Ishii Keiko, Oguchi Shuji, Moriki Takanori, Yatabe Yoko, Takeshita Eiko, Murata Mitsuru, Ikeda Yasuo, Watanabe Kiyoaki
Department of Laboratory Medicine, Division of Hematology, School of Medicine, Keio University, Tokyo, Japan.
Blood Coagul Fibrinolysis. 2004 Jul;15(5):367-73. doi: 10.1097/01.mbc.0000114447.59147.d1.
We analyzed the factor XII (FXII) gene of a patient with congenital FXII deficiency and identified a novel amino acid substitution (W486C) in the catalytic domain. The proband was an asymptomatic 49-year-old Japanese female with abnormal coagulation test, discovered by chance. The FXII activity and antigen level were both under 10%, suggesting a cross-reacting material-negative FXII deficiency. Sequence analysis of the proband's FXII gene revealed a homozygous nucleotide substitution G --> C in exon 12, resulting in the amino acid substitution W486C in the catalytic domain. We constructed the mutant FXII cDNA in an expression plasmid vector and transfected it into Chinese hamster ovary cells. The recombinant wild-type FXII antigen was detected in the culture medium by immunoprecipitation assay, but the mutant FXII (W486C) was not observed. On the other hand, both the wild-type FXII and W486C cell lysates contained FXII antigen and FXII mRNA, as estimated by western blotting and quantitative reverse transcriptase-polymerase chain reaction. These findings suggest that the W486C substitution of FXII impairs intracellular processing of the protein and/or transport system.
我们分析了一名先天性因子 XII(FXII)缺乏症患者的 FXII 基因,并在催化结构域中鉴定出一种新的氨基酸替代(W486C)。先证者是一名 49 岁无症状的日本女性,凝血试验异常,系偶然发现。FXII 活性和抗原水平均低于 10%,提示交叉反应物质阴性的 FXII 缺乏症。对先证者 FXII 基因的序列分析显示,第 12 外显子存在纯合核苷酸替代 G→C,导致催化结构域中的氨基酸替代 W486C。我们在表达质粒载体中构建了突变型 FXII cDNA,并将其转染到中国仓鼠卵巢细胞中。通过免疫沉淀试验在培养基中检测到重组野生型 FXII 抗原,但未观察到突变型 FXII(W486C)。另一方面,通过蛋白质印迹法和定量逆转录 - 聚合酶链反应估计,野生型 FXII 和 W486C 细胞裂解物中均含有 FXII 抗原和 FXII mRNA。这些发现表明,FXII 的 W486C 替代损害了该蛋白的细胞内加工和/或转运系统。