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Bim escapes displacement by BH3-mimetic anti-cancer drugs by double-bolt locking both Bcl-XL and Bcl-2

机译:Bim通过双螺栓锁定Bcl-XL和Bcl-2来逃脱BH3类抗癌药的替代

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摘要

Tumor initiation, progression and resistance to chemotherapy rely on cancer cells bypassing programmed cell death by apoptosis. We report that unlike other pro-apoptotic proteins, Bim contains two distinct binding sites for the anti-apoptotic proteins Bcl-XL and Bcl-2. These include the BH3 sequence shared with other pro-apoptotic proteins and an unexpected sequence located near the Bim carboxyl-terminus (residues 181–192). Using automated Fluorescence Lifetime Imaging Microscopy - Fluorescence Resonance Energy Transfer (FLIM-FRET) we show that the two binding interfaces enable Bim to double-bolt lock Bcl-XL and Bcl-2 in complexes resistant to displacement by BH3-mimetic drugs currently in use or being evaluated for cancer therapy. Quantifying in live cells the contributions of individual amino acids revealed that residue L185 previously thought involved in binding Bim to membranes, instead contributes to binding to anti-apoptotic proteins. This double-bolt lock mechanism has profound implications for the utility of BH3-mimetics as drugs. ​
机译:肿瘤的起始,进展和对化学疗法的耐药性依赖癌细胞绕过程序性细胞死亡而导致凋亡。我们报告说,与其他促凋亡蛋白不同,Bim包含两个不同的抗凋亡蛋白Bcl-XL和Bcl-2结合位点。这些包括与其他促凋亡蛋白共有的BH3序列和位于Bim羧基末端附近的意外序列(残基181–192)。使用自动荧光寿命成像显微镜-荧光共振能量转移(FLIM-FRET),我们证明了这两个结合界面使Bim能够双螺栓锁定复合物中的Bcl-XL和Bcl-2,以抵抗目前正在使用的BH3模拟药物置换或正在接受癌症治疗的评估。在活细胞中定量单个氨基酸的贡献揭示了以前认为与Bim结合到膜有关的残基L185,反而有助于与抗凋亡蛋白的结合。这种双螺栓锁定机制对BH3模拟物作为药物的用途具有深远的意义。

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