Department of Biochemistry, Zhongshan School of medicine, Sun Yat-sen University, 74 Zhongshan Road II, Guangzhou 510080, China.
Thromb Haemost. 2010 Sep;104(3):536-43. doi: 10.1160/TH09-10-0735. Epub 2010 Jul 20.
Our previous study reported a missense mutation (Tyr530Ser) and a splicing site mutation (IVS16-1G>T) in blood coagulation factor V (FV) gene in a two-year-old Chinese boy. However, the linkage between the mutations and severe FV deficiency and the underlying mechanism has not been elucidated. The present study was designed to investigate the effect of the two mutations and the possible pathogenetic mechanism. FV procoagulant activity showed tremendous decrease in the patient with two mutations. The bioinformatics analyses predicted that IVS16-1G>T mutation may cause the entire exon 17 of FV to be skipped in transcription and thereby result in a deletion mutant. To confirm the predicted results, the fragment of exon 16 to exon 18 containing IVS16-1G>T mutation was obtained by PCR and site-directed mutagenesis. IVS16-1G>T mutant and wild-type constructs were transfected into COS-7 cells. Sequence analysis showed that mutant transcript lacked the entire 180-bp length of exon 17. Moreover, compared to wild-type, the expression of the two mutant proteins was decreased and the procoagulant activity was also reduced when the deletion mutant cDNA and Tyr530Ser site mutant cDNA were transfected into COS-7 cells, respectively. Our results indicate that Tyr530Ser and IVS16-1G>T could be separately responsible for severe FV deficiency, while the phenotype in the proband could be caused by the combination effect of the two defects.
我们之前的研究报告了一个凝血因子 V (FV) 基因中的错义突变 (Tyr530Ser) 和剪接位点突变 (IVS16-1G>T) 在一个两岁的中国男孩身上。然而,突变与严重 FV 缺乏症之间的联系及其潜在机制尚未阐明。本研究旨在探讨这两种突变的影响及可能的发病机制。该患者携带两种突变,FV 促凝活性显著降低。生物信息学分析预测,IVS16-1G>T 突变可能导致 FV 整个外显子 17 在转录时被跳过,从而导致缺失突变体。为了验证预测结果,我们通过 PCR 和定点诱变获得了包含 IVS16-1G>T 突变的外显子 16 到外显子 18 片段。将 IVS16-1G>T 突变和野生型构建体转染到 COS-7 细胞中。序列分析表明,突变转录本缺失了整个 17 外显子 180bp 的长度。此外,与野生型相比,当转染缺失突变 cDNA 和 Tyr530Ser 点突变 cDNA 时,两种突变蛋白的表达水平降低,促凝活性也降低。我们的结果表明,Tyr530Ser 和 IVS16-1G>T 可能分别导致严重的 FV 缺乏症,而先证者的表型可能是由两种缺陷的组合效应引起的。