Asselta Rosanna, Duga Stefano, Spena Silvia, Peyvandi Flora, Castaman Giancarlo, Malcovati Massimo, Mannucci Pier Mannuccio, Tenchini Maria Luisa
Department of Biology and Genetics for Medical Sciences, University of Milan, Milan, Italy.
Blood. 2004 Apr 15;103(8):3051-4. doi: 10.1182/blood-2003-10-3725. Epub 2003 Dec 24.
The genetic basis of severe hypofibrinogenemia was analyzed in a 57-year-old Italian woman. She turned out to be a compound heterozygote for a novel putative missense mutation (Leu172Gln) and a previously described nonsense mutation (Arg17Stop) in the fibrinogen Bbeta-chain gene. The pathogenetic role of Leu172Gln was analyzed by in vitro expression of the mutant recombinant protein in COS-1 cells. These experiments demonstrated that mutant Bbeta-Leu172Gln fibrinogen was normally assembled and secreted. Inspection of the nucleotide sequence surrounding the mutation suggested a possible role on pre-messenger RNA (mRNA) splicing. Production of the mutant transcript in HeLa cells confirmed that the mutation activates a cryptic acceptor splice site in exon 4, resulting in a truncated Bbeta chain, lacking approximately 70% of the C-terminal region. This represents the first exonic splicing mutation identified in the fibrinogen genes. These findings strengthen the importance to analyze potentially pathogenetic nucleotide variations at both the protein and the mRNA level.
对一名57岁意大利女性的严重低纤维蛋白原血症的遗传基础进行了分析。结果发现,她是纤维蛋白原Bβ链基因中一个新的推定错义突变(Leu172Gln)和一个先前描述的无义突变(Arg17Stop)的复合杂合子。通过在COS-1细胞中体外表达突变重组蛋白,分析了Leu172Gln的致病作用。这些实验表明,突变型Bβ-Leu172Gln纤维蛋白原能够正常组装和分泌。对突变周围核苷酸序列的检查提示其对信使前体RNA(mRNA)剪接可能有作用。在HeLa细胞中产生突变转录本证实,该突变激活了外显子4中的一个隐蔽剪接受体位点,导致Bβ链截短,缺少约70%的C末端区域。这是在纤维蛋白原基因中鉴定出的首个外显子剪接突变。这些发现强化了在蛋白质和mRNA水平分析潜在致病核苷酸变异的重要性。