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A new membrane protein Sbg1 links the contractile ring apparatus and septum synthesis machinery in fission yeast

机译:一种新的膜蛋白Sbg1连接裂变酵母中的收缩环装置和隔膜合成机制

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摘要

Cytokinesis in many organisms requires a plasma membrane anchored actomyosin ring, whose contraction facilitates cell division. In yeast and fungi, actomyosin ring constriction is also coordinated with division septum assembly. How the actomyosin ring interacts with the plasma membrane and the plasma membrane-localized septum synthesizing machinery remains poorly understood. In Schizosaccharomyces pombe, an attractive model organism to study cytokinesis, the β-1,3-glucan synthase Cps1p / Bgs1p, an integral membrane protein, localizes to the plasma membrane overlying the actomyosin ring and is required for primary septum synthesis. Through a high-dosage suppressor screen we identified an essential gene, sbg1+ (suppressor of beta glucan synthase 1), which suppressed the colony formation defect of Bgs1-defective cps1-191 mutant at higher temperatures. Sbg1p, an integral membrane protein, localizes to the cell ends and to the division site. Sbg1p and Bgs1p physically interact and are dependent on each other to localize to the division site. Loss of Sbg1p results in an unstable actomyosin ring that unravels and slides, leading to an inability to deposit a single contiguous division septum and an important reduction of the β-1,3-glucan proportion in the cell wall, coincident with that observed in the cps1-191 mutant. Sbg1p shows genetic and / or physical interaction with Rga7p, Imp2p, Cdc15p, and Pxl1p, proteins known to be required for actomyosin ring integrity and efficient septum synthesis. This study establishes Sbg1p as a key member of a group of proteins that link the plasma membrane, the actomyosin ring, and the division septum assembly machinery in fission yeast.\ud\ud
机译:在许多生物中,胞质分裂需要质膜锚定的肌动球蛋白环,其收缩促进细胞分裂。在酵母和真菌中,放线菌素环的收缩也与间隔隔膜的组装相协调。肌动球蛋白环如何与质膜和质膜定位的隔膜合成机制相互作用尚不清楚。在粟酒裂殖酵母(Schizosaccharomyces pombe)中,一种研究细胞分裂的有吸引力的模型生物,β-1,3-葡聚糖合酶Cps1p / Bgs1p是必不可少的膜蛋白,位于覆盖在肌动蛋白环上的质膜,是初次隔膜合成所必需的。通过高剂量抑制物筛选,我们鉴定了一个必需基因sbg1 +(β-葡聚糖合酶1的抑制剂),该基因在较高温度下抑制了Bgs1-缺陷cps1-191突变体的菌落形成缺陷。 Sbg1p是必不可少的膜蛋白,位于细胞末端和分裂部位。 Sbg1p和Bgs1p在物理上相互作用,并且彼此依赖以定位到分裂位点。 Sbg1p的丢失会导致不稳定的放线菌素环解开并滑动,导致无法沉积单个连续的分隔隔膜,并且细胞壁中β-1,3-葡聚糖的比例显着降低,这与在细胞壁上观察到的相吻合。 cps1-191突变体。 Sbg1p显示与Rga7p,Imp2p,Cdc15p和Pxl1p的遗传和/或物理相互作用,已知这些蛋白是肌动球蛋白环完整性和有效隔垫合成所必需的。这项研究确定Sbg1p是连接裂变酵母中质膜,放线菌素环和分隔隔膜组装机制的一组蛋白质的关键成员。

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