The KASH protein UNC-83 differentially regulates kinesin-1 activity to control developmental stage-specific nuclear migration.

IF 7.5 1区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY
Selin Gümüşderelioğlu, Natalie Sahabandu, Daniel Elnatan, Ellen F Gregory, Kyoko Chiba, Shinsuke Niwa, G W Gant Luxton, Richard J McKenney, Daniel A Starr
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Abstract

Nuclear migration plays a fundamental role in development, requiring precise spatiotemporal control of bidirectional movement through dynein and kinesin motors. Here, we uncover a differential isoform-dependent mechanism for developmental regulation of nuclear migration directionality. The nuclear envelope Klarsicht/ANC-1/Syne homology (KASH) protein UNC-83 in Caenorhabditis elegans exists in multiple isoforms that differentially control motor activity to achieve tissue-specific nuclear positioning. The shorter UNC-83c isoform promotes kinesin-1-dependent nuclear movement in embryonic hyp7 precursors, while longer UNC-83a/b isoforms facilitate dynein-mediated nuclear migration in larval P cells. We demonstrate that the UNC-83a-specific N-terminal domain functions as a kinesin-1 inhibitory module by directly binding the kinesin heavy chain (UNC-116). This interaction prevents kinesin-1 activation and reduces the protein's affinity for kinesin light chain (KLC-2), allowing for dynein-mediated transport. By contrast, UNC-83c exhibits high-affinity binding to KLC-2, promoting kinesin-1 activation for plus-end-directed movement. AlphaFold structural predictions reveal that UNC-83 contains five spectrin-like repeats, with two located within the inhibitory N-terminal domain. Genetic analysis demonstrates that these spectrin-like repeats are essential for dynein-dependent P cell nuclear migration but dispensable for kinesin-1-dependent hyp7 migration. This isoform-specific inhibition, combined with differential affinity for KLC-2, establishes a mechanism for achieving directional control of nuclear positioning during development. Together, these interdisciplinary studies reveal how alternative isoforms of cargo adaptors can generate developmental stage-specific regulation of motor activity.

KASH蛋白UNC-83通过调控激酶1活性来控制发育阶段特异性核迁移。
核迁移在发育过程中起着至关重要的作用,需要通过dynein和kinesin马达对双向运动进行精确的时空控制。在这里,我们揭示了核迁移方向性发育调节的差异同工异构体依赖机制。秀丽隐杆线虫(Caenorhabditis elegans)核膜Klarsicht/ ac -1/Syne同源(KASH)蛋白UNC-83存在于多种异构体中,这些异构体差异控制运动活动以实现组织特异性核定位。较短的UNC-83c异构体促进胚胎hyp7前体中动力蛋白-1依赖的核运动,而较长的UNC-83a/b异构体促进动力蛋白介导的幼P细胞核迁移。我们证明了unc -83a特异性n端结构域通过直接结合kinesin重链(UNC-116)作为kinesin-1抑制模块起作用。这种相互作用阻止了动力蛋白-1的激活,降低了蛋白质对动力蛋白轻链(KLC-2)的亲和力,从而允许动力蛋白介导的运输。相比之下,UNC-83c与KLC-2表现出高亲和力结合,促进激酶1激活以进行正端定向运动。AlphaFold结构预测显示,UNC-83含有5个类似谱蛋白的重复序列,其中两个位于抑制n端结构域。遗传分析表明,这些谱蛋白样重复序列对于动力蛋白依赖的P细胞核迁移是必不可少的,但对于动力蛋白1依赖的hyp7迁移是必不可少的。这种同工异构体特异性抑制,结合对KLC-2的差异亲和力,建立了在发育过程中实现核定位定向控制的机制。总之,这些跨学科的研究揭示了货物适配器的替代异构体如何产生发育阶段特定的运动活动调节。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Current Biology
Current Biology 生物-生化与分子生物学
CiteScore
11.80
自引率
2.20%
发文量
869
审稿时长
46 days
期刊介绍: Current Biology is a comprehensive journal that showcases original research in various disciplines of biology. It provides a platform for scientists to disseminate their groundbreaking findings and promotes interdisciplinary communication. The journal publishes articles of general interest, encompassing diverse fields of biology. Moreover, it offers accessible editorial pieces that are specifically designed to enlighten non-specialist readers.
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