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BCL-xL在亚细胞膜上对BH3蛋白的紧密隔离导致细胞凋亡抗性。

Tight Sequestration of BH3 Proteins by BCL-xL at Subcellular Membranes Contributes to Apoptotic Resistance.

作者信息

Pécot Jessie, Maillet Laurent, Le Pen Janic, Vuillier Céline, Trécesson Sophie de Carné, Fétiveau Aurélie, Sarosiek Kristopher A, Bock Florian J, Braun Frédérique, Letai Anthony, Tait Stephen W G, Gautier Fabien, Juin Philippe P

机构信息

CRCNA, INSERM, CNRS, Université d'Angers, Université de Nantes, 44035 Nantes, France.

Dana-Farber Cancer Institute, Harvard Medical School, Boston, MA 02215, USA.

出版信息

Cell Rep. 2016 Dec 20;17(12):3347-3358. doi: 10.1016/j.celrep.2016.11.064.

Abstract

Anti-apoptotic BCL-2 family members bind to BH3-only proteins and multidomain BAX/BAK to preserve mitochondrial integrity and maintain survival. Whereas inhibition of these interactions is the biological basis of BH3-mimetic anti-cancer therapy, the actual response of membrane-bound protein complexes to these compounds is currently ill-defined. Here, we find that treatment with BH3 mimetics targeting BCL-xL spares subsets of cells with the highest levels of this protein. In intact cells, sequestration of some pro-apoptotic activators (including PUMA and BIM) by full-length BCL-xL is much more resistant to derepression than previously described in cell-free systems. Alterations in the BCL-xL C-terminal anchor that impacts subcellular membrane-targeting and localization dynamics restore sensitivity. Thus, the membrane localization of BCL-xL enforces its control over cell survival and, importantly, limits the pro-apoptotic effects of BH3 mimetics by selectively influencing BCL-xL binding to key pro-apoptotic effectors.

摘要

抗凋亡的BCL-2家族成员与仅含BH3结构域的蛋白以及多结构域的BAX/BAK结合,以维持线粒体完整性并保持细胞存活。虽然抑制这些相互作用是BH3模拟物抗癌治疗的生物学基础,但膜结合蛋白复合物对这些化合物的实际反应目前尚不清楚。在这里,我们发现用靶向BCL-xL的BH3模拟物处理会使该蛋白水平最高的细胞亚群得以存活。在完整细胞中,全长BCL-xL对一些促凋亡激活剂(包括PUMA和BIM)的隔离比之前在无细胞系统中所描述的更能抵抗去抑制作用。影响亚细胞膜靶向和定位动态的BCL-xL C末端锚定的改变可恢复敏感性。因此,BCL-xL的膜定位加强了其对细胞存活的控制,重要的是,通过选择性地影响BCL-xL与关键促凋亡效应器的结合来限制BH3模拟物的促凋亡作用。

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