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凋亡抑制剂 Bcl-xL 通过线粒体依赖性活性氧产生控制乳腺癌细胞迁移。

The apoptosis inhibitor Bcl-xL controls breast cancer cell migration through mitochondria-dependent reactive oxygen species production.

机构信息

Université de Lyon, Université Claude Bernard Lyon 1, INSERM 1052, CNRS 5286, Centre Léon Bérard, Centre de Recherche en Cancérologie de Lyon, 69008, Lyon, France.

Hospices Civils de Lyon, Centre de Biologie Sud, Centre Hospitalier Lyon Sud, Chemin du Grand Revoyet, 69495, Pierre Bénite, France.

出版信息

Oncogene. 2020 Apr;39(15):3056-3074. doi: 10.1038/s41388-020-1212-9. Epub 2020 Feb 17.

Abstract

The Bcl-xL apoptosis inhibitor plays a major role in vertebrate development. In addition to its effect on apoptosis, Bcl-xL is also involved in cell migration and mitochondrial metabolism. These effects may favour the onset and dissemination of metastasis. However, the underlying molecular mechanisms remain to be fully understood. Here we focus on the control of cell migration by Bcl-xL in the context of breast cancer cells. We show that Bcl-xL silencing led to migration defects in Hs578T and MDA-MB231 cells. These defects were rescued by re-expressing mitochondria-addressed, but not endoplasmic reticulum-addressed, Bcl-xL. The use of BH3 mimetics, such as ABT-737 and WEHI-539 confirmed that the effect of Bcl-xL on migration did not depend on interactions with BH3-containing death accelerators such as Bax or BH3-only proteins. In contrast, the use of a BH4 peptide that disrupts the Bcl-xL/VDAC1 complex supports that Bcl-xL by acting on VDAC1 permeability contributes to cell migration through the promotion of reactive oxygen species production by the electron transport chain. Collectively our data highlight the key role of Bcl-xL at the interface between cell metabolism, cell death, and cell migration, thus exposing the VDAC1/Bcl-xL interaction as a promising target for anti-tumour therapy in the context of metastatic breast cancer.

摘要

Bcl-xL 凋亡抑制剂在脊椎动物发育中起着重要作用。除了对细胞凋亡的影响外,Bcl-xL 还参与细胞迁移和线粒体代谢。这些作用可能有利于转移的发生和扩散。然而,潜在的分子机制仍有待充分理解。在这里,我们关注 Bcl-xL 在乳腺癌细胞中对细胞迁移的控制。我们表明,Bcl-xL 沉默导致 Hs578T 和 MDA-MB231 细胞的迁移缺陷。通过重新表达线粒体靶向但不是内质网靶向的 Bcl-xL,可以挽救这些缺陷。使用 BH3 模拟物,如 ABT-737 和 WEHI-539,证实了 Bcl-xL 对迁移的影响不依赖于与 Bax 或 BH3 仅蛋白等含有 BH3 的死亡促进剂的相互作用。相比之下,使用破坏 Bcl-xL/VDAC1 复合物的 BH4 肽表明,Bcl-xL 通过作用于 VDAC1 通透性,通过促进电子传递链产生活性氧来促进细胞迁移。总之,我们的数据强调了 Bcl-xL 在细胞代谢、细胞死亡和细胞迁移之间的界面的关键作用,从而暴露了 VDAC1/Bcl-xL 相互作用作为转移性乳腺癌抗肿瘤治疗的有希望的靶点。

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