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绘制水稻中的“双组份系统”网络。

Mapping the 'Two-component system' network in rice.

机构信息

Stress Physiology and Molecular Biology Laboratory, School of Life Sciences, Jawaharlal Nehru University, New Delhi, India.

Plant Stress Biology, International Centre for Genetic Engineering and Biotechnology, New Delhi, India.

出版信息

Sci Rep. 2017 Aug 24;7(1):9287. doi: 10.1038/s41598-017-08076-w.

Abstract

Two-component system (TCS) in plants is a histidine to aspartate phosphorelay based signaling system. Rice genome has multifarious TCS signaling machinery comprising of 11 histidine kinases (OsHKs), 5 histidine phosphotransferases (OsHPTs) and 36 response regulators (OsRRs). However, how these TCS members interact with each other and comprehend diverse signaling cascades remains unmapped. Using a highly stringent yeast two-hybrid (Y2H) platform and extensive in planta bimolecular fluorescence complementation (BiFC) assays, distinct arrays of interaction between various TCS proteins have been identified in the present study. Based on these results, an interactome map of TCS proteins has been assembled. This map clearly shows a cross talk in signaling, mediated by different sensory OsHKs. It also highlights OsHPTs as the interaction hubs, which interact with OsRRs, mostly in a redundant fashion. Remarkably, interactions between type-A and type-B OsRRs have also been revealed for the first time. These observations suggest that feedback regulation by type-A OsRRs may also be mediated by interference in signaling at the level of type-B OsRRs, in addition to OsHPTs, as known previously. The interactome map presented here provides a starting point for in-depth molecular investigations for signal(s) transmitted by various TCS modules into diverse biological processes.

摘要

植物中的双组分系统(TCS)是一种基于组氨酸到天冬氨酸磷酸传递的信号转导系统。水稻基因组具有多种 TCS 信号机制,包括 11 个组氨酸激酶(OsHKs)、5 个组氨酸磷酸转移酶(OsHPTs)和 36 个响应调节子(OsRRs)。然而,这些 TCS 成员如何相互作用并理解不同的信号级联仍然未知。本研究使用高度严格的酵母双杂交(Y2H)平台和广泛的体内双分子荧光互补(BiFC)测定,鉴定了各种 TCS 蛋白之间不同的相互作用阵列。基于这些结果,组装了 TCS 蛋白的相互作用图谱。该图谱清楚地显示了不同感觉 OsHKs 介导的信号转导中的串扰。它还强调了 OsHPTs 作为相互作用中心,它们以冗余的方式与 OsRRs 相互作用。值得注意的是,还首次揭示了 A 型和 B 型 OsRRs 之间的相互作用。这些观察结果表明,除了以前已知的 OsHPTs 之外,A型 OsRRs 的反馈调节也可能通过干扰 B 型 OsRRs 水平的信号转导来介导。这里呈现的相互作用图谱为深入研究各种 TCS 模块传递的信号进入不同的生物学过程提供了一个起点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eb0c/5571105/0ddad1f79020/41598_2017_8076_Fig1_HTML.jpg

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