Liu Xibao, Gong Baijuan, de Souza Lorena Brito, Ong Hwei Ling, Subedi Krishna P, Cheng Kwong Tai, Swaim William, Zheng Changyu, Mori Yasuo, Ambudkar Indu S
Molecular Physiology and Therapeutics Branch, National Institute of Dental and Craniofacial Research, National Institutes of Health, Bethesda, MD 20892, USA.
Department of Orthodontics, Jilin University School of Stomatology, Changchun 130021, People's Republic of China.
Sci Signal. 2017 Jun 6;10(482):eaal4064. doi: 10.1126/scisignal.aal4064.
Store-operated Ca entry (SOCE) is critical for salivary gland fluid secretion. We report that radiation treatment caused persistent salivary gland dysfunction by activating a TRPM2-dependent mitochondrial pathway, leading to caspase-3-mediated cleavage of stromal interaction molecule 1 (STIM1) and loss of SOCE. After irradiation, acinar cells from the submandibular glands of , but not those from mice, displayed an increase in the concentrations of mitochondrial Ca and reactive oxygen species, a decrease in mitochondrial membrane potential, and activation of caspase-3, which was associated with a sustained decrease in STIM1 abundance and attenuation of SOCE. In a salivary gland cell line, silencing the mitochondrial Ca uniporter or caspase-3 or treatment with inhibitors of TRPM2 or caspase-3 prevented irradiation-induced loss of STIM1 and SOCE. Expression of exogenous STIM1 in the salivary glands of irradiated mice increased SOCE and fluid secretion. We suggest that targeting the mechanisms underlying the loss of STIM1 would be a potentially useful approach for preserving salivary gland function after radiation therapy.
store-operated Ca entry (SOCE) 对唾液腺液体分泌至关重要。我们报告称,放射治疗通过激活TRPM2依赖的线粒体途径导致持续性唾液腺功能障碍,导致caspase-3介导的基质相互作用分子1 (STIM1) 裂解以及SOCE丧失。照射后,来自 小鼠下颌下腺的腺泡细胞,但不是来自 小鼠的腺泡细胞,显示出线粒体Ca和活性氧浓度增加、线粒体膜电位降低以及caspase-3激活,这与STIM1丰度持续降低和SOCE减弱有关。在唾液腺细胞系中,沉默线粒体Ca单向转运体或caspase-3,或用TRPM2或caspase-3抑制剂处理,可防止照射诱导的STIM1和SOCE丧失。在受照射小鼠的唾液腺中表达外源性STIM1可增加SOCE和液体分泌。我们认为,针对STIM1丧失的潜在机制可能是放疗后保留唾液腺功能的一种有用方法。