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首页> 外文期刊>Angewandte Chemie >De novo Design of Selective Membrane-Active Peptides by Enzymatic Control of Their Conformational Bias on the Cell Surface
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De novo Design of Selective Membrane-Active Peptides by Enzymatic Control of Their Conformational Bias on the Cell Surface

机译:通过酶促控制细胞表面构象偏压的选择性膜 - 活性肽的脱诺设计

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摘要

Selectively targeting the membrane-perturbing potential of peptides towards a distinct cellular phenotype allows one to target distinct populations of cells. We report the de novo design of a new class of peptide whose ability to perturb cellular membranes is coupled to an enzyme-mediated shift in the folding potential of the peptide into its bioactive conformation. Cells rich in negatively charged surface components that also highly express alkaline phosphatase, for example many cancers, are susceptible to the action of the peptide. The unfolded, inactive peptide is dephosphorylated, shifting its conformational bias towards cell-surface-induced folding to form a facially amphiphilic membrane-active conformer. The fate of the peptide can be further tuned by peptide concentration to affect either lytic or cell-penetrating properties, which are useful for selective drug delivery. This is a new design strategy to afford peptides that are selective in their membrane-perturbing activity.
机译:选择性地靶向肽朝向明显细胞表型的膜扰动电位允许人们靶向不同的细胞群。 我们报道了新类肽的DE Novo设计,其扰动细胞膜的能力与肽的折叠电位的酶介导的偏移相结合到其生物活性构象中。 具有高表达碱性磷酸酶的带负电荷的表面组分的细胞,例如许多癌症,易于肽的作用。 展开的惰性肽是脱磷酸化的,将其构成偏压转移到细胞表面诱导的折叠以形成面部两亲膜 - 活性锥体。 肽的命运可以通过肽浓度进一步调节,以影响裂解或细胞穿透性,这可用于选择性药物递送。 这是一种新的设计策略,以提供在膜扰动活动中选择性的肽。

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