Effect of Loading Device in the Mechanical Force-Driven Biomolecular Bond Rupture Mechanism

2020 ◽  
Vol 2 (4) ◽  
pp. 252-256
Author(s):  
Kilho Eom
Blood ◽  
2010 ◽  
Vol 116 (21) ◽  
pp. 2117-2117
Author(s):  
Wendy E Thomas ◽  
Rebecca A Penkala ◽  
Elaine Hillenmeyer ◽  
Matthew Whitfield ◽  
An-yue Tu ◽  
...  

Abstract Abstract 2117 Regulation of the bond between platelet glycoprotein (GP) Ibα of the GPIb-IX-V complex, and the von Willebrand Factor (VWF) A1 domain is critical to the balance between hemostasis and thrombosis, particularly in high shear conditions. The GPIbα-A1 interaction is known to be activated by shear stress and inhibited by neighboring domains in VWF, but the role of neighboring domains in the shear-dependence remained unknown. Here it is shown that platelet aggregation required shear stress in the presence of VWF proteins that contain the neighboring D′D3 domain (Plus D′D3 or plasma VWF) but that platelets aggregate spontaneously with a protein that lacks this region (Delta D′D3). Moreover, platelets and microspheres coated with the N-terminal 300 amino acids of GPIbα (GC300) bind to immobilized VWF in a shear-enhanced manner for Plus D′D3 but not for Delta D′D3. In single-molecule force spectroscopy experiments, the D′D3 domain decreased the number of GPIbα-A1 bonds that formed, but did not alter bond rupture force, consistent with the hypothesis that D′D3 shields the A1 domain. By expressing recombinant VWF fragments that contain the A1 domain and various lengths of the N-terminal region, we determined that most of the inhibition by the D′D3 domain was conferred by 23 amino acids in the linker between the A1 domain and the D′D3 domain. By anchoring the fragments to the surface in an oriented manner, we demonstrated that binding was much stronger when force was applied between GPIbα and the A1 C-terminus, than when force was applied between GPIbα and the A1 N-terminus, similar to what has been observed for integrins. Based on these results, we propose the following model for regulation of VWF by mechanical force. When multimeric VWF is stretched in flow, the D′D3 domains are pulled away from the A1 domains, exposing the latter to bind platelets. When force is applied between GPIbα and the C-terminus of A1, it induces an activating conformational change that could be analogous to that seen in integrins. Disclosures: No relevant conflicts of interest to declare.


1977 ◽  
Vol 6 (4) ◽  
pp. 339-344 ◽  
Author(s):  
Ryokichi Tsuchiya ◽  
Tadatsugu Yoshikuni ◽  
Shigeo Nakagawa ◽  
Akira Uehara ◽  
Eishin Kyuno

1970 ◽  
Vol 48 (15) ◽  
pp. 2327-2333 ◽  
Author(s):  
Kenneth K. W. Sun ◽  
Roland A. Haines

cis and trans geometric isomers of low spin octahedral cobalt(III) complexes containing either thiosemicarbazide (Htsc) or its anion (tsc) have been prepared and electronic spectra are presented and discussed. For the ionic form [Co(Htsc)3]3+ both isomers were resolved and absolute configurations were assigned on the basis of optical rotatory dispersion and circular dichroism measurements. The interconversion of these optically active complex ions in aqueous solution was studied and a bond rupture mechanism is proposed to account for the observed inversion and isomerization.


2020 ◽  
Vol 8 (35) ◽  
pp. 12036-12053
Author(s):  
Ezgi Inci ◽  
Gokhan Topcu ◽  
Tugrul Guner ◽  
Merve Demirkurt ◽  
Mustafa M. Demir

Colorimetric mechanical (force, pressure, strain, and impact) sensors allow naked-eye visualization of existing structural deformations of a system occurring upon application of a mechanical action.


Sign in / Sign up

Export Citation Format

Share Document