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油菜素内酯通过介导 BIN2 诱导的微管稳定来调节 pavement 细胞的生长。

Brassinosteroids regulate pavement cell growth by mediating BIN2-induced microtubule stabilization.

机构信息

Shanghai Center for Plant Stress Biology, Chinese Academy of Sciences, Shanghai, China.

State Key Laboratory of Genetic Engineering and Institute of Plant Biology, School of Life Sciences, Fudan University, Shanghai, China.

出版信息

J Exp Bot. 2018 Feb 23;69(5):1037-1049. doi: 10.1093/jxb/erx467.

Abstract

Brassinosteroids (BRs), a group of plant steroid hormones, play important roles in regulating plant development. The cytoskeleton also affects key developmental processes and a deficiency in BR biosynthesis or signaling leads to abnormal phenotypes similar to those of microtubule-defective mutants. However, how BRs regulate microtubule and cell morphology remains unknown. Here, using liquid chromatography-tandem mass spectrometry, we identified tubulin proteins that interact with Arabidopsis BRASSINOSTEROID INSENSITIVE2 (BIN2), a negative regulator of BR responses in plants. In vitro and in vivo pull-down assays confirmed that BIN2 interacts with tubulin proteins. High-speed co-sedimentation assays demonstrated that BIN2 also binds microtubules. The Arabidopsis genome also encodes two BIN2 homologs, BIN2-LIKE 1 (BIL1) and BIL2, which function redundantly with BIN2. In the bin2-3 bil1 bil2 triple mutant, cortical microtubules were more sensitive to treatment with the microtubule-disrupting drug oryzalin than in wild-type, whereas in the BIN2 gain-of-function mutant bin2-1, cortical microtubules were insensitive to oryzalin treatment. These results provide important insight into how BR regulates plant pavement cell and leaf growth by mediating the stabilization of microtubules by BIN2.

摘要

油菜素甾醇(BRs)是一组植物甾体激素,在调节植物发育中发挥重要作用。细胞骨架也影响关键的发育过程,BR 生物合成或信号转导的缺陷导致与微管缺陷突变体相似的异常表型。然而,BRs 如何调节微管和细胞形态仍然未知。在这里,我们使用液相色谱-串联质谱法鉴定了与拟南芥油菜素不敏感 2 型(BIN2)相互作用的微管蛋白,BIN2 是植物中 BR 反应的负调节剂。体外和体内下拉测定证实 BIN2 与微管蛋白相互作用。高速共沉淀测定表明 BIN2 也与微管结合。拟南芥基因组还编码两个 BIN2 同源物,BIN2-LIKE 1(BIL1)和 BIL2,它们与 BIN2 冗余。在 bin2-3 bil1 bil2 三重突变体中,皮质微管对微管解聚药物 oryzalin 的处理比野生型更敏感,而在 BIN2 功能获得突变体 bin2-1 中,皮质微管对 oryzalin 的处理不敏感。这些结果为 BR 通过 BIN2 稳定微管来调节植物表皮细胞和叶片生长提供了重要的见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1966/6018924/fe805e65ee37/erx46701.jpg

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