Odom M W, Leone G, De Stefano V, Montiel M M, Boland E J, Anderson J, Jagadeeswaran P
Department of Cellular and Structural Biology, University of Texas Health Science Center at San Antonio 78284.
Mol Cell Probes. 1994 Feb;8(1):63-5. doi: 10.1006/mcpr.1994.1009.
Factors IX and X are plasma glycoproteins important in the middle phase of the coagulation cascade, and a bleeding disorder of variable severity results from abnormalities in the expression of either gene encoding these proteins. Nearly 380 unique molecular mechanisms cause factor IX deficiency, or haemophilia B, but only a limited number of mutations causing congenital factor X deficiency have been characterized to date. In this study enzymatic amplification has been used to examine the molecular basis for factor IX deficiency in two patients and factor X deficiency in two patients. Genomic DNA was isolated from each patient and synthetic oligonucleotide primers were used in the polymerase chain reaction to amplify each exon, splice junction and polyadenylation site. Amplified DNA was then cloned into pUC18 and sequenced. Five novel point mutations were identified, two occurring in the eighth exon of the factor IX gene and three in the eighth exon of the factor X gene. One of the haemophilia B mutations and one of the factor X mutations altered homologous histidine residues near the serine of the catalytic triad.
凝血因子IX和X是血浆糖蛋白,在凝血级联反应的中间阶段起重要作用,编码这些蛋白的任一基因表达异常都会导致严重程度不一的出血性疾病。近380种独特的分子机制可导致凝血因子IX缺乏症,即B型血友病,但迄今为止,仅有少数导致先天性凝血因子X缺乏症的突变得到了鉴定。在本研究中,酶促扩增技术被用于检测两名凝血因子IX缺乏症患者和两名凝血因子X缺乏症患者的分子基础。从每位患者身上分离出基因组DNA,并使用合成寡核苷酸引物通过聚合酶链反应扩增每个外显子、剪接位点和聚腺苷酸化位点。然后将扩增后的DNA克隆到pUC18中并进行测序。共鉴定出五个新的点突变,其中两个发生在凝血因子IX基因的第八外显子,三个发生在凝血因子X基因的第八外显子。其中一个B型血友病突变和一个凝血因子X突变改变了催化三联体丝氨酸附近的同源组氨酸残基。