首页> 外文期刊>The New Phytologist >The Arabidopsis mitogen-activated protein kinase 6 is associated with -tubulin on microtubules, phosphorylates EB1c and maintains spindle orientation under nitrosative stress
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The Arabidopsis mitogen-activated protein kinase 6 is associated with -tubulin on microtubules, phosphorylates EB1c and maintains spindle orientation under nitrosative stress

机译:拟南芥有丝分裂原激活的蛋白激酶6与微管上的-微管蛋白相关,磷酸化EB1c并在亚硝化胁迫下维持纺锤体定向

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Stress-activated plant mitogen-activated protein (MAP) kinase pathways play roles in growth adaptation to the environment by modulating cell division through cytoskeletal regulation, but the mechanisms are poorly understood. We performed protein interaction and phosphorylation experiments with cytoskeletal proteins, mass spectrometric identification of MPK6 complexes and immunofluorescence analyses of the microtubular cytoskeleton of mitotic cells using wild-type, mpk6-2 mutant and plants overexpressing the MAP kinase-inactivating phosphatase, AP2C3. We showed that MPK6 interacted with -tubulin and co-sedimented with plant microtubules polymerized invitro. It was the active form of MAP kinase that was enriched with microtubules and followed similar dynamics to -tubulin, moving from poles to midzone during the anaphase-to-telophase transition. We found a novel substrate for MPK6, the microtubule plus end protein, EB1c. The mpk6-2 mutant was sensitive to 3-nitro-l-tyrosine (NO2-Tyr) treatment with respect to mitotic abnormalities, and root cells overexpressing AP2C3 showed defects in chromosome segregation and spindle orientation. Our data suggest that the active form of MAP kinase interacts with -tubulin on specific subsets of mitotic microtubules during late mitosis. MPK6 phosphorylates EB1c, but not EB1a, and has a role in maintaining regular planes of cell division under stress conditions.
机译:应力激活植物促分裂原激活蛋白(MAP)激酶途径通过通过细胞骨架调节来调节细胞分裂,从而在对环境的生长适应中发挥作用,但其机理了解甚少。我们使用细胞骨架蛋白进行了蛋白质相互作用和磷酸化实验,对MPK6复合物进行了质谱鉴定,并使用野生型mpk6-2突变体和过表达MAP激酶失活的磷酸酶AP2C3的植物对有丝分裂细胞的微管细胞骨架进行了免疫荧光分析。我们表明,MPK6与-tubulin相互作用,并与体外聚合的植物微管共同沉淀。它是MAP激酶的活性形式,富含微管,并具有与-tubulin相似的动力学,在后期到末期的过渡过程中从极点移动到中间区域。我们发现了MPK6,微管加末端蛋白EB1c的新型底物。在有丝分裂异常方面,mpk6-2突变体对3-硝基-1-酪氨酸(NO2-Tyr)处理敏感,并且过表达AP2C3的根细胞在染色体分离和纺锤体定向方面显示出缺陷。我们的数据表明,在有丝分裂后期,MAP激酶的活性形式与-微管蛋白在有丝分裂微管的特定子集上相互作用。 MPK6使EB1c磷酸化,而不使EB1a磷酸化,并在应激条件下维持细胞分裂的规则平面。

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