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Microtubule plus-end tracking of end-binding protein 1 (EB1) is regulated by CDK5 regulatory subunit-associated protein 2

机译:末梢结合蛋白1(EB1)的微管正末尾追踪受CDK5调节亚基相关蛋白2调控

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摘要

Microtubules are polar cytoskeleton filaments that extend via growth at their plus ends. Microtubule plus-end-tracking proteins (+TIPs) accumulate at these growing plus ends to control microtubule dynamics and attachment. The +TIP end-binding protein 1 (EB1) and its homologs possess an autonomous plus-end-tracking mechanism and interact with other known +TIPs, which then recruit those +TIPs to the growing plus ends. A major +TIP class contains the SXIP (Ser-X-Ile-Pro, with X denoting any amino acid residue) motif, known to interact with EB1 and its homologs for plus-end tracking, but the role of SXIP in regulating EB1 activities is unclear. We show here that an interaction of EB1 with the SXIP-containing +TIP CDK5 regulatory subunit-associated protein 2 (CDK5RAP2) regulates several EB1 activities, including microtubule plus-end tracking, dynamics at microtubule plus ends, microtubule and α/β-tubulin binding, and microtubule polymerization. The SXIP motif fused with a dimerization domain from CDK5RAP2 significantly enhanced EB1 plus-end-tracking and microtubule-polymerizing and bundling activities, but the SXIP motif alone failed to do so. An SXIP-binding-deficient EB1 mutant displayed significantly lower microtubule plus-end tracking than the wild-type protein in transfected cells. These results suggest that EB1 cooperates with CDK5RAP2 and perhaps other SXIP-containing +TIPs in tracking growing microtubule tips. We also generated plus-end-tracking chimeras of CDK5RAP2 and the adenomatous polyposis coli protein (APC) and found that overexpression of the dimerization domains interfered with microtubule plus-end tracking of their respective SXIP-containing chimeras. Our results suggest that disruption of SXIP dimerization enables detailed investigations of microtubule plus-end-associated functions of individual SXIP-containing +TIPs.
机译:微管是极性的细胞骨架细丝,通过其正末端的生长而延伸。微管正末尾追踪蛋白(+ TIP)聚集在这些生长的正末端,以控制微管动力学和附着。 + TIP末端结合蛋白1(EB1)及其同系物具有自主的+末端追踪机制,并与其他已知+ TIP相互作用,然后将这些+ TIP募集到生长的+末端。主要的+ TIP类包含SXIP(Ser-X-Ile-Pro,其中X表示任何氨基酸残基)基序,已知可与EB1及其同系物相互作用进行正向追踪,但SXIP在调节EB1活性中的作用尚不清楚。我们在这里显示EB1与包含SXIP的+ TIP CDK5调节亚基相关蛋白2(CDK5RAP2)的相互作用调节了几种EB1活性,包括微管正端跟踪,微管正端动态,微管和α/β-微管蛋白结合和微管聚合。与CDK5RAP2的二聚化结构域融合的SXIP主题显着增强了EB1的正向追踪和微管聚合和捆绑活性,但仅SXIP主题无法做到这一点。 SXIP结合缺陷的EB1突变体在转染细胞中显示出比野生型蛋白低得多的微管正向追踪。这些结果表明,EB1与CDK5RAP2以及其他可能包含SXIP的+ TIP配合使用,可追踪不断增长的微管尖端。我们还生成了CDK5RAP2和腺瘤性息肉病大肠杆菌蛋白(APC)的正末尾追踪嵌合体,发现二聚域的过表达干扰了它们各自含SXIP嵌合体的微管正末尾追踪。我们的研究结果表明,SXIP二聚化的破坏使得能够对含SXIP的+ TIP的微管加末端相关功能进行详细研究。

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