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Syntaxin 5 determines Weibel-Palade body size and von Willebrand factor secretion by controlling Golgi architecture.
Kat, Marije; Karampini, Ellie; Hoogendijk, Arie J; Bürgisser, Petra E; Mulder, Aat A; Van Alphen, Floris P J; Olins, Jenny; Geerts, Dirk; Van den Biggelaar, Maartje; Margadant, Coert; Voorberg, Jan; Bierings, Ruben.
Afiliação
  • Kat M; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam.
  • Karampini E; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam, The Netherlands; Vascular Biology, Royal College of Surgeons, Dublin.
  • Hoogendijk AJ; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam.
  • Bürgisser PE; Hematology, Erasmus University Medical Center, Rotterdam.
  • Mulder AA; Molecular Cell Biology, Leiden University Medical Center, Leiden.
  • Van Alphen FPJ; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam.
  • Olins J; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam.
  • Geerts D; Medical Biology, Amsterdam University Medical Center, location AMC, University of Amsterdam.
  • Van den Biggelaar M; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam.
  • Margadant C; Angiogenesis Laboratory, Cancer Center Amsterdam, Amsterdam University Medical Center, location VUmc.
  • Voorberg J; Molecular Hematology, Sanquin Research and Landsteiner Laboratory, Amsterdam University Medical Center, University of Amsterdam, The Netherlands; Experimental Vascular Medicine, Amsterdam University Medical Center, University of Amsterdam.
  • Bierings R; Hematology, Erasmus University Medical Center, Rotterdam. r.bierings@erasmusmc.nl.
Haematologica ; 107(8): 1827-1839, 2022 08 01.
Article em En | MEDLINE | ID: mdl-35081689
ABSTRACT
Von Willebrand factor (VWF) is a multimeric hemostatic protein primarily synthesized in endothelial cells. VWF is stored in endothelial storage organelles, the Weibel-Palade bodies (WPB), whose biogenesis strongly depends on VWF anterograde trafficking and Golgi architecture. Elongated WPB morphology is correlated to longer VWF strings with better adhesive properties. We previously identified the SNARE SEC22B, which is involved in anterograde endoplasmic reticulum-to-Golgi transport, as a novel regulator of WPB elongation. To elucidate novel determinants of WPB morphology we explored endothelial SEC22B interaction partners in a mass spectrometry-based approach, identifying the Golgi SNARE Syntaxin 5 (STX5). We established STX5 knockdown in endothelial cells using shRNA-dependent silencing and analyzed WPB and Golgi morphology, using confocal and electron microscopy. STX5-depleted endothelial cells exhibited extensive Golgi fragmentation and decreased WPB length, which was associated with reduced intracellular VWF levels, and impaired stimulated VWF secretion. However, the secretion-incompetent organelles in shSTX5 cells maintained WPB markers such as Angiopoietin 2, P-selectin, Rab27A, and CD63. In brief, we identified SNARE protein STX5 as a novel regulator of WPB biogenesis.
Assuntos

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fator de von Willebrand / Corpos de Weibel-Palade Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article

Texto completo: 1 Base de dados: MEDLINE Assunto principal: Fator de von Willebrand / Corpos de Weibel-Palade Tipo de estudo: Prognostic_studies Limite: Humans Idioma: En Ano de publicação: 2022 Tipo de documento: Article