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PHRAGMOPLAST ORIENTING KINESIN1 在分裂部位的定位依赖于拟南芥中的微管结合蛋白 TANGLED1 和 AUXIN-INDUCED IN ROOT CULTURES9。

The localization of PHRAGMOPLAST ORIENTING KINESIN1 at the division site depends on the microtubule-binding proteins TANGLED1 and AUXIN-INDUCED IN ROOT CULTURES9 in Arabidopsis.

机构信息

Graduate Group in Biochemistry and Molecular Biology, University of California, Riverside, California, USA.

Department of Botany and Plant Sciences, Center for Plant Cell Biology, Institute of Integrative Genome Biology, University of California, Riverside, California, USA.

出版信息

Plant Cell. 2022 Oct 27;34(11):4583-4599. doi: 10.1093/plcell/koac266.

Abstract

Proper plant growth and development require spatial coordination of cell divisions. Two unrelated microtubule-binding proteins, TANGLED1 (TAN1) and AUXIN-INDUCED IN ROOT CULTURES9 (AIR9), are together required for normal growth and division plane orientation in Arabidopsis (Arabidopsis thaliana). The tan1 air9 double mutant has synthetic growth and division plane orientation defects, while single mutants lack obvious defects. Here we show that the division site-localized protein, PHRAGMOPLAST ORIENTING KINESIN1 (POK1), was aberrantly lost from the division site during metaphase and telophase in the tan1 air9 mutant. Since TAN1 and POK1 interact via the first 132 amino acids of TAN1 (TAN11-132), we assessed the localization and function of TAN11-132 in the tan1 air9 double mutant. TAN11-132 rescued tan1 air9 mutant phenotypes and localized to the division site during telophase. However, replacing six amino-acid residues within TAN11-132, which disrupted the POK1-TAN1 interaction in the yeast-two-hybrid system, caused loss of both rescue and division site localization of TAN11-132 in the tan1 air9 mutant. Full-length TAN1 with the same alanine substitutions had defects in phragmoplast guidance and reduced TAN1 and POK1 localization at the division site but rescued most tan1 air9 mutant phenotypes. Together, these data suggest that TAN1 and AIR9 are required for POK1 localization, and yet unknown proteins may stabilize TAN1-POK1 interactions.

摘要

植物的正常生长和发育需要细胞分裂的空间协调。两个不相关的微管结合蛋白 TANGLED1(TAN1)和 AUXIN-INDUCED IN ROOT CULTURES9(AIR9)在拟南芥中一起对于正常的生长和分裂平面定向是必需的。tan1 air9 双突变体具有合成的生长和分裂平面定向缺陷,而单突变体则缺乏明显缺陷。在这里,我们表明,分裂位点定位蛋白 PHRAGMOPLAST ORIENTING KINESIN1(POK1)在 tan1 air9 突变体的中期和后期从分裂位点异常丢失。由于 TAN1 和 POK1 通过 TAN1 的前 132 个氨基酸(TAN11-132)相互作用,我们评估了 TAN11-132 在 tan1 air9 双突变体中的定位和功能。TAN11-132 挽救了 tan1 air9 突变体的表型,并在后期定位于分裂位点。然而,替换 TAN11-132 内的六个氨基酸残基,该残基在酵母双杂交系统中破坏了 POK1-TAN1 相互作用,导致 TAN11-132 在 tan1 air9 突变体中的拯救和分裂位点定位均丢失。具有相同丙氨酸取代的全长 TAN1 具有类质体引导缺陷,并且 TAN1 和 POK1 在分裂位点的定位减少,但挽救了大多数 tan1 air9 突变体的表型。总之,这些数据表明 TAN1 和 AIR9 是 POK1 定位所必需的,而未知的蛋白可能稳定 TAN1-POK1 相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ed86/9614452/27b23ba6ec7e/koac266f1.jpg

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