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纤维蛋白原新潟型伴纤维蛋白组装受损:一种遗传性异常纤维蛋白原,其Bβ链第160位天冬酰胺被丝氨酸取代,并伴有Bβ链第158位天冬酰胺额外糖基化。

Fibrinogen Niigata with impaired fibrin assembly: an inherited dysfibrinogen with a Bbeta Asn-160 to Ser substitution associated with extra glycosylation at Bbeta Asn-158.

作者信息

Sugo T, Nakamikawa C, Takano H, Mimuro J, Yamaguchi S, Mosesson M W, Meh D A, DiOrio J P, Takahashi N, Takahashi H, Nagai K, Matsuda M

机构信息

Institute of Hematology, Jichi Medical School, Tochigi, Japan.

出版信息

Blood. 1999 Dec 1;94(11):3806-13.

Abstract

A novel BbetaAsn-160 (TAA) to Ser (TGA) substitution has been identified in fibrinogen Niigata derived from a 64-year-old asymptomatic woman, who is heterozygotic for this abnormality. The mutation creates an Asn-X-Ser-type glycosylation sequence, and a partially sialylated biantennary oligosaccharide was linked to the BbetaAsn-158 residue. The functional abnormality was attributed to delayed lateral association of normally formed double-stranded protofibrils based on normal cross-linking of fibrin gamma-chains and tissue-type plasminogen activator-catalyzed plasmin generation by polymerizing fibrin monomers. Enzymatic removal of all the N-linked oligosaccharides from fibrinogen Niigata accelerated fibrin monomer polymerization that reached the level of untreated normal fibrin monomers, but the thrombin time was prolonged from 18.2 seconds to 113 seconds (normal: 11.2 seconds to 8.9 seconds). By scanning electron micrographic analysis, Niigata fibrin fibers were found to be more curvilinear than normal fibrin fibers. After deglycosylation, Niigata fibers became straight being similar to untreated normal fibrin fibers, whereas normal deglycosylated fibrin appeared to be less-branched than untreated normal or deglycosylated Niigata fibrin. Although normal and Niigata fibrins were similar to each other in permeation and compaction studies, deglycosylated normal and Niigata fibrins had much higher permeability and compaction values, indicating that deglycosylation had brought about the formation of more porous networks. The enzymatic deglycosylation necessitates an Asn to Asp change at position Bbeta-158 that is responsible for reducing the fiber thickness because of either local repulsive forces or steric hindrance in the coiled-coil region.

摘要

在一名64岁无症状女性的纤维蛋白原新潟中,发现了一种新型的Bβ亚基第160位氨基酸由天冬酰胺(TAA)替换为丝氨酸(TGA)的情况,该女性为这种异常的杂合子。该突变产生了一个天冬酰胺- X -丝氨酸型糖基化序列,并且一个部分唾液酸化的双天线寡糖与Bβ亚基第158位残基相连。功能异常归因于正常形成的双链原纤维的横向缔合延迟,这是基于纤维蛋白γ链的正常交联以及组织型纤溶酶原激活剂催化的纤维蛋白单体聚合产生纤溶酶。从纤维蛋白原新潟中酶促去除所有N -连接寡糖可加速纤维蛋白单体聚合,使其达到未处理的正常纤维蛋白单体水平,但凝血酶时间从18.2秒延长至113秒(正常为11.2秒至8.9秒)。通过扫描电子显微镜分析发现,新潟纤维蛋白纤维比正常纤维蛋白纤维更弯曲。去糖基化后,新潟纤维变得笔直,与未处理的正常纤维蛋白纤维相似,而正常去糖基化的纤维蛋白似乎比未处理的正常或去糖基化的新潟纤维蛋白分支更少。尽管在渗透和压实研究中正常纤维蛋白和新潟纤维蛋白彼此相似,但去糖基化的正常纤维蛋白和新潟纤维蛋白具有更高的渗透率和压实值,表明去糖基化导致形成了更多孔的网络。酶促去糖基化需要Bβ - 158位的天冬酰胺变为天冬氨酸,这是由于卷曲螺旋区域中的局部排斥力或空间位阻导致纤维厚度减小。

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