四种新型因子VIII基因突变的鉴定及分子动力学模拟的蛋白结构分析

F. Al-Allaf, T. Owaidah, Z. Abduljaleel, M. Taher, M. Athar, H. Abalkhail, W. Khan, A. Bouazzaoui
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引用次数: 3

摘要

血友病A是一种由因子VIII基因突变引起的x连锁隐性出血性疾病。为了找出已知的和新的血友病A致病突变,我们对沙特患者进行了遗传分析。选择26例inv-1/inv-22阴性的患者进行多重连接依赖探针扩增(MLPA)和Sanger测序分析。此外,利用分子动力学模拟预测了新突变的功能和结构效应。结果显示,6个样本中存在3个已知的大缺失(delE8、9、10、11、12、13、14;delE7 8 9 10;和delE4), 18个样本中有12个突变;其中四本是小说。新发现的突变为外显子8 C . 1021g >C, p.(Ala341Pro)和C . 1183a >C, p.(Lys395Gln)两个突变,外显子13 C . 1930t >A, p.(Leu644Met)一个突变,外显子22 C . 6322g >C, p.(Ala2108Pro)一个突变。新突变患者的临床资料显示因子VIII水平<1%(严重血友病),伴有偶发性出血,常规治疗血浆源性凝血因子浓缩物。这一数据与MD模拟结果一致,表明不同突变的蛋白结构与天然蛋白相比发生了显著变化。这些结果应该丰富突变谱,扩大因子VIII蛋白在沙特阿拉伯人群中的数据库;进一步表明,在功能和结构研究方面的硅MD模拟是研究基因型-表型高级相关性的合理方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Identification of Four Novel Factor VIII Gene Mutations and Protein Structure Analysis using Molecular Dynamic Simulation
Hemophilia A is an X-linked recessive hemorrhagic disorder caused by mutations in the factor VIII gene. To find out known and novel causative mutations in Hemophilia A, we carried out genetic analysis among Saudi patients. Twenty six Patients who were negative for inv-1/inv-22 were selected for analysis with Multiplex Ligation-dependent Probe Amplification (MLPA) and Sanger sequencing. Furthermore the functional and structural effects of the novel mutations were predicted using Molecular dynamic simulation. The results showed three known large deletions in 6 samples (delE8,9,10,11,12,13,14; delE7,8,9,10; and delE4) and twelve mutations in 18 samples; four of them were novel. The novel mutations detected were two substitutions in exon 8 at position c.1021G>C, p.(Ala341Pro) and position c.1183A>C, p.(Lys395Gln), one substitution in exon13 at position c.1930T>A, p.(Leu644Met), and one substitution in exon22 at position c.6322G>C, p.(Ala2108Pro). Clinical data of Patients with novel mutations showed <1% Factor VIII levels (severe hemophilia) with episodic bleeding and were on a routine treatment of plasma derived clotting factor concentrate. This data is in line with MD simulation showed significant changes of the different mutations on the protein structure compared to native protein. These results should enrich the spectrum of mutations and enlarge the factor VIII protein’s database in Saudi Arabian population; furthermore it showed that the in silico MD simulation for functional and structural studies could be a reasonable approach for investigating the advance genotype-phenotype correlation.
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