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Huntingtin coordinates the dynein-mediated dynamic positioning of endosomes and lysosomes

机译:亨廷顿蛋白协调动力蛋白介导的内体和溶酶体的动态定位

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摘要

Huntingtin (Htt) is a membrane-associated scaffolding protein that interacts with microtubule motors as well as actin-associated adaptor molecules. We examined a role for Htt in the dynein-mediated intracellular trafficking of endosomes and lysosomes. In HeLa cells depleted of either Htt or dynein, early, recycling, and late endosomes (LE)/lysosomes all become dispersed. Despite altered organelle localization, kinetic assays indicate only minor defects in intracellular trafficking. Expression of full-length Htt is required to restore organelle localization in Htt-depleted cells, supporting a role for Htt as a scaffold that promotes functional interactions along its length. In dynein-depleted cells, LE/lysosomes accumulate in tight patches near the cortex, apparently enmeshed by cortactin-positive actin filaments; Latrunculin B-treatment disperses these patches. Peripheral LE/lysosomes in dynein-depleted cells no longer colocalize with microtubules. Htt may be required for this off-loading, as the loss of microtubule association is not seen in Htt-depleted cells or in cells depleted of both dynein and Htt. Inhibition of kinesin-1 relocalizes peripheral LE/lysosomes induced by Htt depletion but not by dynein depletion, consistent with their detachment from microtubules upon dynein knockdown. Together, these data support a model of Htt as a facilitator of dynein-mediated trafficking that may regulate the cytoskeletal association of dynamic organelles.
机译:亨廷顿蛋白(Htt)是一种与膜相关的支架蛋白,可与微管马达以及与肌动蛋白相关的衔接子分子相互作用。我们检查了Htt在动力蛋白介导的内体和溶酶体细胞内运输中的作用。在耗尽Htt或Dynein的HeLa细胞中,早期,回收和晚期内体(LE)/溶酶体都变得分散了。尽管细胞器的位置发生了变化,动力学分析表明细胞内运输中只有很小的缺陷。全长Htt的表达是恢复缺失Htt的细胞中细胞器定位所必需的,从而支持Htt作为沿其长度促进功能相互作用的支架的作用。在缺乏动力蛋白的细胞中,LE /溶酶体积聚在皮质附近的紧密斑块中,显然被皮质激素阳性肌动蛋白丝包裹。乳铁蛋白B处理可分散这些斑块。缺乏动力蛋白的细胞中的外周血LE /溶酶体不再与微管共定位。对于这种卸载,可能需要Htt,因为在Htt耗尽的细胞或动力蛋白和Htt都耗尽的细胞中看不到微管缔合的丧失。抑制kinesin-1可以重新定位由Htt耗竭而不是由达力宁耗竭诱导的周围LE /溶酶体,这与它们在降力达宁时从微管上脱离是一致的。总之,这些数据支持Htt作为动力蛋白介导的动力蛋白的模型,该蛋白可能调节动态细胞器的细胞骨架结合。

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