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Functional insight into the role of Orc6 in septin complex filament formation in Drosophila

机译:功能性洞察Orc6在果蝇隔膜蛋白复合物丝形成中的作用

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Septins belong to a family of polymerizing GTP-binding proteins that are important for cytokinesis and other processes that involve spatial organization of the cell cortex. We reconstituted a recombinant Drosophila septin complex and compared activities of the wild-type and several mutant septin complex variants both in vitro and in vivo. We show that Drosophila septin complex functions depend on the intact GTP-binding and/or hydrolysis domains of Pnut, Sep1, and Sep2. The presence of the functional C-terminal domain of septins is required for the integrity of the complex. Drosophila Orc6 protein, the smallest subunit of the origin recognition complex (ORC), directly binds to septin complex and facilitates septin filament formation. Orc6 forms dimers through the interactions of its N-terminal, TFIIB-like domains. This ability of the protein suggests a direct bridging role for Orc6 in stimulating septin polymerization in Drosophila . Studies reported here provide a functional dissection of a Drosophila septin complex and highlight the basic conserved and divergent features among metazoan septin complexes.
机译:分离蛋白属于聚合GTP结合蛋白家族,对细胞分裂和涉及细胞皮质空间组织的其他过程很重要。我们重组了果蝇Septin复合物,并比较了野生型和几种突变Septin复合物变体在体外和体内的活性。我们显示果蝇Septin复杂功能取决于完整的GTP结合和/或Pnut,Sep1和Sep2的水解域。隔膜的功能性C末端结构域的存在是复杂的完整性所必需的。果蝇Orc6蛋白是起源识别复合物(ORC)的最小亚基,直接与septin复合物结合并促进septin细丝的形成。 Orc6通过其N末端类似TFIIB的结构域的相互作用形成二聚体。这种蛋白的能力暗示了Orc6在刺激果蝇中Septin聚合反应中的直接桥梁作用。此处报道的研究提供了果蝇Septin复合物的功能解剖,并突出了后生动物Septin复合物中基本的保守和发散特征。

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