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NudE 在动粒处调控动力蛋白,但对于早期胚胎中的其他动力蛋白功能是可有可无的。

NudE regulates dynein at kinetochores but is dispensable for other dynein functions in the early embryo.

机构信息

Instituto de Biologia Molecular e Celular, Universidade do Porto, 4200-135 Porto, Portugal.

Instituto de Investigação e Inovação em Saúde (i3S), Universidade do Porto, 4200-135 Porto, Portugal.

出版信息

J Cell Sci. 2018 Jan 8;131(1):jcs212159. doi: 10.1242/jcs.212159.

Abstract

In mitosis, the molecular motor dynein is recruited to kinetochores by the Rod-Zw10-Zwilch complex (RZZ) and Spindly to control spindle assembly checkpoint (SAC) signaling and microtubule attachment. How the ubiquitous dynein co-factors Lis1 and NudE contribute to these functions remains poorly understood. Here, we show that the NudE homolog NUD-2 is dispensable for dynein- and LIS-1-dependent mitotic spindle assembly in the zygote. This facilitates functional characterization of kinetochore-localized NUD-2, which is recruited by the CENP-F-like proteins HCP-1 and HCP-2 independently of RZZ-Spindly and dynein-LIS-1. Kinetochore dynein levels are reduced in embryos, and, as occurs upon RZZ inhibition, loss of NUD-2 delays the formation of load-bearing kinetochore-microtubule attachments and causes chromatin bridges in anaphase. Survival of embryos requires a functional SAC, and kinetochores without NUD-2 recruit an excess of SAC proteins. Consistent with this, SAC signaling in early embryos extends mitotic duration and prevents high rates of chromosome mis-segregation. Our results reveal that both NUD-2 and RZZ-Spindly are essential for dynein function at kinetochores, and that the gain in SAC strength during early embryonic development is relevant under conditions that mildly perturb mitosis.

摘要

在有丝分裂中,分子马达 dynein 被 Rod-Zw10-Zwilch 复合物 (RZZ) 和 Spindly 招募到动粒,以控制纺锤体组装检查点 (SAC) 信号和微管附着。普遍存在的 dynein 共因子 Lis1 和 NudE 如何有助于这些功能仍知之甚少。在这里,我们表明,NudE 同源物 NUD-2 对于合子中 dynein 和 Lis1 依赖性有丝分裂纺锤体组装是可有可无的。这有利于动粒定位的 NUD-2 的功能表征,CENP-F 样蛋白 HCP-1 和 HCP-2 独立于 RZZ-Spindly 和 dynein-LIS-1 招募 NUD-2。胚胎中的动粒 dynein 水平降低,并且,就像 RZZ 抑制时一样,NUD-2 的缺失会延迟承载负荷的动粒-微管附着的形成,并在后期引起染色质桥。胚胎的存活需要一个功能性的 SAC,没有 NUD-2 的动粒会招募过多的 SAC 蛋白。与此一致,早期胚胎中的 SAC 信号延长了有丝分裂持续时间,并防止了染色体错误分离的高发生率。我们的结果表明,NUD-2 和 RZZ-Spindly 对于动粒上的 dynein 功能都是必不可少的,并且在轻度干扰有丝分裂的条件下,早期胚胎发育过程中 SAC 强度的增加是相关的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4e15/5818066/15eb4f24a0af/joces-131-212159-g1.jpg

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