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Eisosomes Are Dynamic Plasma Membrane Domains Showing Pil1-Lsp1 Heteroligomer Binding Equilibrium

机译:Eisosomes是动态血浆膜域显示Pil1-Lsp1杂聚物结合平衡。

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摘要

Eisosomes are plasma membrane domains concentrating lipids, transporters, and signaling molecules. In the budding yeast Saccharomyces cerevisiae, these domains are structured by scaffolds composed mainly by two cytoplasmic proteins Pil1 and Lsp1. Eisosomes are immobile domains, have relatively uniform size, and encompass thousands of units of the core proteins Pil1 and Lsp1. In this work we used fluorescence fluctuation analytical methods to determine the dynamics of eisosome core proteins at different subcellular locations. Using a combination of scanning techniques with autocorrelation analysis, we show that Pil1 and Lsp1 cytoplasmic pools freely diffuse whereas an eisosome-associated fraction of these proteins exhibits slow dynamics that fit with a binding-unbinding equilibrium. Number and brightness analysis shows that the eisosome-associated fraction is oligomeric, while cytoplasmic pools have lower aggregation states. Fluorescence lifetime imaging results indicate that Pil1 and Lsp1 directly interact in the cytoplasm and within the eisosomes. These results support a model where Pil1-Lsp1 heterodimers are the minimal eisosomes building blocks. Moreover, individual-eisosome fluorescence fluctuation analysis shows that eisosomes in the same cell are not equal domains: while roughly half of them are mostly static, the other half is actively exchanging core protein subunits.
机译:脂质体是浓缩脂质,转运蛋白和信号分子的质膜结构域。在出芽的酿酒酵母中,这些结构域由主要由两种胞质蛋白Pil1和Lsp1组成的支架构成。异构体是不可移动的结构域,具有相对统一的大小,并包含数千个核心蛋白Pil1和Lsp1单位。在这项工作中,我们使用了荧光波动分析方法来确定不同亚细胞位置的核糖体核心蛋白的动力学。使用扫描技术与自相关分析的组合,我们显示Pil1和Lsp1胞质池自由扩散,而这些蛋白质的酶体相关部分表现出缓慢的动力学,符合结合-解除结合平衡。数量和亮度分析表明,与酶体相关的级分是寡聚的,而细胞质库的聚集态较低。荧光寿命成像结果表明,Pil1和Lsp1在细胞质中和在Esosome中直接相互作用。这些结果支持其中Pil1-Lsp1异二聚体是最小的Esosomes构建基块的模型。此外,单个等位基因荧光波动分析表明,同一细胞中的等位基因不是相同的结构域:虽然其中大约一半是静态的,但另一半正在积极交换核心蛋白亚基。

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