Literature DB >> 17142266

A structure-based sliding-rebinding mechanism for catch bonds.

Jizhong Lou1, Cheng Zhu.   

Abstract

Catch bonds, whose lifetimes are prolonged by force, have been observed in selectin-ligand interactions and other systems. Several biophysical models have been proposed to explain this counterintuitive phenomenon, but none was based on the structure of the interacting molecules and the noncovalent interactions at the binding interface. Here we used molecular dynamics simulations to study changes in structure and atomic-level interactions during forced unbinding of P-selectin from P-selectin glycoprotein ligand-1. A mechanistic model for catch bonds was developed based on these observations. In the model, "catch" results from forced opening of an interdomain hinge that tilts the binding interface to allow two sides of the contact to slide against each other. Sliding promotes formation of new interactions and even rebinding to the original state, thereby slowing dissociation and prolonging bond lifetimes. Properties of this sliding-rebinding mechanism were explored using a pseudoatom representation and Monte Carlo simulations. The model has been supported by its ability to fit experimental data and can be related to previously proposed two-pathway models.

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Year:  2006        PMID: 17142266      PMCID: PMC1796828          DOI: 10.1529/biophysj.106.097048

Source DB:  PubMed          Journal:  Biophys J        ISSN: 0006-3495            Impact factor:   4.033


  40 in total

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Journal:  Cell       Date:  2000-10-27       Impact factor: 41.582

2.  Bacterial adhesion to target cells enhanced by shear force.

Authors:  Wendy E Thomas; Elena Trintchina; Manu Forero; Viola Vogel; Evgeni V Sokurenko
Journal:  Cell       Date:  2002-06-28       Impact factor: 41.582

3.  Distinctive features of the biological catch bond in the jump-ramp force regime predicted by the two-pathway model.

Authors:  Yuriy V Pereverzev; Oleg V Prezhdo; Wendy E Thomas; Evgeni V Sokurenko
Journal:  Phys Rev E Stat Nonlin Soft Matter Phys       Date:  2005-07-19

4.  Force-induced deformations and stability of biological bonds.

Authors:  Yuriy V Pereverzev; Oleg V Prezhdo
Journal:  Phys Rev E Stat Nonlin Soft Matter Phys       Date:  2006-05-30

Review 5.  Models for the specific adhesion of cells to cells.

Authors:  G I Bell
Journal:  Science       Date:  1978-05-12       Impact factor: 47.728

Review 6.  The reaction-limited kinetics of membrane-to-surface adhesion and detachment.

Authors:  M Dembo; D C Torney; K Saxman; D Hammer
Journal:  Proc R Soc Lond B Biol Sci       Date:  1988-06-22

7.  Flow-enhanced adhesion regulated by a selectin interdomain hinge.

Authors:  Jizhong Lou; Tadayuki Yago; Arkadiusz G Klopocki; Padmaja Mehta; Wei Chen; Veronika I Zarnitsyna; Nicolai V Bovin; Cheng Zhu; Rodger P McEver
Journal:  J Cell Biol       Date:  2006-09-25       Impact factor: 10.539

8.  Remodeling of the lectin-EGF-like domain interface in P- and L-selectin increases adhesiveness and shear resistance under hydrodynamic force.

Authors:  Uyen T Phan; Travis T Waldron; Timothy A Springer
Journal:  Nat Immunol       Date:  2006-07-16       Impact factor: 25.606

9.  Carbohydrate solution simulations: producing a force field with experimentally consistent primary alcohol rotational frequencies and populations.

Authors:  Michelle Kuttel; J W Brady; Kevin J Naidoo
Journal:  J Comput Chem       Date:  2002-10       Impact factor: 3.376

10.  The kinetics of L-selectin tethers and the mechanics of selectin-mediated rolling.

Authors:  R Alon; S Chen; K D Puri; E B Finger; T A Springer
Journal:  J Cell Biol       Date:  1997-09-08       Impact factor: 10.539

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  55 in total

Review 1.  Biomechanics of leukocyte rolling.

Authors:  Prithu Sundd; Maria K Pospieszalska; Luthur Siu-Lun Cheung; Konstantinos Konstantopoulos; Klaus Ley
Journal:  Biorheology       Date:  2011       Impact factor: 1.875

2.  Catch-bond behavior of bacteria binding by slip bonds.

Authors:  Oscar Björnham; Ove Axner
Journal:  Biophys J       Date:  2010-09-08       Impact factor: 4.033

3.  Triphasic force dependence of E-selectin/ligand dissociation governs cell rolling under flow.

Authors:  Annica M Wayman; Wei Chen; Rodger P McEver; Cheng Zhu
Journal:  Biophys J       Date:  2010-08-09       Impact factor: 4.033

Review 4.  Mechanisms for flow-enhanced cell adhesion.

Authors:  Cheng Zhu; Tadayuki Yago; Jizhong Lou; Veronika I Zarnitsyna; Rodger P McEver
Journal:  Ann Biomed Eng       Date:  2008-02-26       Impact factor: 3.934

5.  FimH forms catch bonds that are enhanced by mechanical force due to allosteric regulation.

Authors:  Olga Yakovenko; Shivani Sharma; Manu Forero; Veronika Tchesnokova; Pavel Aprikian; Brian Kidd; Albert Mach; Viola Vogel; Evgeni Sokurenko; Wendy E Thomas
Journal:  J Biol Chem       Date:  2008-02-21       Impact factor: 5.157

6.  Structural basis for selectin mechanochemistry.

Authors:  Timothy A Springer
Journal:  Proc Natl Acad Sci U S A       Date:  2008-12-31       Impact factor: 11.205

7.  Transmission of allostery through the lectin domain in selectin-mediated cell adhesion.

Authors:  Travis T Waldron; Timothy A Springer
Journal:  Proc Natl Acad Sci U S A       Date:  2008-12-31       Impact factor: 11.205

8.  Heterotropic modulation of selectin affinity by allosteric antibodies affects leukocyte rolling.

Authors:  Sebastian B Riese; Christian Kuehne; Thomas F Tedder; Rupert Hallmann; Erhard Hohenester; Konrad Buscher
Journal:  J Immunol       Date:  2014-01-15       Impact factor: 5.422

Review 9.  Catch-bond mechanism of force-enhanced adhesion: counterintuitive, elusive, but ... widespread?

Authors:  Evgeni V Sokurenko; Viola Vogel; Wendy E Thomas
Journal:  Cell Host Microbe       Date:  2008-10-16       Impact factor: 21.023

10.  Visualization of allostery in P-selectin lectin domain using MD simulations.

Authors:  Shouqin Lü; Yan Zhang; Mian Long
Journal:  PLoS One       Date:  2010-12-08       Impact factor: 3.240

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