Literature DB >> 8639838

A gamma Gly-268 to Glu substitution is responsible for impaired fibrin assembly in a homozygous dysfibrinogen Kurashiki I.

K Niwa1, M Takebe, T Sugo, Y Kawata, J Mimuro, S Asakura, Y Sakata, J Mizushima, A Maeda, H Endo, M Matsuda.   

Abstract

A new type of gamma Gly-268 (GGA) to Glu (GAA) substitution has been identified in a homozygous dysfibrinogen by analyses of the affected polypeptide and its encoding gene derived from a 58 year-old man manifesting no major bleeding or thrombosis. The functional abnormality was characterized by impaired fibrin assembly most likely due to failure to construct properly aligned double-stranded fibrin protofibrils. This presumption was deduced from the following findings: (1) Factor XIIIa-catalyzed cross-linking of the fibrin gamma-chains progressed in a normal fashion, indicating that the contact between the central E domain of one fibrin monomer and the D domain of another took place normally; (2) Nevertheless, factor XIIIa-catalyzed cross-linking of the fibrinogen gamma-chains was obviously delayed, suggesting that longitudinal association of D domains of different fibrin monomers, ie, D:D association was perturbed; (3) Plasminogen activation catalyzed by tissue-type plasminogen activator was not as efficiently facilitated by polymerizing fibrin monomer derived from the patient as by the normal counterpart. Therefore, gamma Gly-268 would not be involved in the 'a' site residing in the D domain, which functions as a complementary binding site with the thrombin-activated 'A' site in the central E domain, but would be rather involved in the D:D self association sites recently proposed for human fibrinogen. Thus, the gamma Glu-268 substitution newly identified in this homozygous dysfibrinogen seems to impair proper alignment of adjacent D domains of neighboring fibrin molecules in the double-stranded fibrin protofibril, resulting in delayed fibrin gel formation.

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Year:  1996        PMID: 8639838

Source DB:  PubMed          Journal:  Blood        ISSN: 0006-4971            Impact factor:   22.113


  4 in total

Review 1.  Structure and function of human fibrinogen inferred from dysfibrinogens.

Authors:  Michio Matsuda; Teruko Sugo
Journal:  Int J Hematol       Date:  2002-08       Impact factor: 2.490

2.  The natural occurrence of human fibrinogen variants disrupting inter-chain disulfide bonds (A{alpha}Cys36Gly, A{alpha}Cys36Arg and A{alpha}Cys45Tyr) confirms the role of N-terminal A{alpha} disulfide bonds in protein assembly and secretion.

Authors:  Michel Hanss; Catherine Pouymayou; Marie-Thérèse Blouch; Franck Lellouche; Patrick Ffrench; Robert Rousson; Jean-François Abgrall; Pierre-Emmanuel Morange; Florence Quélin; Philippe de Mazancourt
Journal:  Haematologica       Date:  2011-04-01       Impact factor: 9.941

3.  A total fibrinogen deficiency is compatible with the development of pulmonary fibrosis in mice.

Authors:  V A Ploplis; J Wilberding; L McLennan; Z Liang; I Cornelissen; M E DeFord; E D Rosen; F J Castellino
Journal:  Am J Pathol       Date:  2000-09       Impact factor: 4.307

4.  A novel fibrinogen mutation: FGA g. 3057 C > T (p. Arg104 > Cys) impairs fibrinogen secretion.

Authors:  R Marchi; M Linares; H Rojas; A Ruiz-Sáez; M Meyer; A Casini; S O Brennan
Journal:  BMC Hematol       Date:  2017-12-22
  4 in total

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