在肌萎缩性脊髓侧索硬化症中发现的 CHCHD2 P14L 具有细胞质定位错误的特点,会改变 Ca2+ 稳态

Aya Ikeda, Hongrui Meng, Daisuke Taniguchi, Muneyo Mio, Manabu Funayama, Kenya Nishioka, Mari Yoshida, Yuanzhe Li, Hiroyo Yoshino, Tsuyoshi Inoshita, Kahori Shiba-Fukushima, Yohei Okubo, Takashi Sakurai, Taku Amo, Ikuko Aiba, Yufuko Saito, Yuko Saito, Shigeo Murayama, Naoki Atsuta, Ryoichi Nakamura, Genki Tohnai, Yuishin Izumi, Mitsuya Morita, Asako Tamura, Osamu Kano, Masaya Oda, Satoshi Kuwabara, Toru Yamashita, Jun Sone, Ryuji Kaji, Gen Sobue, Yuzuru Imai, Nobutaka Hattori
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The missense variant of CHCHD2, P14L, found in a cohort of patients with ALS, mislocalized CHCHD2 to the cytoplasm, leaving CHCHD10 in the mitochondria. Drosophila lacking the CHCHD2 ortholog exhibited mitochondrial degeneration. In contrast, human CHCHD2 P14L, but not wild-type human CHCHD2, failed to suppress this degeneration, suggesting that P14L is a pathogenic variant. The mitochondrial Ca2+ buffering capacity was reduced in Drosophila neurons expressing human CHCHD2 P14L. The altered Ca2+-buffering phenotype was also observed in cultured human neuroblastoma SH-SY5Y cells expressing CHCHD2 P14L. In these cells, transient elevation of cytoplasmic Ca2+ facilitated the activation of calpain and caspase-3, accompanied by the processing and insolubilization of TDP-43. 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摘要

CHCHD2和CHCHD10分别与帕金森病和肌萎缩侧索硬化症-额颞叶痴呆症(ALS)有关,它们是线粒体膜间蛋白,形成异源二聚体。本研究旨在探讨与 ALS 有关的 CHCHD2 P14L 变体对线粒体功能的影响及其随后对细胞稳态的影响。在一组 ALS 患者中发现的 CHCHD2 P14L 错义变体会将 CHCHD2 错定位到细胞质中,而将 CHCHD10 留在线粒体中。缺乏 CHCHD2 同源物的果蝇表现出线粒体退化。相反,人类 CHCHD2 P14L(而非野生型人类 CHCHD2)不能抑制这种退化,这表明 P14L 是一种致病变体。表达人CHCHD2 P14L的果蝇神经元线粒体Ca2+缓冲能力降低。在培养的表达 CHCHD2 P14L 的人类神经母细胞瘤 SH-SY5Y 细胞中也观察到了 Ca2+ 缓冲表型的改变。在这些细胞中,细胞质 Ca2+ 的瞬时升高促进了钙蛋白酶和 Caspase-3 的活化,并伴随着 TDP-43 的处理和不溶解。这些观察结果表明,CHCHD2 P14L导致Ca2+动态异常和TDP-43聚集,反映了渐冻人症的病理生理学。
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CHCHD2 P14L, found in amyotrophic lateral sclerosis, exhibits cytoplasmic mislocalization and alters Ca2+ homeostasis
CHCHD2 and CHCHD10, linked to Parkinson's disease and amyotrophic lateral sclerosis-frontotemporal dementia (ALS), respectively, are mitochondrial intermembrane proteins that form a heterodimer. This study aimed to investigate the impact of the CHCHD2 P14L variant, implicated in ALS, on mitochondrial function and its subsequent effects on cellular homeostasis. The missense variant of CHCHD2, P14L, found in a cohort of patients with ALS, mislocalized CHCHD2 to the cytoplasm, leaving CHCHD10 in the mitochondria. Drosophila lacking the CHCHD2 ortholog exhibited mitochondrial degeneration. In contrast, human CHCHD2 P14L, but not wild-type human CHCHD2, failed to suppress this degeneration, suggesting that P14L is a pathogenic variant. The mitochondrial Ca2+ buffering capacity was reduced in Drosophila neurons expressing human CHCHD2 P14L. The altered Ca2+-buffering phenotype was also observed in cultured human neuroblastoma SH-SY5Y cells expressing CHCHD2 P14L. In these cells, transient elevation of cytoplasmic Ca2+ facilitated the activation of calpain and caspase-3, accompanied by the processing and insolubilization of TDP-43. These observations suggest that CHCHD2 P14L causes abnormal Ca2+ dynamics and TDP-43 aggregation, reflecting the pathophysiology of ALS.
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