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Why the Lipid Divide? Membrane Proteins as Drivers of the Split between the Lipids of the Three Domains of Life

机译:为什么脂划分? 膜蛋白作为司机的脂质之间的三个域的脂质

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abstract type="main" xml:lang="en"> p>Recent results from engineered and natural samples show that the starkly different lipids of archaea and bacteria can form stable hybrid membranes. But if the two types can mix, why don't they? That is, why do most bacteria and all eukaryotes have only typically bacterial lipids, and archaea archaeal lipids? It is suggested here that the reason may lie on the other main component of cellular membranes: membrane proteins, and their close adaptation to the lipids. Archaeal lipids in modern bacteria could suggest that the last universal common ancestor (LUCA) had both lipid types. However, this would imply a rather elaborate evolutionary scenario, while negating simpler alternatives. In light of widespread horizontal gene transfer across the prokaryotic domains, hybrid membranes reveal that the lipid divide did not just occur once at the divergence of archaea and bacteria from LUCA. Instead, it continues to occur actively to this day./p> /abstract>
机译:&摘要类型=“main”xml:lang =“en”>& p>工程化和天然样品的最新结果表明,古代和细菌的持续不同脂质可以形成稳定的杂交膜。但如果两种类型可以混合,他们为什么不这样做?也就是说,为什么大多数细菌和所有真核生物通常只具有细菌脂质,和古古古脂质?这里建议的原因可以位于细胞膜的其他主要成分:膜蛋白,及其对脂质的紧密适应。现代细菌中的古脂质可能表明,最后一个普遍的普通祖先(Luca)都有脂质类型。但是,这意味着一个相当精致的进化场景,同时否定更简单的替代方案。鉴于穿过原核结构域的广泛水平基因转移,杂交膜表明,脂质划分并不只是发生一次在夏天和卢卡的细菌的差异。相反,它继续积极地发生至今。& / p>& /摘要>

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