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有丝分裂检验点蛋白 Mad1 对于早期核孔复合体蛋白 Nup153 向染色质的募集和核膜完整性是必需的。

Mitotic checkpoint protein Mad1 is required for early Nup153 recruitment to chromatin and nuclear envelope integrity.

机构信息

Institute of Molecular Biology and Medicine, Laboratory Biologie du Noyau, Université Libre de Bruxelles, 6041 Charleroi, Belgium.

Institute of Molecular Biology and Medicine, Laboratory Biologie du Noyau, Université Libre de Bruxelles, 6041 Charleroi, Belgium

出版信息

J Cell Sci. 2020 Nov 3;133(21):jcs249243. doi: 10.1242/jcs.249243.

Abstract

Nucleoporin Nup153 is a multifunctional protein and a known binding partner of mitotic checkpoint protein Mad1 (also known as MAD1L1). The functional relevance of their interaction has remained elusive. Here, we have further dissected the interface and functional interplay of Nup153 and Mad1. Using proximity ligation assays, we found that the presence of a nuclear envelope (NE) is a prerequisite for the Nup153-Mad1 association. Time-lapse microscopy revealed that depletion of Mad1 delayed recruitment of Nup153 to anaphase chromatin, which was often accompanied by a prolongation of anaphase. Furthermore, as seen by electron microscopic and three-dimensional structured illumination investigations, Nup153 and Mad1 depletion led to alterations in NE architecture, characterised by a change of membrane curvature at nuclear pore complexes (NPCs) and an expansion of the spacing between inner and outer nuclear membranes. Nup153 depletion, but not Mad1 depletion, caused defects in interphase NPC assembly, with partial displacement of cytoplasmic nucleoporins and a reduction in NPC density. Taken together, our results suggest that Nup153 has separable roles in NE and NPC formation: in post-mitotic NE re-formation in concert with Mad1 and in interphase NPC assembly, independent of Mad1.

摘要

核孔蛋白 Nup153 是一种多功能蛋白,也是有丝分裂检验点蛋白 Mad1(也称为 MAD1L1)的已知结合伴侣。它们相互作用的功能相关性仍然难以捉摸。在这里,我们进一步剖析了 Nup153 和 Mad1 的相互作用界面和功能。通过接近连接测定法,我们发现核膜(NE)的存在是 Nup153-Mad1 结合的前提条件。延时显微镜观察显示,Mad1 的耗竭延迟了 Nup153 向后期染色质的募集,这通常伴随着后期的延长。此外,通过电子显微镜和三维结构照明研究可以看出,Nup153 和 Mad1 的耗竭导致 NE 结构发生改变,核孔复合物(NPC)处的膜曲率发生变化,内、外核膜之间的间距扩大。Nup153 的耗竭而非 Mad1 的耗竭导致核孔复合物在有丝分裂间组装过程中出现缺陷,胞质核孔蛋白发生部分位移,核孔复合物密度降低。总之,我们的结果表明,Nup153 在核膜和核孔复合物的形成中具有可分离的作用:与 Mad1 一起在后有丝分裂核膜的重新形成中,以及在有丝分裂间核孔复合物的组装中,与 Mad1 无关。

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