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首页> 外文期刊>Molecular biology of the cell >Microtubules support a disk-like septin arrangement at the plasma membrane of mammalian cells
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Microtubules support a disk-like septin arrangement at the plasma membrane of mammalian cells

机译:微管支持哺乳动物细胞质膜上的盘状隔蛋白排列

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摘要

Septin family proteins oligomerize through guanosine 5'-triphosphate-binding domains into core heteromers, which in turn polymerize at the cleavage furrow of dividing fungal and animal cells. Septin assemblies during the interphase of animal cells remain poorly defined and are the topic of this report. In this study, we developed protocols for visualization of authentic higher-order assemblies using tagged septins to effectively replace the endogenous gene product within septin core heteromers in human cells. Our analysis revealed that septins assemble into microtubule-supported, disk-like structures at the plasma membrane. In the absence of cell substrate adhesion, this is the predominant higher-order arrangement in interphase cells and each of the seven to eight septin family members expressed by the two analyzed cell types appears equally represented. However, studies of myeloid and lymphoid cell model systems revealed cell type-specific alterations of higher-order septin arrangements in response to substrate adhesion. Live-cell observations suggested that all higher-order septin assemblies are mutually exclusive with plasma membrane regions undergoing remodeling. The combined data point to a mechanism by which densely arranged cortical microtubules, which are typical for nonadhered spherical cells, support plasma membrane-bound, disk-like septin assemblies.
机译:Septin家族蛋白通过鸟苷5'-三磷酸结合结构域寡聚为核心异聚体,然后在真菌和动物细胞分裂的沟中聚合。在动物细胞间期的Septin组装仍然定义不清,是本报告的主题。在这项研究中,我们开发了使用标记的septins可视化真实的高阶程序集的协议,以有效替换人类细胞中septin核心异聚体中的内源基因产物。我们的分析表明,隔膜在质膜上组装成微管支撑的盘状结构。在不存在细胞底物粘附的情况下,这是相间细胞中的主要高阶排列,并且由两种分析的细胞类型表达的7至8个septin家族成员中的每一个都表现得相同。但是,对髓样和淋巴样细胞模型系统的研究表明,响应于底物粘附,高阶隔蛋白排列的细胞类型特异性改变。活细胞观察表明,所有更高级别的Septin组装体都与正在经历重塑的质膜区域互斥。组合的数据指向一种机制,通过该机制,密集排列的皮质微管(非粘附球形细胞通常具有这种特征)支持质膜结合的,盘状隔膜蛋白组件。

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