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mInsc 协调 Par3 和 NuMA 凝聚物,用于组装不对称细胞分裂中的纺锤体定向机制。

mInsc coordinates Par3 and NuMA condensates for assembly of the spindle orientation machinery in asymmetric cell division.

机构信息

Department of Neurosurgery, Huashan Hospital, The Shanghai Key Laboratory of Medical Epigenetics, Institutes of Biomedical Sciences, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, National Center for Neurological Disorders, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China.

Department of Neurosurgery, Huashan Hospital, The Shanghai Key Laboratory of Medical Epigenetics, Institutes of Biomedical Sciences, State Key Laboratory of Medical Neurobiology and MOE Frontiers Center for Brain Science, National Center for Neurological Disorders, School of Basic Medical Sciences, Fudan University, Shanghai 200032, China.

出版信息

Int J Biol Macromol. 2024 Nov;279(Pt 2):135126. doi: 10.1016/j.ijbiomac.2024.135126. Epub 2024 Aug 30.

Abstract

As a fundamental process governing the self-renewal and differentiation of stem cells, asymmetric cell division is controlled by several conserved regulators, including the polarity protein Par3 and the microtubule-associated protein NuMA, which orchestrate the assembly and interplay of the Par3/Par6/mInsc/LGN complex at the apical cortex and the LGN/Gαi/NuMA/Dynein complex at the mitotic spindle to ensure asymmetric segregation of cell fate determinants. However, this model, which is well-supported by genetic studies, has been challenged by evidence of competitive interaction between NuMA and mInsc for LGN. Here, the solved crystal structure of the Par3/mInsc complex reveals that mInsc competes with Par6β for Par3, raising questions about how proteins assemble overlapping targets into functional macromolecular complexes. Unanticipatedly, we discover that Par3 can recruit both Par6β and mInsc by forming a dynamic condensate through phase separation. Similarly, the phase-separated NuMA condensate enables the coexistence of competitive NuMA and mInsc with LGN in the same compartment. Bridge by mInsc, Par3/Par6β and LGN/NuMA condensates coacervate, robustly enriching all five proteins both in vitro and within cells. These findings highlight the pivotal role of protein condensates in assembling multi-component signalosomes that incorporate competitive protein-protein interaction pairs, effectively overcoming stoichiometric constraints encountered in conventional protein complexes.

摘要

作为控制干细胞自我更新和分化的基本过程,不对称细胞分裂受几种保守调节剂控制,包括极性蛋白 Par3 和微管相关蛋白 NuMA,它们在顶皮质膜组装和相互作用 Par3/Par6/mInsc/LGN 复合物和在有丝分裂纺锤体中的 LGN/Gαi/NuMA/Dynein 复合物,以确保细胞命运决定因素的不对称分离。然而,这个模型得到了遗传研究的很好支持,但 NuMA 和 mInsc 对 LGN 的竞争相互作用的证据对其提出了挑战。在这里,解决的 Par3/mInsc 复合物的晶体结构揭示了 mInsc 与 Par6β 竞争 Par3,这引发了关于蛋白质如何将重叠的靶标组装成功能性大分子复合物的问题。出人意料的是,我们发现 Par3 通过形成相分离来招募 Par6β 和 mInsc。同样,相分离的 NuMA 凝聚物允许竞争的 NuMA 和 mInsc 与 LGN 共存于同一隔室中。通过 mInsc 桥接,Par3/Par6β 和 LGN/NuMA 凝聚物共浓缩,在体外和细胞内都强烈富集了所有五种蛋白质。这些发现强调了蛋白质凝聚物在组装包含竞争蛋白-蛋白相互作用对的多组分信号复合物中的关键作用,有效地克服了传统蛋白质复合物中遇到的化学计量限制。

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