The BCL-2 family is composed of anti- and pro-apoptotic members that respectively protect or disrupt mitochondrial integrity. Anti-apoptotic overexpression can promote oncogenesis by trapping the BCL-2 homology 3 (BH3) "killer domains" of pro-apoptotic proteins in a surface groove, blocking apoptosis. Groove inhibitors, such as the relatively large BCL-2 drug venetoclax (868 Da), have emerged as cancer therapies. BFL-1 remains an undrugged oncogenic protein and can cause venetoclax resistance. Having identified a unique C55 residue in the BFL-1 groove, we performed a disulfide tethering screen to determine if C55 reactivity could enable smaller molecules to block BFL-1's BH3-binding functionality. We found that a disulfide-bearing N-acetyltryptophan analog (304Â Da adduct) effectively targeted BFL-1 C55 and reversed BFL-1-mediated suppression of mitochondrial apoptosis. Structural analyses implicated the conserved leucine-binding pocket of BFL-1 as the interaction site, resulting in conformational remodeling. Thus, therapeutic targeting of BFL-1 may be achievable through the design of small, cysteine-reactive drugs.
Identification of a Covalent Molecular Inhibitor of Anti-apoptotic BFL-1 by Disulfide Tethering.
通过二硫键连接鉴定抗凋亡蛋白BFL-1的共价分子抑制剂
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作者:Harvey Edward P, Hauseman Zachary J, Cohen Daniel T, Rettenmaier T Justin, Lee Susan, Huhn Annissa J, Wales Thomas E, Seo Hyuk-Soo, Luccarelli James, Newman Catherine E, Guerra Rachel M, Bird Gregory H, Dhe-Paganon Sirano, Engen John R, Wells James A, Walensky Loren D
| 期刊: | Cell Chemical Biology | 影响因子: | 7.200 |
| 时间: | 2020 | 起止号: | 2020 Jun 18; 27(6):647-656 |
| doi: | 10.1016/j.chembiol.2020.04.004 | 研究方向: | 表观遗传 |
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