Finding a right place to cut: How katanin is targeted to cellular severing sites.

Masayoshi Nakamura, Noriyoshi Yagi, Takashi Hashimoto
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引用次数: 1

Abstract

Microtubule severing by katanin plays key roles in generating various array patterns of dynamic microtubules, while also responding to developmental and environmental stimuli. Quantitative imaging and molecular genetic analyses have uncovered that dysfunction of microtubule severing in plant cells leads to defects in anisotropic growth, division and other cell processes. Katanin is targeted to several subcellular severing sites. Intersections of two crossing cortical microtubules attract katanin, possibly by using local lattice deformation as a landmark. Cortical microtubule nucleation sites on preexisting microtubules are targeted for katanin-mediated severing. An evolutionary conserved microtubule anchoring complex not only stabilises the nucleated site, but also subsequently recruits katanin for timely release of a daughter microtubule. During cytokinesis, phragmoplast microtubules are severed at distal zones by katanin, which is tethered there by plant-specific microtubule-associated proteins. Recruitment and activation of katanin are essential for maintenance and reorganisation of plant microtubule arrays.

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寻找合适的切割位置:katanin如何靶向细胞切割部位。
卡他蛋白切断微管在产生各种动态微管阵列模式中起关键作用,同时也对发育和环境刺激作出反应。定量成像和分子遗传学分析揭示了植物细胞中微管断裂的功能障碍导致细胞各向异性生长、分裂等过程的缺陷。卡他宁针对几个亚细胞切断位点。两个交叉的皮质微管的交叉点吸引katanin,可能是通过使用局部晶格变形作为一个标志。预先存在的微管上的皮质微管成核位点是卡他蛋白介导的切断的目标。进化保守的微管锚定复合物不仅稳定有核位点,而且随后招募卡他蛋白以及时释放子微管。在细胞分裂过程中,片质体微管在远端区域被卡他蛋白切断,卡他蛋白被植物特异性微管相关蛋白拴在那里。角朊蛋白的募集和激活对于植物微管阵列的维持和重组至关重要。
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