category
bioRxiv
date
Mar 6, 2026
slug
status
Published
summary
首次揭示植物受体激酶复合物在质膜纳米尺度的动态组织规律,发现配体结合受体与共受体通过纳米域相互作用实现信号传递,提出配体诱导的受体复合物形成是基于纳米尺度空间定位的确定性过程。
tags
空间组学
蛋白质组学
type
Post

📄 原文题目

Plasma membrane nanoscale dynamics of Arabidopsis leucine-rich repeat receptor kinase complexes

🔗 原文链接

💡 AI 核心解读

首次揭示植物受体激酶复合物在质膜纳米尺度的动态组织规律,发现配体结合受体与共受体通过纳米域相互作用实现信号传递,提出配体诱导的受体复合物形成是基于纳米尺度空间定位的确定性过程。

📝 英文原版摘要

Plasma membrane-localized receptors operate as dynamic signaling complexes and integrative networks, yet the spatial and temporal regulation of these interactions remain largely unknown. Here, by analyzing the components of a minimal Arabidopsis leucine-rich repeat receptor kinase network, we describe the differential diffusion and organization of receptor complex components and unveil the nanoscale spatial and temporal logic underlying the formation of receptor kinase complexes. The ligand-binding receptors FLS2 and BRI1, and the accessory receptor BIR3, are organized in plasma membrane nanodomains, within which the co-receptor BAK1 diffuses and is spatially arrested upon ligand perception. BAK1 spatial arrest relies on extracellular domain (ECD)-ECD interactions but does not require receptor complex activation. Mathematical modelling, single molecule imaging and bio-assays infer that accessory receptors maintain a dynamic pool of co-receptors in the vicinity of ligand-binding receptors to promote ligand-induced complex formation and signaling. We propose that ligand-induced receptor kinase complex formation is a deterministic process defined by the relative nanoscale spatial positioning of individual signaling and regulatory components.
K-Ras通过初级纤毛控制不对称细胞分裂内体成熟由三聚体Bulli-Mon1-Ccz1 GEF7复合物和Rab5-GTP酶激活蛋白GAPsec调控
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