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CHCHD2 accumulates in distressed mitochondria and facilitates oligomerization of CHCHD10

机译:CHCHD2积累在痛苦的线粒体中,促进CHCHD10的低聚

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摘要

Mutations in paralogous mitochondrial proteins CHCHD2 and CHCHD10 cause autosomal dominant Parkinson Disease (PD) and Amyotrophic Lateral Sclerosis/Frontotemporal Dementia (ALS/FTD), respectively. Using newly generated CHCHD2, CHCHD10 and CHCHD2/10 double knockout cell lines, we find that the proteins are partially functionally redundant, similarly distributed throughout the mitochondrial cristae, and form heterodimers. Unexpectedly, we also find that CHCHD2/CHCHD10 heterodimerization increases in response to mitochondrial stress. This increase is driven by differences in the proteins' stability and mutual affinity: CHCHD2 is preferentially stabilized by loss of mitochondrial membrane potential, and CHCHD10 oligomerization depends on CHCHD2 expression. Exploiting the dependence of CHCHD10 oligomerization on CHCHD2, we developed a heterodimer incorporation assay and demonstrate that CHCHD2 and CHCHD10 with disease-causing mutations readily form heterodimers. As we also find that both proteins are highly expressed in human Substantia nigra and cortical pyramidal neurons, mutant CHCHD2 and CHCHD10 may directly interact with their wild-type paralogs in the context of PD and ALS/FTD pathogenesis. Together, these findings demonstrate that differences in the stability and mutual affinity of CHCHD2 and CHCHD10 regulate their heterodimerization in response to mitochondrial distress, revealing an unanticipated link between PD and ALS/FTD pathogenesis.
机译:副骨细胞蛋白CHCHD2和CHCHD10中的突变分别引起常染色体显性帕金森病(PD)和肌萎缩侧硬化/胎儿痴呆(ALS / FTD)。使用新生成的CHCHD2,CHCHD10和CHCHD2 / 10双敲除细胞系,我们发现蛋白质部分在功能上是多余的,类似地分布在整个线粒体嵴中,并形成异二聚体。出乎意料的是,我们还发现CHCHD2 / CHCHD10的异二聚体响应于线粒体应力而增加。这种增加是蛋白质稳定性和相互亲和力的差异的驱动:CHCHD2优先通过丧失线粒体膜电位而稳定,并且CHCHD10寡聚化取决于CHCHD2表达。利用CHCHD10寡聚化对CHCHD2的依赖性,我们开发了异二聚体掺入试验,并证明了CHCHD2和CHCHD10具有疾病引起的突变容易形成异二聚体。如我们还发现,两种蛋白质在人体体内高度表达NIGRA和皮质锥形神经元,突变体CHCHD2和CHCHD10可以在PD和ALS / FTD发病机制的情况下直接与其野生型副磷酸相互作用。这些研究结果表明,CHCHD2和CHCHD10的稳定性和相互亲和力的差异调节其响应线粒体窘迫的异二种化,揭示了Pd和Als / FTD发病机制之间的意外联系。

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  • 来源
    《Human Molecular Genetics》 |2018年第22期|共20页
  • 作者单位

    NINDS Inherited Movement Disorders Unit Neurogenet Branch NIH Bldg 36 Rm 4D04 Bethesda MD;

    NINDS Inherited Movement Disorders Unit Neurogenet Branch NIH Bldg 36 Rm 4D04 Bethesda MD;

    NINDS Inherited Movement Disorders Unit Neurogenet Branch NIH Bldg 36 Rm 4D04 Bethesda MD;

    NINDS Inherited Movement Disorders Unit Neurogenet Branch NIH Bldg 36 Rm 4D04 Bethesda MD;

    NINDS Inherited Movement Disorders Unit Neurogenet Branch NIH Bldg 36 Rm 4D04 Bethesda MD;

    Univ Hosp Basel Div Neuropathol Inst Pathol Basel Switzerland;

    Hop Robert Debre INSERM UMR 1141 Paris France;

    Univ Wurzburg Bioctr Dept Microbiol D-97074 Wurzburg Germany;

    Hop Robert Debre INSERM UMR 1141 Paris France;

    Univ Hosp Basel Div Neuropathol Inst Pathol Basel Switzerland;

    NINDS Inherited Movement Disorders Unit Neurogenet Branch NIH Bldg 36 Rm 4D04 Bethesda MD;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 医学遗传学;
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