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首页> 外文期刊>Angewandte Chemie >Electrostatic Localization of RNA to Protocell Membranes by Cationic Hydrophobic Peptides
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Electrostatic Localization of RNA to Protocell Membranes by Cationic Hydrophobic Peptides

机译:阳离子疏水肽将RNA静电定位到原生膜。

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摘要

Cooperative interactions between RNA and vesicle membranes on the prebiotic earth may have led to the emergence of primitive cells. The membrane surface offers a potential platform for the catalysis of reactions involving RNA, but this scenario relies upon the existence of a simple mechanism by which RNA could become associated with protocell membranes. Here, we show that electrostatic interactions provided by short, basic, amphipathic peptides can be harnessed to drive RNA binding to both zwitterionic phospholipid and anionic fatty acid membranes. We show that the association of cationic molecules with phospholipid vesicles can enhance the local positive charge on a membrane and attract RNA polynucleotides. This phenomenon can be reproduced with amphipathic peptides as short as three amino acids. Finally, we show that peptides can cross bilayer membranes to localize encapsulated RNA. This mechanism of polynucleotide confinement could have been important for primitive cellular evolution.
机译:益生元地球上RNA和囊泡膜之间的协同相互作用可能导致原始细胞的出现。膜表面为催化涉及RNA的反应提供了潜在的平台,但是这种情况依赖于RNA可以与原细胞膜结合的简单机制的存在。在这里,我们表明,可以利用短,碱性,两亲性肽提供的静电相互作用来驱动RNA与两性离子磷脂和阴离子脂肪酸膜的结合。我们显示阳离子分子与磷脂囊泡的关联可以增强膜上的局部正电荷并吸引RNA多核苷酸。短至三个氨基酸的两亲性肽可以重现这种现象。最后,我们证明了肽可以穿过双层膜来定位包裹的RNA。多核苷酸限制的这种机制对于原始细胞进化可能已经很重要。

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