首页> 美国卫生研究院文献>PLoS Clinical Trials >Mitochondrial single-stranded DNA binding protein novel de novo SSBP1 mutation in a child with single large-scale mtDNA deletion (SLSMD) clinically manifesting as Pearson, Kearns-Sayre, and Leigh syndromes
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Mitochondrial single-stranded DNA binding protein novel de novo SSBP1 mutation in a child with single large-scale mtDNA deletion (SLSMD) clinically manifesting as Pearson, Kearns-Sayre, and Leigh syndromes

机译:儿童单线大规模mtDNA缺失(SLSMD)的线粒体单链DNA结合蛋白新型de novo SSBP1突变,临床表现为Pearson,Kearns-Sayre和Leigh综合征

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摘要

Mitochondrial DNA (mtDNA) genome integrity is essential for proper mitochondrial respiratory chain function to generate cellular energy. Nuclear genes encode several proteins that function at the mtDNA replication fork, including mitochondrial single-stranded DNA-binding protein (SSBP1), which is a tetrameric protein that binds and protects single-stranded mtDNA (ssDNA). Recently, two studies have reported pathogenic variants in SSBP1 associated with hearing loss, optic atrophy, and retinal degeneration. Here, we report a 14-year-old Chinese boy with severe and progressive mitochondrial disease manifestations across the full Pearson, Kearns-Sayre, and Leigh syndromes spectrum, including infantile anemia and bone marrow failure, growth failure, ptosis, ophthalmoplegia, ataxia, severe retinal dystrophy of the rod-cone type, sensorineural hearing loss, chronic kidney disease, multiple endocrine deficiencies, and metabolic strokes. mtDNA genome sequencing identified a single large-scale 5 kilobase mtDNA deletion (m.8629_14068del5440), present at 68% and 16% heteroplasmy in the proband’s fibroblast cell line and blood, respectively, suggestive of a mtDNA maintenance defect. On trio whole exome blood sequencing, the proband was found to harbor a novel de novo heterozygous mutation c.79G>A (p.E27K) in SSBP1. Size exclusion chromatography of p.E27K SSBP1 revealed it remains a stable tetramer. However, differential scanning fluorimetry demonstrated p.E27K SSBP1 relative to wild type had modestly decreased thermostability. Functional assays also revealed p.E27K SSBP1 had altered DNA binding. Molecular modeling of SSBP1 tetramers with varying combinations of mutant subunits predicted general changes in surface accessible charges, strength of inter-subunit interactions, and protein dynamics. Overall, the observed changes in protein dynamics and DNA binding behavior suggest that p.E27K SSBP1 can interfere with DNA replication and precipitate the introduction of large-scale mtDNA deletions. Thus, a single large-scale mtDNA deletion (SLSMD) with manifestations across the clinical spectrum of Pearson, Kearns-Sayre, and Leigh syndromes may result from a nuclear gene disorder disrupting mitochondrial DNA replication.
机译:线粒体DNA(mtDNA)基因组的完整性对于线粒体呼吸链功能正常产生细胞能量至关重要。核基因编码在mtDNA复制叉处起作用的几种蛋白质,包括线粒体单链DNA结合蛋白(SSBP1),它是一种四聚体蛋白质,可以结合并保护单链mtDNA(ssDNA)。最近,两项研究报道了SSBP1的致病变异与听力丧失,视神经萎缩和视网膜变性有关。在这里,我们报告了一个14岁的中国男孩,在整个Pearson,Kearns-Sayre和Leigh综合征的整个谱中都有严重和进行性线粒体疾病表现,包括婴儿贫血和骨髓衰竭,生长衰竭,上睑下垂,眼肌麻痹,共济失调,视锥细胞型严重的视网膜营养不良,感觉神经性听力减退,慢性肾脏疾病,多种内分泌缺陷和代谢性中风。 mtDNA基因组测序确定了单个大规模5 kb的mtDNA缺失(m.8629_14068del5440),在先证人成纤维细胞系和血液中的异质性分别为68%和16%,表明存在mtDNA维持缺陷。在三重全外显子组血液测序中,发现该先证者在SSBP1中具有一个新的从头杂合突变c.79G> A(p.E27K)。 p.E27K SSBP1的尺寸排阻色谱表明它仍然是稳定的四聚体。然而,差示扫描荧光法证明p.E27K SSBP1相对于野生型具有适度降低的热稳定性。功能测定还显示p.E27K SSBP1已改变DNA结合。具有突变亚基变化组合的SSBP1四聚体的分子模型预测了表面可及电荷,亚基间相互作用的强度和蛋白质动力学的一般变化。总体而言,观察到的蛋白质动力学和DNA结合行为的变化表明p.E27K SSBP1可以干扰DNA复制并促使大规模mtDNA缺失的引入。因此,单个大范围的mtDNA缺失(SLSMD)表现在Pearson,Kearns-Sayre和Leigh综合征的临床范围内,可能是由破坏线粒体DNA复制的核基因疾病引起的。

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