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首页> 外文期刊>European Journal of Haematology >Child‐onset thrombotic thrombocytopenic purpura caused by p.R498C and p.G259PfsX133 mutations in ADAMTS13
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Child‐onset thrombotic thrombocytopenic purpura caused by p.R498C and p.G259PfsX133 mutations in ADAMTS13

机译:儿童发作血栓形成血小板细胞催化剂P.R498C和P.G259PFSX133在Adamts13中突变引起的

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摘要

Abstract Introduction Patients suffering from congenital thrombotic thrombocytopenic purpura (cTTP) have a deficiency in ADAMTS13 due to mutations in their ADAMTS13 gene. Objective The aim of this study was to determine ADAMTS13 parameters (activity, antigen, and mutations), to investigate if the propositus suffered from child‐onset cTTP, and to study the in vitro effect of the ADAMTS13 mutations. Methods ADAMTS13 activity and antigen were determined using the FRETS VWF73 assay and ELISA and ADAMTS13 mutations via sequencing of the exons. Mutant proteins were expressed in Chinese hamster ovary cells, and their expression was studied using fluorescence microscopy and ELISA. Molecular modeling was used to evaluate the effect of the mutations on ADAMTS13 structure and stability. Results The propositus was diagnosed with cTTP at the age of 20. ADAMTS13 activity was below 10%, and 2 compound heterozygous mutations, the p.R498C point and the p.G259PfsX133 frameshift mutation, were identified. Expression of ADAMTS13 mutants revealed that the p.R498C and the p.G259PfsX133 mutation cause secretion and translation defects in vitro, respectively. Molecular modeling showed that the R498 intra‐domain interactions are lacking in the p.R498C mutant, resulting in protein instability. Conclusion The ADAMTS13 mutations result in a severe ADAMTS13 deficiency explaining the patient’s phenotype.
机译:摘要引言患有先天性血栓形成血小板减少紫癜(CTTP)的患者由于其ADAMTS13基因中的突变而具有缺陷Adamts13。目的本研究的目的是确定Adamts13参数(活性,抗原和突变),以研究丙泡体是否患有儿童发作CTTP,并研究ADAMTS13突变的体外效果。方法使用FRET VWF73测定和ELISA和AdamTS13突变通过测序测定AdamTS13活性和抗原。突变蛋白在中国仓鼠卵巢细胞中表达,使用荧光显微镜和ELISA研究其表达。分子建模用于评估突变对AdamTs13结构和稳定性的影响。结果丙positus在20岁时被诊断为CTTP。鉴定了AdamTs13活性低于10%的10%,2种化合物杂合突变,P.R498C点和P.G259PFSX133帧突变突变。 Adamts13突变体的表达显示,P.R498C和P.G259PFSX133突变分别引起体外分泌和翻译缺陷。分子建模显示,P.R498C突变体缺乏域内域内的域内相互作用,导致蛋白质不稳定性。结论Adamts13突变导致严重的AdamTs13缺乏,解释患者的表型。

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