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苏姆佩克 II 型纤维蛋白原:一个个体中存在两个编码突变的异常纤维蛋白原血症。

Fibrinogen Šumperk II: dysfibrinogenemia in an individual with two coding mutations.

机构信息

Institute of Hematology and Blood Transfusion, Prague, Czech Republic.

出版信息

Am J Hematol. 2012 May;87(5):555-7. doi: 10.1002/ajh.23162. Epub 2012 Mar 9.

Abstract

Fibrinogen—a 340-kDa glycoprotein—plays a crucial role in blood coagulation, platelet aggregation, wound healing, and other physiological processes. A mutation in fibrinogen may lead to congenital dysfibrinogenemia,a rare disease characterized by the functional deficiency of fibrinogen. About 580 cases of abnormal fibrinogens have been reported worldwide; thereof 335 cases in the fibrinogen Aa chain[1]. To our knowledge, only five cases of abnormal fibrinogens with two mutations [2–6] and one case of two different mutations in the same family [7] have been described earlier. A 52-year-old female was examined for bleeding. Routine hemostasis screening resulted in a diagnosis of dysfibrinogenemia. Functional testing revealed prolonged fibrin polymerization, prolonged lysis of the clot, abnormal fibrin morphology,and fibrinopeptides release. Genetic analysis showed two heterozygous nonsense mutations—previously described mutation AaGly13Glu and a novel mutation Aa Ser314Cys. The mutation Aa Gly13-Glu was found in her brother and niece, but there was no evidence in either of the mutation Aa Ser314Cys. While mutation Aa Gly13Glu is responsible for abnormal fibrinopeptide release and prolonged thrombin time, the novel mutation Aa Ser314Cys seems to affect fibrin morphology and fibrinolysis.

摘要

纤维蛋白原——一种 340kDa 的糖蛋白——在血液凝固、血小板聚集、伤口愈合和其他生理过程中起着至关重要的作用。纤维蛋白原的突变可能导致先天性纤维蛋白原血症,这是一种罕见的疾病,其特征是纤维蛋白原的功能缺陷。全世界已经报告了约 580 例异常纤维蛋白原病例;其中纤维蛋白原 Aa 链有 335 例[1]。据我们所知,之前已经描述了五例具有两种突变的异常纤维蛋白原病例[2-6]和一例同一家庭中两种不同突变的病例[7]。一名 52 岁女性因出血接受检查。常规止血筛选导致纤维蛋白原血症的诊断。功能测试显示纤维蛋白聚合延长、血块溶解延长、纤维蛋白形态异常和纤维蛋白肽释放。基因分析显示存在两种杂合无义突变——先前描述的突变 AaGly13Glu 和一种新的突变 Aa Ser314Cys。突变 Aa Gly13-Glu 在她的哥哥和侄女中发现,但在突变 Aa Ser314Cys 中均未发现。虽然突变 Aa Gly13Glu 负责异常纤维蛋白肽释放和延长凝血酶时间,但新的突变 Aa Ser314Cys 似乎影响纤维蛋白形态和纤维蛋白溶解。

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