生物
遗传学
基因
蛋白磷酸酶2
蛋白质亚单位
突变
作者
Chey Loveday,Katrina Tatton‐Brown,Matthew Clarke,Isaac M. Westwood,Anthony Renwick,Emma Ramsay,Andrea H. Németh,Jennifer Campbell,Shelagh Joss,McKinlay Gardner,Anna Zachariou,Anna Elliott,Elise Ruark,Rob van Montfort,Nazneen Rahman
摘要
Overgrowth syndromes comprise a group of heterogeneous disorders characterised by excessive growth parameters, often in association with intellectual disability.To identify new causes of human overgrowth, we have been undertaking trio-based exome sequencing studies in overgrowth patients and their unaffected parents.Prioritisation of functionally relevant genes with multiple unique de novo mutations revealed four mutations in protein phosphatase 2A (PP2A) regulatory subunit B family genes protein phosphatase 2, regulatory Subunit B', beta (PPP2R5B); protein phosphatase 2, regulatory Subunit B', gamma (PPP2R5C); and protein phosphatase 2, regulatory Subunit B', delta (PPP2R5D).This observation in 3 related genes in 111 individuals with a similar phenotype is greatly in excess of the expected number, as determined from gene-specific de novo mutation rates (P = 1.43 × 10 -10 ).Analysis of exome-sequencing data from a follow-up series of overgrowth probands identified a further pathogenic mutation, bringing the total number of affected individuals to 5. Heterozygotes shared similar phenotypic features including increased height, increased head circumference and intellectual disability.The mutations clustered within a region of nine amino acid residues in the aligned protein sequences (P = 1.6 × 10 -5 ).We mapped the mutations onto the crystal structure of the PP2A holoenzyme complex to predict their molecular and functional consequences.These studies suggest that the mutations may affect substrate binding, thus perturbing the ability of PP2A to dephosphorylate particular protein substrates.
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