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首页> 外文期刊>Genes and Development: a Journal Devoted to the Molecular Analysis of Gene Expression in Eukaryotes, Prokaryotes, and Viruses >Constitutive BAK activation as a determinant of drug sensitivity in malignant lymphohematopoietic cells
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Constitutive BAK activation as a determinant of drug sensitivity in malignant lymphohematopoietic cells

机译:本构性BAK活化可决定恶性淋巴造血细胞药物敏感性

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摘要

Mitochondrial outer membrane permeabilization (MOMP), a key step in the intrinsic apoptotic pathway, is incompletely understood. Current models emphasize the role of BH3-only BCL2 family members in BAX and BAK activation. Here we demonstrate concentration-dependent BAK autoactivation under cell-free conditions and provide evidence that this autoactivation plays a key role in regulating the intrinsic apoptotic pathway in intact cells. In particular, we show that up to 80% of BAK (but not BAX) in lymphohematopoietic cell lines is oligomerized and bound to anti-apoptotic BCL2 family members in the absence of exogenous death stimuli. The extent of this constitutive BAK oligomerization is diminished by BAK knockdown and unaffected by BIM or PUMA down-regulation. Further analysis indicates that sensitivity of cells to BH3 mimetics reflects the identity of the anti-apoptotic proteins to which BAK is constitutively bound, with extensive BCLXL.BAK complexes predicting navitoclax sensitivity, and extensive MCL1.BAK complexes predicting A1210477 sensitivity. Moreover, high BAK expression correlates with sensitivity of clinical acute myelogenous leukemia to chemotherapy, whereas low BAK levels correlate with resistance and relapse. Collectively, these results inform current understanding of MOMP and provide new insight into the ability of BH3 mimetics to induce apoptosis without directly activating BAX or BAK.
机译:线粒体外膜通透性(MOMP),内在凋亡途径的关键步骤,尚未完全了解。当前的模型强调仅BH3的BCL2家族成员在BAX和BAK激活中的作用。在这里,我们展示了无细胞条件下浓度依赖性BAK的自动激活,并提供了证明这种自动激活在调节完整细胞内在凋亡途径中起关键作用的证据。特别是,我们显示在没有外源性死亡刺激的情况下,淋巴造血细胞系中多达80%的BAK(而非BAX)被寡聚并结合至抗凋亡BCL2家族成员。这种BAK组成型低聚的程度会因BAK敲低而降低,不受BIM或PUMA下调的影响。进一步的分析表明,细胞对BH3模拟物的敏感性反映了BAK组成性结合的抗凋亡蛋白的特性,其中广泛的BCLXL.BAK复合物可预测navitoclax敏感性,而广泛的MCL1.BAK复合物可预测A1210477敏感性。此外,高BAK表达与临床急性骨髓性白血病对化疗的敏感性相关,而低BAK水平与耐药性和复发相关。总的来说,这些结果为当前对MOMP的理解提供了信息,并为BH3模拟物诱导凋亡而无需直接激活BAX或BAK的能力提供了新的见识。

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