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二分法的 BSL 磷酸酶信号在空间上调节了 MAPK 成分在保卫细胞命运决定中的作用。

Dichotomy of the BSL phosphatase signaling spatially regulates MAPK components in stomatal fate determination.

机构信息

Waksman Institute of Microbiology, Rutgers, The State University of New Jersey, Piscataway, NJ, 08854, USA.

Department of Plant Biology, Rutgers, The State University of New Jersey, New Brunswick, NJ, 08901, USA.

出版信息

Nat Commun. 2022 May 4;13(1):2438. doi: 10.1038/s41467-022-30254-2.

Abstract

MAPK signaling modules play crucial roles in regulating numerous biological processes in all eukaryotic cells. How MAPK signaling specificity and strength are tightly controlled remains a major challenging question. In Arabidopsis stomatal development, the MAPKK Kinase YODA (YDA) functions at the cell periphery to inhibit stomatal production by activating MAPK 3 and 6 (MPK3/6) that directly phosphorylate stomatal fate-determining transcription factors for degradation in the nucleus. Recently, we demonstrated that BSL1, one of the four BSL protein phosphatases, localizes to the cell cortex to activate YDA, elevating MPK3/6 activity to suppress stomatal formation. Here, we showed that at the plasma membrane, all four members of BSL proteins contribute to the YDA activation. However, in the nucleus, specific BSL members (BSL2, BSL3, and BSU1) directly deactivate MPK6 to counteract the linear MAPK pathway, thereby promoting stomatal formation. Thus, the pivotal MAPK signaling in stomatal fate determination is spatially modulated by a signaling dichotomy of the BSL protein phosphatases in Arabidopsis, providing a prominent example of how MAPK activities are integrated and specified by signaling compartmentalization at the subcellular level.

摘要

MAPK 信号模块在调节所有真核细胞中的许多生物过程中起着至关重要的作用。MAPK 信号的特异性和强度如何被紧密控制仍然是一个主要的挑战问题。在拟南芥气孔发育中,MAPKK 激酶 YODA(YDA)在细胞外周发挥作用,通过激活 MAPK3 和 6(MPK3/6)来抑制气孔的产生,MPK3/6 直接磷酸化决定气孔命运的转录因子,使其在核内降解。最近,我们证明了四个 BSL 蛋白磷酸酶之一的 BSL1 定位于细胞皮层以激活 YDA,从而提高 MPK3/6 的活性以抑制气孔形成。在这里,我们表明在质膜上,BSL 蛋白的所有四个成员都有助于 YDA 的激活。然而,在核内,特定的 BSL 成员(BSL2、BSL3 和 BSU1)直接使 MPK6 失活,以抵消线性 MAPK 途径,从而促进气孔形成。因此,在拟南芥中,BSL 蛋白磷酸酶的信号二分法在气孔命运决定的关键 MAPK 信号中具有空间调节作用,为 MAPK 活性如何通过亚细胞水平的信号分隔进行整合和指定提供了一个突出的例子。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0e84/9068801/aee70887deec/41467_2022_30254_Fig1_HTML.jpg

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