Walia Ankit, Lee Jin S, Wasteneys Geoffrey, Ellis Brian
Michael Smith Laboratories, University of British Columbia, Vancouver, V6T 1Z4 BC, Canada.
Plant J. 2009 Aug;59(4):565-75. doi: 10.1111/j.1365-313X.2009.03895.x. Epub 2009 Apr 11.
Mitogen-activated protein kinase (MAPK) signalling networks are important regulators of environmental responses and developmental processes in plants. To understand the role of MAPK signalling modules in the regulation of plant microtubule functions, we searched for MAPKs that interact with the dual-specificity MAPK phosphatase, PROPYZAMIDE HYPERSENSITIVE 1 (PHS1), whose mutation has previously been reported to confer hypersensitivity to microtubule-disrupting drugs in Arabidopsis. Yeast two-hybrid assays demonstrated that PHS1 specifically interacts with two MAPKs, MPK12 and MPK18. Bimolecular fluorescence complementation (BiFC) studies confirmed that the PHS1 and MPK18 proteins are physically coupled, and that this interaction occurs in the cytoplasm. At the biochemical level, in vitro dephosphorylation assays indicated that phospho-MPK18 can be dephosphorylated by recombinant PHS1. Mutant mpk18 seedlings show defects in microtubule-related functions, and have moderately stabilized microtubules. Absence of MPK18 in the phs1-1 background partially complements the phs1-1 root growth phenotypes, providing genetic evidence for involvement of MPK18 signalling in microtubule-related functions. We propose a model whereby the PHS1-MPK18 signalling module is involved in a phosphorylation/dephosphorylation switch that regulates cortical microtubule functions.
丝裂原活化蛋白激酶(MAPK)信号网络是植物环境响应和发育过程的重要调节因子。为了了解MAPK信号模块在植物微管功能调节中的作用,我们寻找了与双特异性MAPK磷酸酶PROPYZAMIDE HYPERSENSITIVE 1(PHS1)相互作用的MAPK,之前有报道称其突变会使拟南芥对破坏微管的药物产生超敏反应。酵母双杂交试验表明,PHS1与两种MAPK,即MPK12和MPK18特异性相互作用。双分子荧光互补(BiFC)研究证实,PHS1和MPK18蛋白在物理上相互结合,且这种相互作用发生在细胞质中。在生化水平上,体外去磷酸化试验表明,磷酸化的MPK18可被重组PHS1去磷酸化。突变体mpk18幼苗在微管相关功能方面表现出缺陷,并且微管有一定程度的稳定。在phs1-1背景中缺失MPK18部分弥补了phs1-1根生长表型,为MPK18信号参与微管相关功能提供了遗传学证据。我们提出了一个模型,即PHS1-MPK18信号模块参与调节皮层微管功能的磷酸化/去磷酸化开关。