Institute for Inherited Metabolic Disorders, First Faculty of Medicine, Charles University in Prague, Prague, Czech Republic.
Am J Hum Genet. 2011 Aug 12;89(2):241-52. doi: 10.1016/j.ajhg.2011.07.003. Epub 2011 Aug 4.
Autosomal-dominant adult-onset neuronal ceroid lipofuscinosis (ANCL) is characterized by accumulation of autofluorescent storage material in neural tissues and neurodegeneration and has an age of onset in the third decade of life or later. The genetic and molecular basis of the disease has remained unknown for many years. We carried out linkage mapping, gene-expression analysis, exome sequencing, and candidate-gene sequencing in affected individuals from 20 families and/or individuals with simplex cases; we identified in five individuals one of two disease-causing mutations, c.346_348delCTC and c.344T>G, in DNAJC5 encoding cysteine-string protein alpha (CSPα). These mutations-causing a deletion, p.Leu116del, and an amino acid exchange, p.Leu115Arg, respectively-are located within the cysteine-string domain of the protein and affect both palmitoylation-dependent sorting and the amount of CSPα in neuronal cells. The resulting depletion of functional CSPα might cause in parallel the presynaptic dysfunction and the progressive neurodegeneration observed in affected individuals and lysosomal accumulation of misfolded and proteolysis-resistant proteins in the form of characteristic ceroid deposits in neurons. Our work represents an important step in the genetic dissection of a genetically heterogeneous group of ANCLs. It also confirms a neuroprotective role for CSPα in humans and demonstrates the need for detailed investigation of CSPα in the neuronal ceroid lipofuscinoses and other neurodegenerative diseases presenting with neuronal protein aggregation.
常染色体显性遗传的成年发病神经元蜡样脂褐质沉积症(ANCL)的特征是在神经组织中积累自发荧光的储存物质和神经退行性变,发病年龄在第三十年或更晚。多年来,该疾病的遗传和分子基础仍不清楚。我们对 20 个家系或单纯病例的受影响个体进行了连锁作图、基因表达分析、外显子组测序和候选基因测序;我们在五名个体中发现了两种致病突变之一,c.346_348delCTC 和 c.344T>G,在编码半胱氨酸-string 蛋白 alpha(CSPα)的 DNAJC5 中。这两种突变分别导致了一个缺失,p.Leu116del,和一个氨基酸替换,p.Leu115Arg,位于蛋白质的半胱氨酸-string 结构域内,影响棕榈酰化依赖性分拣和神经元细胞中 CSPα的数量。功能性 CSPα的耗竭可能会导致受影响个体中观察到的突触前功能障碍和进行性神经退行性变,以及溶酶体中错误折叠和蛋白水解抗性蛋白以特征性的类脂褐素沉积的形式积累。我们的工作代表了对一组遗传异质性的 ANCL 进行遗传解析的重要一步。它还证实了 CSPα 在人类中的神经保护作用,并表明需要在神经元蜡样脂褐质沉积症和其他以神经元蛋白聚集为特征的神经退行性疾病中对 CSPα进行详细研究。