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Hook3 是一种支架,用于相反极性的微管基马达细胞质动力蛋白-1 和 KIF1C。

Hook3 is a scaffold for the opposite-polarity microtubule-based motors cytoplasmic dynein-1 and KIF1C.

机构信息

Department of Cellular and Molecular Medicine, University of California, San Diego, La Jolla, CA.

Department of Cell Biology, Harvard Medical School, Boston, MA.

出版信息

J Cell Biol. 2019 Sep 2;218(9):2982-3001. doi: 10.1083/jcb.201812170. Epub 2019 Jul 18.

Abstract

The unidirectional and opposite-polarity microtubule-based motors, dynein and kinesin, drive long-distance intracellular cargo transport. Cellular observations suggest that opposite-polarity motors may be coupled. We recently identified an interaction between the cytoplasmic dynein-1 activating adaptor Hook3 and the kinesin-3 KIF1C. Here, using in vitro reconstitutions with purified components, we show that KIF1C and dynein/dynactin can exist in a complex scaffolded by Hook3. Full-length Hook3 binds to and activates dynein/dynactin motility. Hook3 also binds to a short region in the "tail" of KIF1C, but unlike dynein/dynactin, this interaction does not activate KIF1C. Hook3 scaffolding allows dynein to transport KIF1C toward the microtubule minus end, and KIF1C to transport dynein toward the microtubule plus end. In cells, KIF1C can recruit Hook3 to the cell periphery, although the cellular role of the complex containing both motors remains unknown. We propose that Hook3's ability to scaffold dynein/dynactin and KIF1C may regulate bidirectional motility, promote motor recycling, or sequester the pool of available dynein/dynactin activating adaptors.

摘要

单向和反向极性的微管动力蛋白,如驱动蛋白和动力蛋白,驱动长距离细胞内货物运输。细胞观察表明,反向极性的动力蛋白可能会发生偶联。我们最近发现细胞质动力蛋白-1 激活衔接蛋白 Hook3 与驱动蛋白-3 KIF1C 之间存在相互作用。在这里,我们使用纯化成分的体外重构实验,表明 KIF1C 和动力蛋白/dynactin 可以存在于 Hook3 支架的复合物中。全长 Hook3 结合并激活动力蛋白/dynactin 的运动。Hook3 还与 KIF1C“尾部”的一小段区域结合,但与动力蛋白/dynactin 不同,这种相互作用不会激活 KIF1C。Hook3 支架允许动力蛋白将 KIF1C 向微管负端运输,而 KIF1C 则将动力蛋白向微管正端运输。在细胞中,KIF1C 可以将 Hook3 募集到细胞外周,但包含这两种马达的复合物的细胞功能仍然未知。我们提出,Hook3 支架结合动力蛋白/dynactin 和 KIF1C 的能力可能调节双向运动,促进马达循环利用,或隔离可用的动力蛋白/dynactin 激活衔接蛋白池。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/5a8b/6719453/6ccf952b7941/JCB_201812170_Fig1.jpg

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