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Bladder tumour-derived somatic TSC1 missense mutations cause loss of function via distinct mechanisms.

机译:膀胱肿瘤衍生的体细胞TSC1错义突变通过独特的机制导致功能丧失。

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摘要

More than 50% of transitional cell carcinomas of the bladder show loss of heterozygosity of a region spanning the TSC1 locus at 9q34 and mutations of TSC1 have been identified in 14.5% of tumours. These comprise nonsense mutations, splicing mutations, small deletions and missense mutations. Missense mutations are only rarely found in the germline in TSC disease. Therefore, we have examined six somatic missense mutations found in bladder cancer to determine whether these result in loss of function. We describe loss of function via distinct mechanisms. Five mutations caused mutually exclusive defects at mRNA and protein levels. Of these, two mutations caused pre-mRNA splicing errors that were predicted to result in premature protein truncation and three resulted in markedly reduced stability of exogenous TSC1 protein. Primary tumours with aberrant TSC1 pre-mRNA splicing were confirmed as negative for TSC1 expression by immunohistochemistry. Expression was also significantly reduced in a tumour with a TSC1 missense mutation resulting in diminished protein half-life. A single TSC1 missense mutation identified in a tumour with retained heterozygosity of the TSC1 region on chromosome 9 caused an apparently TSC2- and mTOR-independent localization defect of the mutant protein. We conclude that although TSC1 missense mutations do not play a major role in causation of TSC disease, they represent a significant proportion of somatic loss of function mutations in bladder cancer.
机译:超过50%的膀胱移行细胞癌显示9q34跨TSC1基因座区域的杂合性丧失,并且在14.5%的肿瘤中发现了TSC1突变。这些包括无义突变,剪接突变,小缺失和错义突变。在TSC疾病的生殖系中很少发现错义突变。因此,我们检查了在膀胱癌中发现的六个体细胞错义突变,以确定它们是否导致功能丧失。我们通过不同的机制描述功能丧失。五个突变在mRNA和蛋白质水平上引起互斥的缺陷。在这些突变中,有两个突变导致了mRNA之前的剪接错误,预计将导致蛋白质过早截断,而三个导致外源TSC1蛋白的稳定性显着降低。 TSC1前mRNA剪接异常的原发性肿瘤通过免疫组织化学证实为TSC1表达阴性。在具有TSC1错义突变的肿瘤中表达也显着降低,导致蛋白质半衰期缩短。在肿瘤中鉴定出的单个TSC1错义突变具有保留在9号染色体上TSC1区的杂合性,这导致了突变蛋白的明显不依赖TSC2和mTOR的定位缺陷。我们得出的结论是,尽管TSC1错义突变在TSC病因中不发挥主要作用,但它们代表了膀胱癌中功能突变的体细胞丧失的重要部分。

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