BACKGROUND AND OBJECTIVES: Afibrinogenemia and hypofibrinogenemia are rare inherited coagulation disorders characterized by hemorrhagic manifestations of variable entity and by plasma fibrinogen deficiency. So far, 57 mutations have been associated with these disorders, and 18 of these are missense mutations. The aim of this study was to characterize the molecular mechanism underlying severe hypofibrinogenemia in a proband from India. DESIGN AND METHODS: The mutational screening was accomplished by DNA sequencing of the three fibrinogen genes. The mutant protein was expressed in COS-1 cells, and intracellular and secreted mutant fibrinogen was analyzed by means of pulse-chase experiments. RESULTS: A novel homozygous G-->A transition in exon 8 (nucleotide position 8017) was found in the proband's fibrinogen Bbeta-chain gene. The resulting G434D missense mutation (fibrinogen Mumbai) involves a highly conserved amino acid residue, located in the C-terminal globular D domain. In vitro expression experiments demonstrated intracellular retention of the mutant fibrinogen and marked reduction of its secretion. INTERPRETATION AND CONCLUSIONS: The G434D substitution causes severe hypofibrinogenemia by impairing fibrinogen secretion. Expression data confirm the importance of Bbeta-chain D domain folding in the intracellular processing of fibrinogen.

The DNA-pooling technique allowed for the identification of three novel mutations responsible for afibrinogenemia / L. Monaldini, M.L. Tenchini, R. Asselta, M. Malcovati, S. Duga. - In: JOURNAL OF THROMBOSIS AND HAEMOSTASIS. - ISSN 1538-7933. - 3:11(2005 Nov), pp. 2591-2593.

The DNA-pooling technique allowed for the identification of three novel mutations responsible for afibrinogenemia

M.L. Tenchini
Secondo
;
R. Asselta;M. Malcovati
Penultimo
;
S. Duga
Ultimo
2005

Abstract

BACKGROUND AND OBJECTIVES: Afibrinogenemia and hypofibrinogenemia are rare inherited coagulation disorders characterized by hemorrhagic manifestations of variable entity and by plasma fibrinogen deficiency. So far, 57 mutations have been associated with these disorders, and 18 of these are missense mutations. The aim of this study was to characterize the molecular mechanism underlying severe hypofibrinogenemia in a proband from India. DESIGN AND METHODS: The mutational screening was accomplished by DNA sequencing of the three fibrinogen genes. The mutant protein was expressed in COS-1 cells, and intracellular and secreted mutant fibrinogen was analyzed by means of pulse-chase experiments. RESULTS: A novel homozygous G-->A transition in exon 8 (nucleotide position 8017) was found in the proband's fibrinogen Bbeta-chain gene. The resulting G434D missense mutation (fibrinogen Mumbai) involves a highly conserved amino acid residue, located in the C-terminal globular D domain. In vitro expression experiments demonstrated intracellular retention of the mutant fibrinogen and marked reduction of its secretion. INTERPRETATION AND CONCLUSIONS: The G434D substitution causes severe hypofibrinogenemia by impairing fibrinogen secretion. Expression data confirm the importance of Bbeta-chain D domain folding in the intracellular processing of fibrinogen.
DNA polymorphism ; afibrinogenemia ; allele ; congenital blood clotting disorder ; disease severity ; electrophoresis ; fibrinogen defect; gene cluster ; gene deletion ; gene identification ; gene mutation ; gene sequence; genetic disorder ; genetic heterogeneity ; genetic screening ; genetic variability ; genotype ; heterozygote ; human ; letter ; liver cell ; marker gene ; priority journal ; protein blood level ; reverse transcription polymerase chain reaction ; sensitivity analysis ; DNA ; fibrin monomer ; fibrinogen ; nucleotide ; plasma protein ; trinucleotide
Settore BIO/13 - Biologia Applicata
Settore BIO/11 - Biologia Molecolare
nov-2005
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2434/12349
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