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木本植物 COI1-JAZ1 共受体结构分析,该受体用于植物激素茉莉酰异亮氨酸。

Structural analysis of the woodland strawberry COI1-JAZ1 co-receptor for the plant hormone jasmonoyl-isoleucine.

机构信息

Phytohormone Research Laboratory, Institute of Biological Sciences, Universidad de Talca, Talca, Chile.

Phytohormone Research Laboratory, Institute of Biological Sciences, Universidad de Talca, Talca, Chile; Doctorate Program in Forest Sciences, Universidad de Concepción, Concepción, Chile.

出版信息

J Mol Graph Model. 2018 Oct;85:250-261. doi: 10.1016/j.jmgm.2018.09.004. Epub 2018 Sep 12.

Abstract

The phytohormone jasmonoyl-isoleucine (JA-Ile) regulates fundamental plant processes. Fragaria vesca, the woodland strawberry, is a model plant for the Rosaceae family, in which the JA-Ile perception is poorly understood at the molecular level. JA-Ile promotes binding of JAZ repressor to COI1 protein in Arabidopsis to activate jasmonate (JA)-dependent responses. The aim of this work was to understand the molecular basis of the interaction between the F. vesca COI1 (FvCOI1) and JAZ1 (FvJAZ1) promoted by JA-Ile using a computational approach. Multiple sequence alignments and phylogenetic analyses of amino acid sequences were performed for FvCOI1, FvJAZ1 and their ortholog sequences. 3D structures for FvCOI1 and FvJAZ1 proteins were built by methods of homology modeling, using AtCOI1-JA-Ile-AtJAZ1 as template and then they were further refined and validated by molecular dynamics (MD) simulation. A molecular docking approach along with MDS analysis were used to gain insights into the interaction between a putative degron-like sequence present in FvJAZ1 with the FvCOI1-JA-Ile complex. FvCOI1 and FvJAZ1 showed high and moderate sequence identity, respectively, with the corresponding ortholog proteins from other plant species including apple, grape, tomato and Arabidopsis. Moreover, the FvJAZ1 has a variant C-terminal IPMQRK sequence instead of the canonical LPIARR degron sequence located in the Jas domain of AtJAZ1. The MD simulation results showed that the FvCOI1-JA-Ile-FvJAZ1 complex was stable, and the IPMQRK peptide of FvJAZ1 directly interacted with FvCOI1 and JA-Ile. The present research provides novel insight into the molecular interactions among key JA-signaling components in the model plant F. vesca, being few examples of characterized JA-Ile receptors at a structural level in plants.

摘要

植物激素茉莉酰基异亮氨酸(JA-Ile)调节植物的基本过程。野草莓是蔷薇科的模式植物,其 JA-Ile 感知在分子水平上还不太清楚。JA-Ile 促进 JAZ 抑制剂与拟南芥 COI1 蛋白结合,从而激活茉莉酸(JA)依赖的反应。本工作旨在通过计算方法了解 JA-Ile 促进的野草莓 COI1(FvCOI1)与 JAZ1(FvJAZ1)之间相互作用的分子基础。对 FvCOI1、FvJAZ1及其直系同源序列的氨基酸序列进行了多重序列比对和系统发育分析。利用 AtCOI1-JA-Ile-AtJAZ1 作为模板,通过同源建模方法构建了 FvCOI1 和 FvJAZ1 蛋白的 3D 结构,然后通过分子动力学(MD)模拟进一步进行了细化和验证。采用分子对接方法结合 MDS 分析,研究了 FvJAZ1 中存在的假定去稳定序列与 FvCOI1-JA-Ile 复合物之间的相互作用。FvCOI1 和 FvJAZ1 与其他植物物种(包括苹果、葡萄、番茄和拟南芥)的相应直系同源蛋白具有较高和中等的序列同一性。此外,FvJAZ1 的 Jas 结构域中存在一个变体 C 端 IPMQRK 序列,而不是 AtJAZ1 中典型的 LPIARR 去稳定序列。MD 模拟结果表明,FvCOI1-JA-Ile-FvJAZ1 复合物稳定,FvJAZ1 的 IPMQRK 肽直接与 FvCOI1 和 JA-Ile 相互作用。本研究为模式植物野草莓中关键 JA 信号成分之间的分子相互作用提供了新的见解,是少数在植物中以结构水平表征 JA-Ile 受体的例子之一。

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