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工程化核苷酸蛋白用于碱基配对辅助的细胞质递送和基因组编辑。

Engineering Nucleotidoproteins for Base-Pairing-Assisted Cytosolic Delivery and Genome Editing.

机构信息

Institute of Functional Nano and Soft Materials (FUNSOM), Jiangsu Key Laboratory for Carbon-Based Functional Materials and Devices, Soochow University, 215123, Suzhou, Jiangsu, China.

Department of Thoracic Cancer, The Second Affiliated Hospital of Soochow University, 215123, Suzhou, Jiangsu, China.

出版信息

Angew Chem Int Ed Engl. 2023 Nov 6;62(45):e202307664. doi: 10.1002/anie.202307664. Epub 2023 Oct 6.

Abstract

Protein therapeutics targeting intracellular machineries hold profound potential for disease treatment, and hence robust cytosolic protein delivery technologies are imperatively demanded. Inspired by the super-negatively charged, nucleotide-enriched structure of nucleic acids, adenylated pro-proteins (A-proteins) with dramatically enhanced negative surface charges have been engineered for the first time via facile green synthesis. Then, thymidine-modified polyethyleneimine is developed, which exhibits strong electrostatic attraction, complementary base pairing, and hydrophobic interaction with A-proteins to form salt-resistant nanocomplexes with robust cytosolic delivery efficiencies. The acidic endolysosomal environment enables traceless restoration of the A-proteins and consequently promotes the intracellular release of the native proteins. This strategy shows high efficiency and universality for a variety of proteins with different molecular weights and isoelectric points in mammalian cells. Moreover, it enables highly efficient delivery of CRISPR-Cas9 ribonucleoproteins targeting fusion oncogene EWSR1-FLI1, leading to pronounced anti-tumor efficacy against Ewing sarcoma. This study provides a potent and versatile platform for cytosolic protein delivery and gene editing, and may benefit the development of protein pharmaceuticals.

摘要

靶向细胞内机器的蛋白质疗法在疾病治疗方面具有巨大的潜力,因此迫切需要强大的细胞质蛋白递送技术。受核酸超负电荷、富含核苷酸结构的启发,我们首次通过简便的绿色合成工程设计了具有显著增强的负表面电荷的腺嘌呤酰化前蛋白 (A 蛋白)。然后,开发了胸腺嘧啶修饰的聚乙烯亚胺,它与 A 蛋白具有强静电吸引、互补碱基配对和疏水相互作用,形成具有强大细胞质递送效率的耐盐纳米复合物。酸性内溶酶体环境使 A 蛋白无痕恢复,并促使天然蛋白在细胞内释放。该策略在哺乳动物细胞中对具有不同分子量和等电点的多种蛋白质具有高效性和通用性。此外,它还能高效递送至融合癌基因 EWSR1-FLI1 的靶向 CRISPR-Cas9 核糖核蛋白,从而对尤文肉瘤产生显著的抗肿瘤疗效。这项研究为细胞质蛋白递送和基因编辑提供了一个强大而通用的平台,可能有益于蛋白质药物的开发。

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