The amino Acid sequence glutamine-628 to valine-646 within the A1 repeat domain mediates binding of von Willebrand factor to bovine brain sulfatides and equine tendon collagen.
Abstract: von Willebrand Factor (vWF) is a multifunctional glycoprotein in plasma and vascular subendothelial matrix which plays a major role in cellular adhesion. vWFdependent adhesion of platelets to the subendothelium at high shear rates involves a specific platelet membrane receptor, the glycoprotein (GP) Ib-IX complex. We have previously purified a 39/34-kiloDalton (kDa) dispase fragment of vWF (Leu-480/Val-481 to Gly-718) and demonstrated that this fragment contains the binding site for the GP Ib-IX complex [Andrews R K, et al. Biochemistry 1989; 28: 8326-83361. vWF also mediates agglutination of erythrocytes by a mechanism that appears to involve binding to membrane sulfatides. In this study, we demonstrate that the 39/34-kDa vWF fragment also contains an exclusive discrete binding domain for membrane sulfatides and that the sulfatide-binding sequence also mediates binding of vWF to equine tendon collagen. Specific binding of (125)I-vWF to sulfatides immobilized on microtiter wells was completely inhibited by unlabeled vWF (IC(50)∼0.02 μ;M) and by the isolated 39/34-kDa vWF fragment (IC(50)∼0.8 μ;M). A specific anti-39/34-kDa fragment rabbit polyclonal antibody, but not nonimmune immunoglobulin, also strongly inhibited the vWF-sulfatide interaction in this assay. Using synthetic peptides corresponding to hydrophilic sequences from within the 39/34-kDa vWF fragment, a positively-charged sequence, Gln-628 to Val-646, was identified as mediating specific binding of vWF to sulfatides, since it competitively inhibited this interaction (IC(50)∼0.6 μ;M) comparable on a molar basis to the 39/34-kDa vWF fragment (IC, -0.8 μ;M). The inhibition by the Gln-626 to Val-646 peptide was specific since neither other peptides from the 39/34-kDa domain of vWF nor another highly basic peptide, polylysine, at comparable concentrations to the Gln-628 to Val-646 peptide blocked vWF binding to sulfatides. Similarly, the Gln-628 to Val-646 peptide blocked binding of vWF to equine tendon type I collagen (IC(50) of 0.6 μ;M) suggesting that this interaction probably involves recognition of a sulfatide-like impurity in the collagen preparation. The specific binding of vWF to sulfatides via a discrete peptide sequence, Gln-628 to Val-646, within the A1 repeat domain suggests the potential for involvement of sulfatides as a class of receptors for vWF in cellular adhesion.
Publication Date: 1995-01-01 PubMed ID: 21043708DOI: 10.3109/09537109509023562Google Scholar: Lookup
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Summary
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The research studied the role of the amino acid sequence glutamine-628 to valine-646 in the binding of von Willebrand factor to bovine brain sulfatides and equine tendon collagen.
Aim and Background of the Study
- The study is based on the investigation of the von Willebrand Factor (vWF), a multifunctional glycoprotein that plays an important role in cellular adhesion.
- An essential function of vWF is the adhesion of platelets to the subendothelium at high shear rates which is administered through a specific platelet membrane receptor called the glycoprotein (GP) Ib-IX complex.
- In a prior study, they identified a 39/34-kiloDalton (kDa) fragment of vWF and discovered this fragment encompasses the binding site for the GP Ib-IX complex.
- Another function of vWF is mediating the agglutination of erythrocytes, a process that seems to need binding to membrane sulfatides.
Findings of the Study
- Researchers found the 39/34-kDa vWF fragment also accommodates a discrete binding domain for membrane sulfatides and this sulfatide-binding sequence mediates binding of vWF to equine tendon collagen.
- Researchers verified that the binding of (125)I-vWF to sulfatides can be completely blocked by both unlabeled vWF (IC(50)∼0.02 μ;M) and the isolated 39/34-kDa vWF fragment (IC(50)∼0.8 μ;M).
- An exclusive anti-39/34-kDa fragment rabbit polyclonal antibody (but not nonimmune immunoglobulin) extensively inhibited the vWF-sulfatide interaction, indicating specificity.
- Researchers identified a positively charged sequence, Gln-628 to Val-646, as mediating the specific binding of vWF to sulfatides through the use of synthetic peptides simulating hydrophilic sequences from within the 39/34-kDa vWF fragment.
Implications of Findings
- The peptides containing the sequence Gln-628 to Val-646 can block the vWF’s binding to sulfatides and equine tendon type I collagen, hinting that this interaction possibly involves recognition of a sulfatide-like impurity in the collagen preparation.
- The study suggests the potential for the sulfatides as a class of receptors for vWF in cellular adhesion because of the specific binding of vWF to sulfatides through the discrete peptide sequence, Gln-628 to Val-646, within the A1 repeat domain.
Cite This Article
APA
Andrews RK, Booth WJ, Bendall LJ, Berndt MC.
(1995).
The amino Acid sequence glutamine-628 to valine-646 within the A1 repeat domain mediates binding of von Willebrand factor to bovine brain sulfatides and equine tendon collagen.
Platelets, 6(5), 245-251.
https://doi.org/10.3109/09537109509023562 Publication
Researcher Affiliations
- Vascular Biology Laboratory, Baker Medical Research Institute, Prahran, Victoria, Australia.
Citations
This article has been cited 2 times.- Ruggeri ZM. Platelet adhesion under flow. Microcirculation 2009 Jan;16(1):58-83.
- Nakayama T, Matsushita T, Yamamoto K, Mutsuga N, Kojima T, Katsumi A, Nakao N, Sadler JE, Naoe T, Saito H. Identification of amino acid residues responsible for von Willebrand factor binding to sulfatide by charged-to-alanine-scanning mutagenesis. Int J Hematol 2008 May;87(4):363-370.
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