Electron microscopy of human factor VIII/von willebrand glycoprotein: Effect of reducing reagents on structure and function

57Citations
Citations of this article
16Readers
Mendeley users who have this article in their library.

Abstract

The structure of native and progressively reduced human factor Vlll/von Willebrand factor (FVlll/vWF) was examined by electron microscopy and SDS gel electrophoresis and then correlated with its biological activities. Highly resolved electron micrographs of well-spaced, rotary-shadowed FVlII/vWF molecules showed their structure to consist of a very flexible filament that contains irregularly spaced small nodules. Filaments ranged from 50 to 1,150 nm with a mean length of 478 nm and lacked fixed, large globular domains as seen in fibrinogen and IgM. A population of multimeric FVlII/vWF species ranging in molecular weight from 1 to 5 million daltons and differing in size alternately by one and two subunits was observed on SDS-2% polyacrylamide-0.5% agarose gel electrophoresis. With progressive reduction of disulfide bonds by dithiothreitol (DTT), the electron microscopic size of FVIII/vWF decreased in parallel with increased electrophoretic mobility on SDS-agarose gels; between 0.1 and 0.5 mM DTT its structure changed from predominantly fibrillar species to large nodular forms. A 50% loss of vWF specific activity and FVIII procoagulant activity occurred at 0.4 mM DTT and 1 mM DTT, respectively, corresponding to the reduction of 4 and 12 disulfide bonds of the 62 disulfides per 200,000-dalton subunit. We conclude that reduction of a few critical disulfide bonds results in a major structural change by electron microscopy and a concomitant loss of ~50% of the vWF function. © 1982, Rockefeller University Press., All rights reserved.

Cite

CITATION STYLE

APA

Ohmori, K., Fretto, L. J., Harrison, R. L., Switzer, M. E. P., Erickson, H. P., & McKee, P. A. (1982). Electron microscopy of human factor VIII/von willebrand glycoprotein: Effect of reducing reagents on structure and function. Journal of Cell Biology, 95(2), 632–640. https://doi.org/10.1083/jcb.95.2.632

Register to see more suggestions

Mendeley helps you to discover research relevant for your work.

Already have an account?

Save time finding and organizing research with Mendeley

Sign up for free