Department of Botany and Plant Sciences, Center for Plant Cell Biology, Institute of Integrative Genome Biology, University of California, Riverside, Riverside, CA, 92521, USA.
Nat Commun. 2022 Jan 11;13(1):235. doi: 10.1038/s41467-021-27913-1.
In plants, cell polarity plays key roles in coordinating developmental processes. Despite the characterization of several polarly localized plasma membrane proteins, the mechanisms connecting protein dynamics with cellular functions often remain unclear. Here, we introduce a polarized receptor, KOIN, that restricts cell divisions in the Arabidopsis root meristem. In the endodermis, KOIN polarity is opposite to IRK, a receptor that represses endodermal cell divisions. Their contra-polar localization facilitates dissection of polarity mechanisms and the links between polarity and function. We find that IRK and KOIN are recognized, sorted, and secreted through distinct pathways. IRK extracellular domains determine its polarity and partially rescue the mutant phenotype, whereas KOIN's extracellular domains are insufficient for polar sorting and function. Endodermal expression of an IRK/KOIN chimera generates non-cell-autonomous misregulation of root cell divisions that impacts patterning. Altogether, we reveal two contrasting mechanisms determining these receptors' polarity and link their polarity to cell divisions in root tissue patterning.
在植物中,细胞极性在协调发育过程中起着关键作用。尽管已经鉴定出几种极性定位的质膜蛋白,但将蛋白质动力学与细胞功能联系起来的机制往往仍不清楚。在这里,我们引入了一个极化受体 KOIN,它限制了拟南芥根分生组织中的细胞分裂。在内皮层中,KOIN 的极性与抑制内皮层细胞分裂的受体 IRK 相反。它们的对极定位有助于剖析极性机制以及极性与功能之间的联系。我们发现,IRK 和 KOIN 通过不同的途径被识别、分拣和分泌。IRK 的细胞外结构域决定了它的极性,并部分挽救了突变体表型,而 KOIN 的细胞外结构域不足以进行极性分拣和功能。内皮层表达的 IRK/KOIN 嵌合体会产生非细胞自主性的根细胞分裂失调,从而影响模式形成。总的来说,我们揭示了两种决定这些受体极性的对比机制,并将它们的极性与根组织模式形成中的细胞分裂联系起来。