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细胞内渗透选择 - 质谱法产生用于反义递药的非规范肽。

In-Cell Penetration Selection-Mass Spectrometry Produces Noncanonical Peptides for Antisense Delivery.

机构信息

Department of Chemistry, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States.

Sarepta Therapeutics, 215 First Street, Cambridge, Massachusetts 02142, United States.

出版信息

ACS Chem Biol. 2023 Mar 17;18(3):615-628. doi: 10.1021/acschembio.2c00920. Epub 2023 Mar 1.

Abstract

Peptide-mediated delivery of macromolecules in cells has significant potential therapeutic benefits, but no therapy employing cell-penetrating peptides (CPPs) has reached the market after 30 years of investigation due to challenges in the discovery of new, more efficient sequences. Here, we demonstrate a method for in-cell penetration selection-mass spectrometry (in-cell PS-MS) to discover peptides from a synthetic library capable of delivering macromolecule cargo to the cytosol. This method was inspired by recent selection approaches for cell-surface screening, with an added spatial dimension resulting from subcellular fractionation. A representative peptide discovered in the cytosolic extract, Cyto1a, is nearly 100-fold more active toward antisense phosphorodiamidate morpholino oligomer (PMO) delivery compared to a sequence identified from a whole cell extract, which includes endosomes. Cyto1a is composed of d-residues and two non-α-amino acids, is more stable than its all-l isoform, and is less toxic than known CPPs with comparable activity. Pulse-chase and microscopy experiments revealed that while the PMO-Cyto1a conjugate is likely taken up by endosomes, it can escape to localize to the nucleus without nonspecifically releasing other endosomal components. In-cell PS-MS introduces a means to empirically discover unnatural synthetic peptides for subcellular delivery of therapeutically relevant cargo.

摘要

肽介导的大分子在细胞内的递呈具有重要的潜在治疗益处,但经过 30 年的研究,由于发现新的、更有效的序列的挑战,没有一种使用细胞穿透肽 (CPP) 的疗法能够推向市场。在这里,我们展示了一种用于细胞内渗透选择 - 质谱法 (in-cell PS-MS) 的方法,以从能够将大分子货物递送到细胞质的合成文库中发现肽。这种方法的灵感来自于最近针对细胞表面筛选的选择方法,由于亚细胞分级分离,增加了一个空间维度。在细胞质提取物中发现的代表性肽 Cyto1a,与从包括内体的整个细胞提取物中鉴定的序列相比,对反义磷酰胺酸二酯吗啉寡聚物 (PMO) 递呈的活性高近 100 倍。Cyto1a 由 d-残基和两个非α-氨基酸组成,比其全 l 异构体更稳定,并且比具有可比活性的已知 CPP 毒性更小。脉冲追踪和显微镜实验表明,虽然 PMO-Cyto1a 缀合物可能被内体摄取,但它可以逃逸并定位到细胞核,而不会非特异性释放其他内体成分。in-cell PS-MS 引入了一种经验性发现用于治疗相关货物亚细胞递呈的非天然合成肽的方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b1f8/10460143/f01092b08072/nihms-1922795-f0002.jpg

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