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鉴定MOS9为查尔酮合酶在细胞核中的相互作用伙伴。

Identification of MOS9 as an interaction partner for chalcone synthase in the nucleus.

作者信息

Watkinson Jonathan I, Bowerman Peter A, Crosby Kevin C, Hildreth Sherry B, Helm Richard F, Winkel Brenda S J

机构信息

Department of Biological Sciences, Virginia Polytechnic Institute and State University (Virginia Tech), Blacksburg, VA, USA.

BASF Plant Science LP, Research Triangle Park, NC, USA.

出版信息

PeerJ. 2018 Sep 19;6:e5598. doi: 10.7717/peerj.5598. eCollection 2018.

Abstract

Plant flavonoid metabolism has served as a platform for understanding a range of fundamental biological phenomena, including providing some of the early insights into the subcellular organization of metabolism. Evidence assembled over the past three decades points to the organization of the component enzymes as a membrane-associated complex centered on the entry-point enzyme, chalcone synthase (CHS), with flux into branch pathways controlled by competitive protein interactions. Flavonoid enzymes have also been found in the nucleus in a variety of plant species, raising the possibility of alternative, or moonlighting functions for these proteins in this compartment. Here, we present evidence that CHS interacts with MOS9, a nuclear-localized protein that has been linked to epigenetic control of genes that mediate effector-triggered immunity. Overexpression of results in a reduction of transcript levels and a metabolite profile that substantially intersects with the effects of a null mutation in . These results suggest that the MOS9-CHS interaction may point to a previously-unknown mechanism for controlling the expression of the highly dynamic flavonoid pathway.

摘要

植物类黄酮代谢一直是理解一系列基本生物学现象的平台,包括为代谢的亚细胞组织提供一些早期见解。过去三十年积累的证据表明,组成酶以膜相关复合物的形式存在,该复合物以入口点酶查尔酮合酶(CHS)为中心,进入分支途径的通量由竞争性蛋白质相互作用控制。在多种植物物种的细胞核中也发现了类黄酮酶,这增加了这些蛋白质在该区域具有替代功能或兼职功能的可能性。在这里,我们提供证据表明CHS与MOS9相互作用,MOS9是一种核定位蛋白,与介导效应物触发免疫的基因的表观遗传控制有关。 的过表达导致 转录水平降低以及代谢物谱与 中的无效突变的影响基本相交。这些结果表明,MOS9-CHS相互作用可能指向一种以前未知的控制高度动态类黄酮途径表达的机制。

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