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开发一种与体外选择策略兼容的环状、细胞穿透肽。

Development of a Cyclic, Cell Penetrating Peptide Compatible with In Vitro Selection Strategies.

机构信息

Chemistry, Virginia Commonwealth University, 1001 W Main Street, Richmond, 23284 Virginia, United States.

Massey Cancer Center, Virginia Commonwealth University, Richmond, 23219 Virginia, United States.

出版信息

ACS Chem Biol. 2023 Apr 21;18(4):746-755. doi: 10.1021/acschembio.2c00680. Epub 2023 Mar 15.

Abstract

A key limitation for the development of peptides as therapeutics is their lack of cell permeability. Recent work has shown that short, arginine-rich macrocyclic peptides containing hydrophobic amino acids are able to penetrate cells and reach the cytosol. Here, we have developed a new strategy for developing cyclic cell penetrating peptides (CPPs) that shifts some of the hydrophobic character to the peptide cyclization linker, allowing us to do a linker screen to find cyclic CPPs with improved cellular uptake. We demonstrate that both hydrophobicity and position of the alkylation points on the linker affect uptake of macrocyclic cell penetrating peptides (CPPs). Our best peptide, , is on par with or better than prototypical CPPs Arg () and under assays measuring total cellular uptake and cytosolic delivery. was also able to carry a peptide previously discovered from an selection, , and a cytotoxic peptide into the cytosol. A bicyclic variant of showed even better cytosolic entry than , highlighting the plasticity of this class of peptides toward modifications. Since our CPPs are cyclized via their side chains (as opposed to head-to-tail cyclization), they are compatible with powerful technologies for peptide ligand discovery including phage display and mRNA display. Access to diverse libraries with inherent cell permeability will afford the ability to find cell permeable hits to many challenging intracellular targets.

摘要

作为治疗方法,肽的一个主要局限性是它们缺乏细胞通透性。最近的研究表明,含有疏水性氨基酸的短精氨酸丰富的大环环肽能够穿透细胞并到达细胞质。在这里,我们开发了一种开发环状细胞穿透肽 (CPP) 的新策略,该策略将一些疏水性转移到肽环化连接子上,使我们能够进行连接子筛选,以找到具有改善细胞摄取能力的环状 CPP。我们证明,连接子上的疏水性和烷基化点的位置都会影响大环细胞穿透肽 (CPP) 的摄取。我们最好的肽 ,与原型 CPP Arg () 和 相当,甚至更好,在测量总细胞摄取和细胞质递送的测定中。 还能够将先前从 选择中发现的肽 和细胞毒性肽带入细胞质。 的双环变体甚至比 具有更好的细胞质进入能力,突出了这类肽对修饰的可塑性。由于我们的 CPP 通过其侧链环化(而不是头到尾环化),因此它们与包括噬菌体展示和 mRNA 展示在内的强大肽配体发现技术兼容。获得具有固有细胞通透性的各种文库将能够找到许多具有挑战性的细胞内靶标的细胞通透性命中。

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