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RPK2 是一种必需的受体样激酶,它在拟南芥中传递 CLV3 信号。

RPK2 is an essential receptor-like kinase that transmits the CLV3 signal in Arabidopsis.

机构信息

Department of Biological Sciences, Graduate School of Science, University of Tokyo, Hongo 7-3-1, Bunkyo-ku, Tokyo 113-0033, Japan.

出版信息

Development. 2010 Nov;137(22):3911-20. doi: 10.1242/dev.048199.

Abstract

The shoot apical meristem (SAM) is the fundamental structure that is located at the growing tip and gives rise to all aerial parts of plant tissues and organs, such as leaves, stems and flowers. In Arabidopsis thaliana, the CLAVATA3 (CLV3) pathway regulates the stem cell pool in the SAM, in which a small peptide ligand derived from CLV3 is perceived by two major receptor complexes, CLV1 and CLV2-CORYNE (CRN)/SUPPRESSOR OF LLP1 2 (SOL2), to restrict WUSCHEL (WUS) expression. In this study, we used the functional, synthetic CLV3 peptide (MCLV3) to isolate CLV3-insensitive mutants and revealed that a receptor-like kinase, RECEPTOR-LIKE PROTEIN KINASE 2 (RPK2), also known as TOADSTOOL 2 (TOAD2), is another key regulator of meristem maintenance. Mutations in the RPK2 gene result in stem cell expansion and increased number of floral organs, as seen in the other clv mutants. These phenotypes are additive with both clv1 and clv2 mutations. Moreover, our biochemical analyses using Nicotiana benthamiana revealed that RPK2 forms homo-oligomers but does not associate with CLV1 or CLV2. These genetic and biochemical findings suggest that three major receptor complexes, RPK2 homomers, CLV1 homomers and CLV2-CRN/SOL2 heteromers, are likely to mediate three signalling pathways, mainly in parallel but with potential crosstalk, to regulate the SAM homeostasis.

摘要

茎尖分生组织(SAM)位于生长尖端,是产生植物组织和器官所有气生部分的基本结构,如叶、茎和花。在拟南芥中,CLAVATA3(CLV3)途径调节 SAM 中的干细胞池,其中 CLV3 衍生的小肽配体被两个主要受体复合物 CLV1 和 CLV2-CORYNE(CRN)/SUPPRESSOR OF LLP1 2(SOL2)感知,以限制 WUSCHEL(WUS)的表达。在这项研究中,我们使用功能合成的 CLV3 肽(MCLV3)来分离 CLV3 不敏感突变体,并揭示受体样激酶,受体样蛋白激酶 2(RPK2),也称为 TOADSTOOL 2(TOAD2),是另一个维持分生组织的关键调节剂。RPK2 基因的突变导致干细胞扩张和花器官数量增加,这在其他 clv 突变体中也可见。这些表型与 clv1 和 clv2 突变都是累加的。此外,我们使用烟草 Nicotiana benthamiana 进行的生化分析表明,RPK2 形成同源寡聚体,但不与 CLV1 或 CLV2 相关联。这些遗传和生化发现表明,三个主要的受体复合物,RPK2 同源寡聚体、CLV1 同源寡聚体和 CLV2-CRN/SOL2 异源三聚体,可能介导三种信号通路,主要是平行的,但有潜在的串扰,以调节 SAM 内稳态。

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