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SSBP1 faux pas in mitonuclear tango causes optic neuropathy

机译:SSBP1型诊断探究性神经病变探究性神经病变

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摘要

Mitochondrial dysfunction or loss is evident in neurodegenerative diseases. Furthermore, mitochondrial DNA (mtDNA) mutations associated with NADH dehydrogenase subunits and nuclear gene mutations that affect mitochondrial function result in optic neuropathies. In this issue of the JCI, Del Dotto et al. and Piro-Mégy et al. identify heterozygous mutations in nuclear-encoded mitochondrial single-strand binding protein 1 (SSBP1) in patients with apparently dominant optic neuropathy with or without extraocular phenotypes. Both research groups reported similar mitochondrial findings in response to SSBP1 mutations. However, the specific SSBP1 mitochondria–associated function in retinal ganglion cells (RGCs) and the resulting optic nerve remains unclear. We suggest that high expression of SSBP1 during RGC differentiation is critical for mtDNA maintenance to produce appropriate optic nerve connectivity and that SSBP1 mutations in dominant optic atrophy patients do not permit stable binding to N6-methyldeoxyadenosine on the heavy strand involved with replication, leading to disruptions of mtDNA and, eventually, optic nerve dysfunction.
机译:在神经变性疾病中,线粒体功能障碍或损失是明显的。此外,与NADH脱氢酶亚基和核基因突变相关的线粒体DNA(MTDNA)突变,其影响线粒体功能导致视神经病变。在这个问题的JCI,Del Dotto等。和piro-méy等。识别患者在核编码的线粒体单链结合蛋白1(SSBP1)杂合突变与具有或不具有眼外的表型明显主导性视神经病变。两种研究组响应SSBP1突变报告了类似的线粒体发现。然而,视网膜神经节细胞(RGC)和所得视神经中的特异性SSBP1线粒体相关功能仍不清楚。我们建议在RGC差异期间SSBP1的高表达对于MTDNA维持至关重要,以产生适当的视神经连接,并且主要视神经萎缩患者的SSBP1突变不允许在涉及复制中涉及的重型链中与N6-甲基二氧基腺苷的稳定结合MTDNA和最终,视神经功能障碍。

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