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番茄富含亮氨酸的重复受体样蛋白 LeEix2 的内体信号转导。

Endosomal signaling of the tomato leucine-rich repeat receptor-like protein LeEix2.

机构信息

Department of Molecular Biology and Ecology of Plants, Tel-Aviv University, Tel-Aviv, Israel.

出版信息

Plant J. 2011 Nov;68(3):413-23. doi: 10.1111/j.1365-313X.2011.04696.x. Epub 2011 Aug 22.

DOI:10.1111/j.1365-313X.2011.04696.x
PMID:21736652
Abstract

Extracellular leucine-rich repeat (LRR) receptor-like proteins (RLPs) represent a unique class of cell-surface receptors, as they lack a functional cytoplasmic domain. Our knowledge of how RLPs that do not contain a kinase or Toll domain function is very limited. The tomato RLP receptor LeEix2 signals to induce defense responses mediated by the fungal protein ethylene-inducing xylanase (EIX). The movement of FYVE-positive endosomes before and after EIX application was examined using spinning disc confocal microscopy. We found that while FYVE-positive endosomes generally observe a random movement pattern, following EIX application a subpopulation of FYVE-positive endosomes follow a directional movement pattern. Further, cellular endosomes travel greater distances at higher speeds following EIX application. Time-course experiments conducted with specific inhibitors demonstrate the involvement of endosomal signaling in EIX-triggered defense responses. Abolishing the existence of endosomes or the endocytic event prevented EIX-induced signaling. Endocytosis/endosome inhibitors, such as Dynasore or 1-butanol, inhibit EIX-induced signaling. Moreover, treatment with Endosidin1, which inhibits an early step in plasma membrane/endosome trafficking, enhances the induction of defense responses by EIX. Our data indicate a distinct endosomal signaling mechanism for induction of defense responses in this RLP system.

摘要

细胞外富含亮氨酸重复序列 (LRR) 受体样蛋白 (RLP) 代表了一类独特的细胞表面受体,因为它们缺乏有功能的细胞质结构域。我们对于不包含激酶或 Toll 结构域的 RLP 如何发挥作用的了解非常有限。番茄 RLP 受体 LeEix2 通过信号转导诱导由真菌蛋白乙烯诱导木聚糖酶 (EIX) 介导的防御反应。使用旋转盘共聚焦显微镜研究了 EIX 应用前后 FYVE 阳性内涵体的运动。我们发现,虽然 FYVE 阳性内涵体通常表现出随机运动模式,但在 EIX 应用后,一部分 FYVE 阳性内涵体呈现出定向运动模式。此外,在 EIX 应用后,细胞内涵体以更高的速度移动更远的距离。用特定抑制剂进行的时程实验表明,内涵体信号参与了 EIX 触发的防御反应。消除内涵体的存在或内吞作用会阻止 EIX 诱导的信号转导。内吞作用/内涵体抑制剂,如 Dynasore 或 1-丁醇,抑制 EIX 诱导的信号转导。此外,用抑制质膜/内涵体运输早期步骤的 Endosidin1 处理可增强 EIX 诱导的防御反应的诱导。我们的数据表明,在这个 RLP 系统中,防御反应的诱导存在一种独特的内涵体信号机制。

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