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通过代谢组学和蛋白质组学分析进行亲和纯化,揭示了核苷二磷酸激酶的多种作用。

Affinity purification with metabolomic and proteomic analysis unravels diverse roles of nucleoside diphosphate kinases.

作者信息

Luzarowski Marcin, Kosmacz Monika, Sokolowska Ewelina, Jasinska Weronika, Willmitzer Lothar, Veyel Daniel, Skirycz Aleksandra

机构信息

Max Planck Institute of Molecular Plant Physiology, Am Mühlenberg 1, D-14476 Potsdam-Golm, Germany.

出版信息

J Exp Bot. 2017 Jun 15;68(13):3487-3499. doi: 10.1093/jxb/erx183.

Abstract

Interactions between metabolites and proteins play an integral role in all cellular functions. Here we describe an affinity purification (AP) approach in combination with LC/MS-based metabolomics and proteomics that allows, to our knowledge for the first time, analysis of protein-metabolite and protein-protein interactions simultaneously in plant systems. More specifically, we examined protein and small-molecule partners of the three (of five) nucleoside diphosphate kinases present in the Arabidopsis genome (NDPK1-NDPK3). The bona fide role of NDPKs is the exchange of terminal phosphate groups between nucleoside diphosphates (NDPs) and triphosphates (NTPs). However, other functions have been reported, which probably depend on both the proteins and small molecules specifically interacting with the NDPK. Using our approach we identified 23, 17, and 8 novel protein partners of NDPK1, NDPK2, and NDPK3, respectively, with nucleotide-dependent proteins such as actin and adenosine kinase 2 being enriched. Particularly interesting, however, was the co-elution of glutathione S-transferases (GSTs) and reduced glutathione (GSH) with the affinity-purified NDPK1 complexes. Following up on this finding, we could demonstrate that NDPK1 undergoes glutathionylation, opening a new paradigm of NDPK regulation in plants. The described results extend our knowledge of NDPKs, the key enzymes regulating NDP/NTP homeostasis.

摘要

代谢物与蛋白质之间的相互作用在所有细胞功能中都起着不可或缺的作用。在此,我们描述了一种亲和纯化(AP)方法,该方法结合了基于液相色谱/质谱的代谢组学和蛋白质组学,据我们所知,这是首次能够在植物系统中同时分析蛋白质 - 代谢物和蛋白质 - 蛋白质相互作用。更具体地说,我们研究了拟南芥基因组中存在的五种核苷二磷酸激酶中的三种(NDPK1 - NDPK3)的蛋白质和小分子伴侣。核苷二磷酸激酶的真正作用是在核苷二磷酸(NDPs)和三磷酸核苷(NTPs)之间交换末端磷酸基团。然而,据报道还有其他功能,这可能取决于与核苷二磷酸激酶特异性相互作用的蛋白质和小分子。使用我们的方法,我们分别鉴定出NDPK1、NDPK2和NDPK3的23个、17个和8个新的蛋白质伴侣,其中诸如肌动蛋白和腺苷激酶2等核苷酸依赖性蛋白质被富集。然而,特别有趣的是谷胱甘肽S - 转移酶(GSTs)和还原型谷胱甘肽(GSH)与亲和纯化的NDPK1复合物共洗脱。基于这一发现,我们能够证明NDPK1发生谷胱甘肽化,这为植物中核苷二磷酸激酶的调节开辟了一个新的范例。所描述的结果扩展了我们对核苷二磷酸激酶的认识,核苷二磷酸激酶是调节NDP / NTP稳态的关键酶。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f33e/5853561/6d18f44c0394/erx18301.jpg

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