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Cell type–specific expression of SEPT3-homology subgroup members controls the subunit number of heteromeric septin complexes

机译:SEPT3-homology亚组成员的细胞类型特异性表达控制异源Septin复合物的亚基数量

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摘要

Septins are filament-forming proteins important for organizing the cortex of animal and fungal cells. In mammals, 13 septin paralogues were recently shown to assemble into core heterohexamer and heterooctamer complexes, which serve as building blocks for apolar filamentous structures that differ among cell types. To determine how tissue-specific septin paralogue expression may shape core heteromer repertoires and thereby modulate properties of septin filaments, we devised protocols to analyze native septin heteromers with distinct numbers of subunits. Our evidence based on genetically manipulated human cells supports and extends recent concepts of homology subgroup–restricted assembly into distinct categories of apolar heterohexamers and heterooctamers. We also identify a category of tetramers that have a subunit composition equivalent to an octameric building block. These atypical tetramers are prevalent in lymphocytes and neural tissues, in which octamers are abundant but hexamers are rare. Our results can be explained by tissue-specific expression of SEPT3 subgroup members: SEPT3, SEPT9, and SEPT12. These serve as cognate subunits in either heterooctamers or atypical tetramers but exhibit different preferences in various tissues. The identified tissue-specific repertoires of septin heteromers provide insights into how higher-order septin structures with differential properties and stabilities may form in diverse animal cell types.
机译:Septins是形成细丝的蛋白质,对组织动物和真菌细胞的皮质很重要。在哺乳动物中,最近显示有13种septin旁系同源物可组装成核心异六聚体和异八聚体复合物,它们是细胞类型不同的非极性丝状结构的基础。为了确定组织特异性septin旁系同源表达如何塑造核心异源异构体库,从而调节septin细丝的特性,我们设计了方案以分析具有不同数量亚基的天然septin异源异构体。我们基于基因操作的人类细胞的证据支持并将同源性亚组限制性组装的最新概念扩展到非极性异六聚体和异八聚体的不同类别。我们还确定了一类四聚体,其亚单位组成与八聚体构件相同。这些非典型四聚体普遍存在于淋巴细胞和神经组织中,其中八聚体丰富,而六聚体很少。我们的结果可以通过SEPT3亚组成员SEPT3,SEPT9和SEPT12的组织特异性表达来解释。它们在异八聚体或非典型四聚体中用作同源亚基,但在各种组织中表现出不同的偏好。鉴定出的Septin异聚体的组织特异性库提供了有关在各种动物细胞类型中如何形成具有不同特性和稳定性的高阶Septin结构的见解。

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