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Assembly of Weibel-Palade body-like tubules from N-terminal domains of von Willebrand factor.


ABSTRACT: Endothelial cells assemble von Willebrand factor (VWF) multimers into ordered tubules within storage organelles called Weibel-Palade bodies, and tubular packing is necessary for the secretion of VWF filaments that can bind connective tissue and recruit platelets to sites of vascular injury. We now have recreated VWF tubule assembly in vitro, starting with only pure VWF propeptide (domains D1D2) and disulfide-linked dimers of adjacent N-terminal D'D3 domains. Assembly requires low pH and calcium ions and is reversed at neutral pH. Quick-freeze deep-etch electron microscopy and three-dimensional reconstruction of negatively stained images show that tubules contain a repeating unit of one D'D3 dimer and two propeptides arranged in a right-handed helix with 4.2 units per turn. The symmetry and location of interdomain contacts suggest that decreasing pH along the secretory pathway coordinates the disulfide-linked assembly of VWF multimers with their tubular packaging.

SUBMITTER: Huang RH 

PROVIDER: S-EPMC2206562 | biostudies-literature | 2008 Jan

REPOSITORIES: biostudies-literature

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Assembly of Weibel-Palade body-like tubules from N-terminal domains of von Willebrand factor.

Huang Ren-Huai RH   Wang Ying Y   Roth Robyn R   Yu Xiong X   Purvis Angie R AR   Heuser John E JE   Egelman Edward H EH   Sadler J Evan JE  

Proceedings of the National Academy of Sciences of the United States of America 20080108 2


Endothelial cells assemble von Willebrand factor (VWF) multimers into ordered tubules within storage organelles called Weibel-Palade bodies, and tubular packing is necessary for the secretion of VWF filaments that can bind connective tissue and recruit platelets to sites of vascular injury. We now have recreated VWF tubule assembly in vitro, starting with only pure VWF propeptide (domains D1D2) and disulfide-linked dimers of adjacent N-terminal D'D3 domains. Assembly requires low pH and calcium  ...[more]

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