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Actin and Septin Ultrastructures at the Budding Yeast Cell Cortex

机译:酵母细胞皮层的肌动蛋白和Septin超微结构

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Budding yeast has been a powerful model organism for studies of the roles of actin in endocytosis and septins in cell division and in signaling. However, the depth of mechanistic understanding that can be obtained from such studies has been severely hindered by a lack of ultrastructural information about how actin and septins are organized at the cell cortex. To address this problem, we developed rapid-freeze and deep-etch techniques to image the yeast cell cortex in spheroplasted cells at high resolution. The cortical actin cytoskeleton assembles into conical or mound-like structures composed of short, cross-linked filaments. The Arp2/3 complex localizes near the apex of these structures, suggesting that actin patch assembly may be initiated from the apex. Mutants in cortical actin patch components with defined defects in endocytosis disrupted different stages of cortical actin patch assembly. Based on these results, we propose a model for actin function during endocytosis. In addition to actin structures, we found that septin-containing filaments assemble into two kinds of higher order structures at the cell cortex: rings and ordered gauzes. These images provide the first high-resolution views of septin organization in cells.
机译:萌芽酵母已成为研究肌动蛋白在胞吞作用和隔蛋白在细胞分裂和信号传导中的作用的强大模式生物。但是,由于缺乏有关肌动蛋白和隔蛋白在细胞皮层中如何组织的超微结构信息,严重阻碍了从此类研究中获得的机械理解的深度。为了解决这个问题,我们开发了快速冷冻和深蚀刻技术,以高分辨率对球形塑料细胞中的酵母细胞皮层进行成像。皮质肌动蛋白细胞骨架组装成由短的,交联的细丝组成的圆锥形或丘形结构。 Arp2 / 3复合物位于这些结构的顶点附近,表明肌动蛋白贴片组装可能从顶点开始。皮质肌动蛋白补丁组件中具有内吞缺陷的突变体破坏了皮质肌动蛋白补丁组装的不同阶段。基于这些结果,我们提出了内吞过程中肌动蛋白功能的模型。除了肌动蛋白结构,我们发现含Septin的细丝在细胞皮层处组装成两种高阶结构:环和有序的网状结构。这些图像提供了细胞中Septin组织的第一个高分辨率视图。

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