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REN4 变阻器动态协调拟南芥花粉管的顶端和侧面区域。

The REN4 rheostat dynamically coordinates the apical and lateral domains of Arabidopsis pollen tubes.

机构信息

Shanghai Center for Plant Stress Biology and Shanghai Institute of Plant Physiology and Ecolog, Shanghai Institutes for Biological Sciences Chinese Academy of Sciences, 201602, Shanghai, China.

Center for Plant Cell Biology, Institute of Integrative Genome Biology, and Department of Botany and Plant Sciences, University of California, Riverside, CA, 92508, USA.

出版信息

Nat Commun. 2018 Jul 3;9(1):2573. doi: 10.1038/s41467-018-04838-w.

Abstract

The dynamic maintenance of polar domains in the plasma membrane (PM) is critical for many fundamental processes, e.g., polar cell growth and growth guidance but remains poorly characterized. Rapid tip growth of Arabidopsis pollen tubes requires dynamic distribution of active ROP1 GTPase to the apical domain. Here, we show that clathrin-mediated endocytosis (CME) coordinates lateral REN4 with apical ROP1 signaling. REN4 interacted with but antagonized active ROP1. REN4 also interacts and co-localizes with CME components, but exhibits an opposite role to CME, which removes both REN4 and active ROP1 from the PM. Mathematical modeling shows that REN4 restrains the spatial distribution of active ROP1 and is important for the robustness of polarity control. Hence our results indicate that REN4 acts as a spatiotemporal rheostat by interacting with ROP1 to initiate their removal from the PM by CME, thereby coordinating a dynamic demarcation between apical and lateral domains during rapid tip growth.

摘要

质膜(PM)中极性域的动态维持对于许多基本过程至关重要,例如极性细胞的生长和生长导向,但仍未得到充分描述。拟南芥花粉管的快速顶端生长需要活性 ROP1 GTPase 向顶端域的动态分布。在这里,我们表明网格蛋白介导的内吞作用(CME)协调横向 REN4 与顶端 ROP1 信号。REN4 与活性 ROP1 相互作用但拮抗。REN4 还与 CME 成分相互作用和共定位,但与 CME 呈相反作用,CME 将 REN4 和活性 ROP1 从 PM 中去除。数学模型表明,REN4 限制了活性 ROP1 的空间分布,对于极性控制的稳健性很重要。因此,我们的结果表明,REN4 通过与 ROP1 相互作用充当时空变阻器,通过 CME 将其从 PM 中去除,从而在快速顶端生长过程中协调顶端和侧面域之间的动态边界。

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