Tu Chuan-qing, Deng Chun-yan, Wu Jian-zeng, Pan Chun-yan, Xie Chun-ying
Department of Heamatology, Bao'an People's Hospital, Shenzhen 518101, China.
Zhonghua Yi Xue Za Zhi. 2006 Jan 10;86(2):124-7.
To identify the genetic defect of coagulation factor VII in a Chinese family with hereditary FVII deficiency.
Peripheral blood samples were collected from the proband of hereditary FVII deficiency, female, aged 15, 4 members of her family, and 100 healthy persons. Genomic DNA was isolated. All the exons and exon-intron boundaries of FVII gene were amplified by PCR, then the PCR products were sequenced by direct sequencing. Restrictive endonuclease analysis was performed in all of the family members and the 100 healthy donors to exclude gene polymorphism. Biostructural analysis of the mutated FVII was completed by molecular modeling.
Double heterozygous mutations in the proband were identified: A-->G mutation at position 10833 and C-->A mutation at position 9643, resulting in Met306Val and Thr181Asn substitution respectively. Heterozygosity for Met306Val was confirmed in the proband's mother and her elder sister; heterozygosity for Thr181Asn was confirmed in the proband's father. It was found by computer simulated molecular model that the Met306Val replacement, which was located on the surface of the FVII molecule, might cause steric hindrance and change the configuration and function of FVII protein.
Double heterozygous mutations for Met306Val and Thr181Asn in FVII gene have been found in a proband with hereditary FVII deficiency. The Met306Val substitution in FVII gene is a novel mutation in hereditary FVII deficiency. The heterozygous mutation of FVII gene may change the configuration of FVII protein and result in FVII dysfunction.
鉴定一个遗传性FVII缺乏症中国家系中凝血因子VII的基因缺陷。
采集一名15岁遗传性FVII缺乏症先证者、其家族4名成员及100名健康人的外周血样本。提取基因组DNA。通过聚合酶链反应(PCR)扩增FVII基因的所有外显子及外显子-内含子边界,然后对PCR产物进行直接测序。对所有家族成员和100名健康供者进行限制性内切酶分析以排除基因多态性。通过分子建模完成对突变型FVII的生物结构分析。
在先证者中鉴定出双杂合突变:第10833位A→G突变和第9643位C→A突变,分别导致Met306Val和Thr181Asn替换。先证者的母亲和其姐姐被证实为Met306Val杂合子;先证者的父亲被证实为Thr181Asn杂合子。通过计算机模拟分子模型发现,位于FVII分子表面的Met306Val替换可能会造成空间位阻并改变FVII蛋白的构型和功能。
在一名遗传性FVII缺乏症先证者中发现了FVII基因Met306Val和Thr181Asn的双杂合突变。FVII基因中的Met306Val替换是遗传性FVII缺乏症中的一种新突变。FVII基因的杂合突变可能会改变FVII蛋白的构型并导致FVII功能障碍。