Bie Anne S, Fernandez-Guerra Paula, Birkler Rune I D, Nisemblat Shahar, Pelnena Dita, Lu Xinping, Deignan Joshua L, Lee Hane, Dorrani Naghmeh, Corydon Thomas J, Palmfeldt Johan, Bivina Liga, Azem Abdussalam, Herman Kristin, Bross Peter
Research Unit for Molecular Medicine, Aarhus University and Aarhus University Hospital Aarhus, Denmark.
Department of Biochemistry & Molecular Biology, Tel Aviv University Tel Aviv, Israel.
Front Mol Biosci. 2016 Oct 7;3:65. doi: 10.3389/fmolb.2016.00065. eCollection 2016.
We here report molecular investigations of a missense mutation in the gene encoding the HSP10 subunit of the HSP60/ HSP10 chaperonin complex that assists protein folding in the mitochondrial matrix. The mutation was identified in an infant who came to clinical attention due to infantile spasms at 3 months of age. Clinical exome sequencing revealed heterozygosity for a NM_002157.2:c.217C>T mutation causing replacement of leucine with phenylalanine at position 73 of the HSP10 protein. This variation has never been observed in public exome sequencing databases or the literature. To evaluate whether the mutation may be disease-associated we investigated its effects by and studies. Our studies indicated that the purified mutant protein was functional, yet its thermal stability, spontaneous refolding propensity, and resistance to proteolytic treatment were profoundly impaired. Mass spectrometric analysis of patient fibroblasts revealed barely detectable levels of HSP10-p.Leu73Phe protein resulting in an almost 2-fold decrease of the ratio of HSP10 to HSP60 subunits. Amounts of the mitochondrial superoxide dismutase SOD2, a protein whose folding is known to strongly depend on the HSP60/HSP10 complex, were decreased to approximately 20% in patient fibroblasts in spite of unchanged SOD2 transcript levels. As a likely consequence, mitochondrial superoxide levels were increased about 2-fold. Although, we cannot exclude other causative or contributing factors, our experimental data support the notion that the HSP10-p.Leu73Phe mutation could be the cause or a strong contributing factor for the disorder in the described patient.
我们在此报告对编码HSP60/HSP10伴侣蛋白复合体中HSP10亚基的基因错义突变的分子研究,该复合体在线粒体基质中协助蛋白质折叠。该突变在一名3个月大因婴儿痉挛症引起临床关注的婴儿中被发现。临床外显子组测序揭示了NM_002157.2:c.217C>T突变的杂合性,该突变导致HSP10蛋白第73位的亮氨酸被苯丙氨酸取代。这种变异在公共外显子组测序数据库或文献中从未被观察到。为了评估该突变是否可能与疾病相关,我们通过[具体实验方法1]和[具体实验方法2]研究来探究其影响。我们的[具体实验方法1]研究表明,纯化的突变蛋白具有功能,但其热稳定性、自发重折叠倾向和对蛋白水解处理的抗性受到严重损害。对患者成纤维细胞的质谱分析显示,几乎检测不到HSP10-p.Leu73Phe蛋白水平,导致HSP10与HSP60亚基的比例几乎降低了2倍。尽管线粒体超氧化物歧化酶SOD2的转录水平未变,但已知其折叠强烈依赖于HSP60/HSP10复合体的该蛋白在患者成纤维细胞中的含量降至约20%。可能因此,线粒体超氧化物水平增加了约2倍。虽然我们不能排除其他致病或促成因素,但我们的实验数据支持HSP10-p.Leu73Phe突变可能是所描述患者疾病的病因或一个强有力的促成因素这一观点。