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首页> 外文期刊>Human Molecular Genetics >Disrupted in schizophrenia 1 (DISC1) is a constituent of the mammalian mitochondrial contact site and cristae organizing system (MICOS) complex, and is essential for oxidative phosphorylation
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Disrupted in schizophrenia 1 (DISC1) is a constituent of the mammalian mitochondrial contact site and cristae organizing system (MICOS) complex, and is essential for oxidative phosphorylation

机译:中断精神分裂症1(DICK1)是哺乳动物线粒体接触部位和嵴组织系统(MICOS)复合物的组成部分,对氧化磷酸化至关重要

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Disrupted in Schizophrenia-1 (DISC1) has been associated with a broad spectrum of mental disorders. DISC1 is a multi-compartmentalized protein found in the cytoplasm, centrosome, nuclei and mostly enriched in mitochondria. In order to shed light on DISC1 mitochondrial function, we have studied its topology within the organelle. We show in here that in mammals DISC1 resides in the ‘Mitochondrial contact site and Cristae Organizing system’ (MICOS) complex, involved in cristae organization. DISC1 knockdown in SH-SY5Y cells causes MICOS disassembly and fragmentation of the mitochondrial morphology network. Moreover, DISC1 depleted cells have decreased mitochondrial DNA (mtDNA) content and steady state levels of oxidative phosphorylation (OXPHOS) subunits. As a consequence, OXPHOS complexes and supercomplexes are partially disassembled in DISC1 knockdown cells, which suffer severe bioenergetic defects, evidenced by impaired oxygen consumption, adenosine triphosphate synthesis and mitochondrial membrane potential. Transfection of recombinant full-length human DISC1 restores MICOS complex assembly and rescues OXPHOS function, meanwhile overexpression of the DISC1 truncated form Δ597-854, known to be pathogenic, fails to rescue the bioenergetic impairment caused by DISC1 knockdown. These results should contribute to reveal DISC1 physiological function and potential pathogenic role in severe mental illnesses.
机译:中断精神分裂症-1(DICK1)已与广泛的精神障碍相关联。 DICK1是一种在细胞质,中心,核中发现的多分隔型蛋白质,大多富含线粒体。为了在Disc1线粒体功能上脱光,我们研究了细胞器内的拓扑。我们在这里展示,在哺乳动物DICK1中,在'线粒体接触部位和嵴组织系统'(MICOS)复合物中,涉及克里斯塔组织。 SH-SY5Y细胞中的DICK1敲低导致MICOS拆卸和线粒体形态网络的碎片。此外,DICK1耗尽的细胞具有降低的线粒体DNA(MTDNA)含量和稳态氧化磷酸化(毒物)亚基的稳态水平。因此,汤膦络合物和超复杂部分在Disc1敲低细胞中部分拆卸,其遭受严重的生物能缺陷,通过缺氧,腺苷三磷酸合成和线粒体膜电位受损证明。重组全长人盘的转染恢复米多斯复合组件并拯救奥氏蛋白函数,同时称为致病性的Disc1截短的形式Δ597-854的过表达未能拯救由Disc1敲低引起的生物能量损伤。这些结果应该有助于揭示Disc1生理功能和严重精神疾病中的潜在致病作用。

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