AbstractSteered molecular dynamics simulations have previously been used to investigate the mechanical properties of the extracellular matrix protein fibronectin. The simulations suggest that the mechanical stability of the tenth type III domain from fibronectin (FNfn10) is largely determined by a number of critical hydrogen bonds in the peripheral strands. Interestingly, the simulations predict that lowering the pH from 7 to ∼4.7 will increase the mechanical stability of FNfn10 significantly (by ∼33 %) due to the protonation of a few key acidic residues in the A and B strands. To test this simulation prediction, we used single-molecule atomic force microscopy (AFM) to investigate the mechanical stability of FNfn10 at neutral pH and at lowe...
The mechanism of human fibronectin adhesion synergy region (known as integrin binding region) in rep...
Fibronectin (FN) forms fibrillar networks coupling cells to the extracellular matrix. The formation ...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
AbstractSteered molecular dynamics simulations have previously been used to investigate the mechanic...
AbstractThe experimentally derived mechanical hierarchy of the different FnIII domains from fibronec...
AbstractIt is well known that electrostatic interactions play important roles in determining the the...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
AbstractDynamic force spectroscopy is rapidly becoming a standard biophysical technique. Significant...
Titin, an important constituent of vertebrate muscles, is a protein of the order of a micrometer in ...
The mechanism of human fibronectin adhesion synergy region (known as integrin binding region) in rep...
Many proteins in alive organisms have a domain structure providing them the possibility to reversibl...
Consensus protein design is a rapid and reliable technique for the improvement of protein stability,...
AbstractIn the last decade atomic force microscopy has been used to measure the mechanical stability...
122 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1999.Force-induced protein domain ...
which bind to cell-surface integrins. In the native structure of FnIII10 (Fig. 1), the RGD motif is ...
The mechanism of human fibronectin adhesion synergy region (known as integrin binding region) in rep...
Fibronectin (FN) forms fibrillar networks coupling cells to the extracellular matrix. The formation ...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
AbstractSteered molecular dynamics simulations have previously been used to investigate the mechanic...
AbstractThe experimentally derived mechanical hierarchy of the different FnIII domains from fibronec...
AbstractIt is well known that electrostatic interactions play important roles in determining the the...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...
AbstractDynamic force spectroscopy is rapidly becoming a standard biophysical technique. Significant...
Titin, an important constituent of vertebrate muscles, is a protein of the order of a micrometer in ...
The mechanism of human fibronectin adhesion synergy region (known as integrin binding region) in rep...
Many proteins in alive organisms have a domain structure providing them the possibility to reversibl...
Consensus protein design is a rapid and reliable technique for the improvement of protein stability,...
AbstractIn the last decade atomic force microscopy has been used to measure the mechanical stability...
122 p.Thesis (Ph.D.)--University of Illinois at Urbana-Champaign, 1999.Force-induced protein domain ...
which bind to cell-surface integrins. In the native structure of FnIII10 (Fig. 1), the RGD motif is ...
The mechanism of human fibronectin adhesion synergy region (known as integrin binding region) in rep...
Fibronectin (FN) forms fibrillar networks coupling cells to the extracellular matrix. The formation ...
The structural proteins of the extracellular matrix (ECM) form fibers with finely tuned mechanical p...