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使用具有内体释放功能的两亲性肽递送BIM BH3肽激活细胞凋亡的内源性途径。

Activating the Intrinsic Pathway of Apoptosis Using BIM BH3 Peptides Delivered by Peptide Amphiphiles with Endosomal Release.

作者信息

Schnorenberg Mathew R, Bellairs Joseph A, Samaeekia Ravand, Acar Handan, Tirrell Matthew V, LaBelle James L

机构信息

Pritzker School of Molecular Engineering, University of Chicago, Chicago, IL 60637, USA.

Department of Pediatrics, Section of Hematology/Oncology, University of Chicago, Chicago, IL 60637, USA.

出版信息

Materials (Basel). 2019 Aug 12;12(16):2567. doi: 10.3390/ma12162567.

Abstract

Therapeutic manipulation of the BCL-2 family using BH3 mimetics is an emerging paradigm in cancer treatment and immune modulation. For example, peptides mimicking the BIM BH3 helix can directly target the full complement of anti- and pro-apoptotic BCL-2 proteins to trigger apoptosis. This study has incorporated the potent BH3 α-helical death domain of BIM into peptide amphiphile (PA) nanostructures designed to facilitate cellular uptake and induce cell death. This study shows that these PA nanostructures are quickly incorporated into cells, are able to specifically bind BCL-2 proteins, are stable at physiologic temperatures and pH, and induce dose-dependent apoptosis in cells. The incorporation of a cathepsin B cleavable linker between the BIM BH3 peptide and the hydrophobic tail resulted in increased intracellular accumulation and mitochondrial co-localization of the BIM BH3 peptide while also improving BCL-2 family member binding and apoptotic reactivation. This PA platform represents a promising new strategy for intracellular therapeutic peptide delivery for the disruption of intracellular protein:protein interactions.

摘要

使用BH3模拟物对BCL-2家族进行治疗性调控是癌症治疗和免疫调节中一种新兴的范例。例如,模拟BIM BH3螺旋的肽可以直接靶向抗凋亡和促凋亡BCL-2蛋白的全部互补物以触发细胞凋亡。本研究已将BIM的强效BH3α-螺旋死亡结构域整合到肽两亲物(PA)纳米结构中,旨在促进细胞摄取并诱导细胞死亡。本研究表明,这些PA纳米结构能快速进入细胞,能够特异性结合BCL-2蛋白,在生理温度和pH下稳定,并在细胞中诱导剂量依赖性细胞凋亡。在BIM BH3肽和疏水尾部之间引入组织蛋白酶B可裂解的连接子,导致BIM BH3肽在细胞内的积累增加以及与线粒体共定位,同时还改善了BCL-2家族成员的结合和凋亡再激活。这个PA平台代表了一种有前景的新策略,用于细胞内治疗性肽递送以破坏细胞内蛋白质:蛋白质相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/863e/6719084/578084d40803/materials-12-02567-g001.jpg

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