Tietz Ole, Cortezon-Tamarit Fernando, Chalk Rod, Able Sarah, Vallis Katherine A
Oxford Institute for Radiation Oncology, Department of Oncology, University of Oxford, Oxford, UK.
Centre for Medicines Discovery, University of Oxford, Oxford, UK.
Nat Chem. 2022 Mar;14(3):284-293. doi: 10.1038/s41557-021-00866-0. Epub 2022 Feb 10.
The intracellular environment hosts a large number of cancer- and other disease-relevant human proteins. Targeting these with internalized antibodies would allow therapeutic modulation of hitherto undruggable pathways, such as those mediated by protein-protein interactions. However, one of the major obstacles in intracellular targeting is the entrapment of biomacromolecules in the endosome. Here we report an approach to delivering antibodies and antibody fragments into the cytosol and nucleus of cells using trimeric cell-penetrating peptides (CPPs). Four trimers, based on linear and cyclic sequences of the archetypal CPP Tat, are significantly more potent than monomers and can be tuned to function by direct interaction with the plasma membrane or escape from vesicle-like bodies. These studies identify a tricyclic Tat construct that enables intracellular delivery of functional immunoglobulin-G antibodies and Fab fragments that bind intracellular targets in the cytosol and nuclei of live cells at effective concentrations as low as 1 μM.
细胞内环境中存在大量与癌症及其他疾病相关的人类蛋白质。用内化抗体靶向这些蛋白质将能够对迄今难以成药的信号通路进行治疗性调控,比如那些由蛋白质-蛋白质相互作用介导的信号通路。然而,细胞内靶向的主要障碍之一是生物大分子被困在内体中。在此,我们报告了一种利用三聚体细胞穿透肽(CPP)将抗体和抗体片段递送至细胞胞质溶胶和细胞核的方法。基于典型CPP Tat的线性和环状序列构建的四种三聚体,其效力明显高于单体,并且可以通过与质膜直接相互作用或从囊泡样结构中逃逸来进行功能调控。这些研究确定了一种三环Tat构建体,它能够将功能性免疫球蛋白G抗体和Fab片段递送至细胞内,这些抗体和片段能够在活细胞的胞质溶胶和细胞核中以低至1 μM的有效浓度结合细胞内靶点。