿体中拟南芥谷氧还蛋白 AtGRXS16 的 N 端 GIY-YIG 内切酶活性的结构见解。

Structural insights into the N-terminal GIY-YIG endonuclease activity of Arabidopsis glutaredoxin AtGRXS16 in chloroplasts.

机构信息

Ministry of Education Key Laboratory of Protein Science, Center for Structural Biology, School of Life Sciences, Tsinghua University, Beijing 100084, China.

出版信息

Proc Natl Acad Sci U S A. 2013 Jun 4;110(23):9565-70. doi: 10.1073/pnas.1306899110. Epub 2013 May 20.

Abstract

Glutaredoxins (Grxs) have been identified across taxa as important mediators in various physiological functions. A chloroplastic monothiol glutaredoxin, AtGRXS16 from Arabidopsis thaliana, comprises two distinct functional domains, an N-terminal domain (NTD) with GlyIleTyr-TyrIleGly (GIY-YIG) endonuclease motif and a C-terminal Grx module, to coordinate redox regulation and DNA cleavage in chloroplasts. Structural determination of AtGRXS16-NTD showed that it possesses a GIY-YIG endonuclease fold, but the critical residues for the nuclease activity are different from typical GIY-YIG endonucleases. AtGRXS16-NTD was able to cleave λDNA and chloroplast genomic DNA, and the nuclease activity was significantly reduced in AtGRXS16. Functional analysis indicated that AtGRXS16-NTD could inhibit the ability of AtGRXS16 to suppress the sensitivity of yeast grx5 cells to oxidative stress; however, the C-terminal Grx domain itself and AtGRXS16 with a Cys123Ser mutation were active in these cells and able to functionally complement a Grx5 deficiency in yeast. Furthermore, the two functional domains were shown to be negatively regulated through the formation of an intramolecular disulfide bond. These findings unravel a manner of regulation for Grxs and provide insights into the mechanistic link between redox regulation and DNA metabolism in chloroplasts.

摘要

谷氧还蛋白(Grxs)在不同生物类群中被鉴定为多种生理功能的重要介质。拟南芥的质体单硫谷氧还蛋白 AtGRXS16 由两个不同的功能域组成,一个 N 端结构域(NTD)具有 GlyIleTyr-TyrIleGly(GIY-YIG)内切酶基序和 C 端 Grx 模块,以协调叶绿体中的氧化还原调节和 DNA 切割。AtGRXS16-NTD 的结构测定表明,它具有 GIY-YIG 内切酶折叠,但核酶活性的关键残基与典型的 GIY-YIG 内切酶不同。AtGRXS16-NTD 能够切割 λDNA 和叶绿体基因组 DNA,并且 AtGRXS16 显著降低了核酶活性。功能分析表明,AtGRXS16-NTD 可以抑制 AtGRXS16 抑制酵母 grx5 细胞对氧化应激敏感性的能力;然而,C 端 Grx 结构域本身和 Cys123Ser 突变的 AtGRXS16 在这些细胞中是活跃的,并且能够在酵母中功能性地补充 Grx5 缺陷。此外,这两个功能域通过形成分子内二硫键而被负调控。这些发现揭示了 Grxs 的一种调节方式,并为叶绿体中氧化还原调节和 DNA 代谢之间的机制联系提供了见解。

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