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两个斯洛伐克家系纤维蛋白原 Bβ 链两种新型突变导致纤维蛋白原定量异常

Identification of Two Novel Fibrinogen Bβ Chain Mutations in Two Slovak Families with Quantitative Fibrinogen Disorders.

机构信息

National Centre of Haemostasis and Thrombosis, Department of Haematology and Transfusiology, Comenius University in Bratislava, Jessenius Faculty of Medicine and University Hospital in Martin, Kollarova Str. N. 2, Martin 036 59, Slovakia.

Department of Molecular Biology, Comenius University in Bratislava, Jessenius Faculty of Medicine in Martin, BioMed Martin Mala Hora 4, Martin 036 01, Slovakia.

出版信息

Int J Mol Sci. 2017 Dec 29;19(1):100. doi: 10.3390/ijms19010100.

Abstract

Congenital fibrinogen disorders are caused by mutations in one of the three fibrinogen genes that affect the synthesis, assembly, intracellular processing, stability or secretion of fibrinogen. Functional studies of mutant Bβ-chains revealed the importance of individual residues as well as three-dimensional structures for fibrinogen assembly and secretion. This study describes two novel homozygous fibrinogen Bβ chain mutations in two Slovak families with afibrinogenemia and hypofibrinogenemia. Peripheral blood samples were collected from all subjects with the aim of identifying the causative mutation. Coagulation-related tests and rotational thromboelastometry were performed. All exons and exon-intron boundaries of the fibrinogen genes (, and ) were amplified by PCR followed by direct sequencing. Sequence analysis of the three fibrinogen genes allowed us to identify two novel homozygous mutations in the gene. A novel Bβ chain truncation (BβGln180Stop) was detected in a 28-year-old afibrinogenemic man with bleeding episodes including repeated haemorrhaging into muscles, joints, and soft tissues, and mucocutaneous bleeding and a novel Bβ missense mutation (BβTyr368His) was found in a 62-year-old hypofibrinogenemic man with recurrent deep and superficial venous thromboses of the lower extremities. The novel missense mutation was confirmed by molecular modelling. Both studying the molecular anomalies and the modelling of fibrinogenic mutants help us to understand the extremely complex machinery of fibrinogen biosynthesis and finally better assess its correlation with the patient's clinical course.

摘要

先天性纤维蛋白原异常是由影响纤维蛋白原合成、组装、细胞内加工、稳定性或分泌的三个纤维蛋白原基因中的一个突变引起的。对突变 Bβ 链的功能研究揭示了单个残基以及三维结构对于纤维蛋白原组装和分泌的重要性。本研究描述了两个斯洛伐克纤维蛋白原缺乏症和低纤维蛋白原血症家系中纤维蛋白原 Bβ 链的两个新的纯合突变。收集了所有受试者的外周血样本,目的是确定致病突变。进行了凝血相关测试和旋转血栓弹性测定。通过 PCR 扩增所有纤维蛋白基因(、和)的外显子及其内含子边界,然后直接测序。对三个纤维蛋白基因的序列分析使我们能够鉴定出基因中的两个新的纯合突变。在一名 28 岁的无纤维蛋白原血症男性中发现了一种新的 Bβ 链截断(BβGln180Stop),该男性有出血发作史,包括肌肉、关节和软组织的反复出血以及黏膜皮肤出血,在一名 62 岁的低纤维蛋白原血症男性中发现了一种新的 Bβ 错义突变(BβTyr368His),该男性有下肢深部和浅部静脉反复血栓形成。通过分子建模证实了新的错义突变。对纤维蛋白原突变体的分子异常和建模研究有助于我们理解纤维蛋白原生物合成极其复杂的机制,并最终更好地评估其与患者临床病程的相关性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2cd8/5796050/acac3c7a5b6e/ijms-19-00100-g001.jpg

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