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F5-Atlanta: A novel mutation in F5 associated with enhanced East Texas splicing and FV-short production.
Zimowski, Karen L; Petrillo, Teodolinda; Ho, Michelle D; Wechsler, Julie; Shields, Jordan E; Denning, Gabriela; Jhita, Navdeep; Rivera, Angel A; Escobar, Miguel A; Kempton, Christine L; Camire, Rodney M; Doering, Christopher B.
Afiliação
  • Zimowski KL; Aflac Cancer and Blood Disorders Center, Emory University/Children's Healthcare of Atlanta, Atlanta, Georgia, USA.
  • Petrillo T; The Children's Hospital of Philadelphia, The Raymond G. Perelman Center for Cellular and Molecular Therapeutics, Philadelphia, Pennsylvania, USA.
  • Ho MD; The Children's Hospital of Philadelphia, The Raymond G. Perelman Center for Cellular and Molecular Therapeutics, Philadelphia, Pennsylvania, USA.
  • Wechsler J; Aflac Cancer and Blood Disorders Center, Emory University/Children's Healthcare of Atlanta, Atlanta, Georgia, USA.
  • Shields JE; Aflac Cancer and Blood Disorders Center, Emory University/Children's Healthcare of Atlanta, Atlanta, Georgia, USA.
  • Denning G; Expression Therapeutics, Tucker, Georgia, USA.
  • Jhita N; Expression Therapeutics, Tucker, Georgia, USA.
  • Rivera AA; Expression Therapeutics, Tucker, Georgia, USA.
  • Escobar MA; University of Texas Houston Health Science Center, Houston, Texas, USA.
  • Kempton CL; Department of Hematology and Medical Oncology, Emory University School of Medicine, Atlanta, Georgia, USA.
  • Camire RM; The Children's Hospital of Philadelphia, The Raymond G. Perelman Center for Cellular and Molecular Therapeutics, Philadelphia, Pennsylvania, USA.
  • Doering CB; Division of Hematology, Department of Pediatrics, Perelman School of Medicine, The University of Pennsylvania, Philadelphia, Pennsylvania, USA.
J Thromb Haemost ; 19(7): 1653-1665, 2021 07.
Article em En | MEDLINE | ID: mdl-33773040
BACKGROUND: Elucidating the molecular pathogenesis underlying East Texas bleeding disorder (ET) led to the discovery of alternatively spliced F5 transcripts harboring large deletions within exon 13. These alternatively spliced transcripts produce a shortened form of coagulation factor V (FV) in which a large portion of its B-domain is deleted. These FV isoforms bind tissue factor pathway inhibitor alpha (TFPIα) with high affinity, prolonging its circulatory half-life and enhancing its anticoagulant effects. While two missense pathogenic variants highlighted this alternative splicing event, similar internally deleted FV proteins are found in healthy controls. OBJECTIVE: We identified a novel heterozygous 832 base pair deletion within F5 exon 13, termed F5-Atlanta (F5-ATL), in a patient with severe bleeding. Our objective is to investigate the effect of this deletion on F5 and FV expression. METHODS & RESULTS: Assessment of patient plasma revealed markedly elevated levels of total and free TFPI and a FV isoform similar in size to the FV-short described in ET. Sequencing analyses of cDNA revealed the presence of a transcript alternatively spliced using the ET splice sites, thereby removing the F5-ATL deletion. This alternative splicing pattern was recapitulated by heterologous expression in mammalian cells. CONCLUSIONS: These findings support a mechanistic model consisting of cis-acting regulatory sequences encoded within F5 exon 13 that control alternative splicing at the ET splice sites and thereby regulate circulating FV-short and TFPIα levels.
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Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transtornos da Coagulação Sanguínea / Fator V Idioma: En Ano de publicação: 2021 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Transtornos da Coagulação Sanguínea / Fator V Idioma: En Ano de publicação: 2021 Tipo de documento: Article