Jiang Sirui, Shao Changjuan, Tang Fangqiang, Wang Wenzhang, Zhu Xiongwei
Department of Pathology, Case Western Reserve University, Cleveland, Ohio.
Aging Cell. 2019 Jun;18(3):e12912. doi: 10.1111/acel.12912. Epub 2019 Feb 14.
Abnormal mitochondrial dynamics contributes to mitochondrial dysfunction in Alzheimer's disease (AD), yet the underlying mechanism remains elusive. In the current study, we reported that DLP1, the key mitochondrial fission GTPase, is a substrate of calpain which produced specific N-terminal DLP1 cleavage fragments. In addition, various AD-related insults such as exposure to glutamate, soluble amyloid-β oligomers, or reagents inducing tau hyperphosphorylation (i.e., okadaic acid) led to calpain-dependent cleavage of DLP1 in primary cortical neurons. DLP1 cleavage fragments were found in cortical neurons of CRND8 APP transgenic mice which can be inhibited by calpeptin, a potent small molecule inhibitor of calpain. Importantly, these N-terminal DLP1 fragments were also present in the human brains, and the levels of both full-length and N-terminal fragments of DLP1 and the full-length and calpain-specific cleavage product of spectrin were significantly reduced in AD brains along with significantly increased calpain. These results suggest that calpain-dependent cleavage is at least one of the posttranscriptional mechanisms that contribute to the dysregulation of mitochondrial dynamics in AD.
异常的线粒体动力学促成了阿尔茨海默病(AD)中的线粒体功能障碍,但其潜在机制仍不清楚。在本研究中,我们报道了关键的线粒体裂变GTP酶DLP1是钙蛋白酶的底物,钙蛋白酶产生特定的N端DLP1裂解片段。此外,各种与AD相关的损伤,如暴露于谷氨酸、可溶性淀粉样β寡聚体或诱导tau蛋白过度磷酸化的试剂(即冈田酸),导致原代皮质神经元中钙蛋白酶依赖性DLP1的裂解。在CRND8 APP转基因小鼠的皮质神经元中发现了DLP1裂解片段,而钙蛋白酶的强效小分子抑制剂钙肽素可以抑制这些片段。重要的是,这些N端DLP1片段也存在于人类大脑中,并且在AD大脑中,DLP1的全长和N端片段以及血影蛋白的全长和钙蛋白酶特异性裂解产物的水平均显著降低,同时钙蛋白酶显著增加。这些结果表明,钙蛋白酶依赖性裂解至少是导致AD中线粒体动力学失调的转录后机制之一。