Department of Life Sciences and the National Institute for Biotechnology in the Negev, Ben-Gurion University, Beer-Sheva 84105, Israel.
Department of Life Sciences and the National Institute for Biotechnology in the Negev, Ben-Gurion University, Beer-Sheva 84105, Israel.
Mol Ther. 2018 Mar 7;26(3):680-694. doi: 10.1016/j.ymthe.2017.12.020. Epub 2017 Dec 24.
The mitochondrial pro-apoptotic protein SMAC/Diablo participates in apoptosis by negatively regulating IAPs and activating caspases, thus encouraging apoptosis. Unexpectedly, we found that SMAC/Diablo is overexpressed in cancer. This paradox was addressed here by silencing SMAC/Diablo expression using specific siRNA (si-hSMAC). In cancer cell lines and subcutaneous lung cancer xenografts in mice, such silencing reduced cell and tumor growth. Immunohistochemistry and electron microscopy of the si-hSMAC-treated residual tumor demonstrated morphological changes, including cell differentiation and reorganization into glandular/alveoli-like structures and elimination of lamellar bodies, surfactant-producing organs. Next-generation sequencing of non-targeted or si-hSMAC-treated tumors revealed altered expression of genes associated with the cellular membrane and extracellular matrix, of genes found in the ER and Golgi lumen and in exosomal networks, of genes involved in lipid metabolism, and of lipid, metabolite, and ion transporters. SMAC/Diablo silencing decreased the levels of phospholipids, including phosphatidylcholine. These findings suggest that SMAC/Diablo possesses additional non-apoptotic functions related to regulating lipid synthesis essential for cancer growth and development and that this may explain SMAC/Diablo overexpression in cancer. The new lipid synthesis-related function of the pro-apoptotic protein SMAC/Diablo in cancer cells makes SMAC/Diablo a promising therapeutic target.
线粒体促凋亡蛋白 SMAC/Diablo 通过负调控 IAPs 和激活半胱天冬酶来促进细胞凋亡,从而参与细胞凋亡。出乎意料的是,我们发现 SMAC/Diablo 在癌症中过度表达。在这里,我们通过使用特异性 siRNA(si-hSMAC)沉默 SMAC/Diablo 的表达来解决这一矛盾。在癌细胞系和小鼠皮下肺癌异种移植瘤中,这种沉默减少了细胞和肿瘤的生长。用 si-hSMAC 处理后的残余肿瘤的免疫组织化学和电子显微镜检查显示出形态学变化,包括细胞分化和重组为腺泡样结构以及板层小体(产生表面活性剂的器官)的消除。对非靶向或 si-hSMAC 处理的肿瘤进行下一代测序揭示了与细胞膜和细胞外基质相关的基因、内质网和高尔基体腔以及外泌体网络中的基因、参与脂质代谢的基因以及脂质、代谢物和离子转运体的表达发生改变。SMAC/Diablo 的沉默降低了包括磷脂酰胆碱在内的磷脂水平。这些发现表明,SMAC/Diablo 具有额外的非凋亡功能,与调节脂质合成有关,脂质合成对癌症的生长和发展至关重要,这可能解释了癌症中 SMAC/Diablo 的过度表达。促凋亡蛋白 SMAC/Diablo 在癌细胞中的新的脂质合成相关功能使 SMAC/Diablo 成为一个有前途的治疗靶点。