most citedTubulin bond energies and microtubule biomechanics determined from nanoindentation in silico

88 citations · 179 across the 4 of their papers we have counts for

collaborators

4 papers

physics.bio-ph20156 cited

Order statistics inference for describing topological coupling and mechanical symmetry breaking in multidomain proteins

Olga Kononova, Lee Jones, Valeri Barsegov

Cooperativity is a hallmark of proteins, many of which show a modular architecture comprising discrete structural domains. Detecting and describing dynamic couplings between struct…

physics.bio-ph201537 cited

Molecular mechanisms, thermodynamics, and dissociation kinetics of knob-hole interactions in fibrin

Olga Kononova, Rustem I. Litvinov, Artem Zhmurov +6

Polymerization of fibrin, the primary structural protein of blood clots and thrombi, occurs through binding of knobs 'A' and 'B' in the central nodule of fibrin monomer to compleme…

physics.bio-ph201548 cited

Structural transitions and energy landscape for Cowpea Chlorotic Mottle Virus capsid mechanics from nanomanipulation in vitro and in silico

Olga Kononova, Joost Snijder, Melanie Brasch +6

Physical properties of capsids of plant and animal viruses are important factors in capsid self-assembly, survival of viruses in the extracellular environment, and their cell infec…

physics.bio-ph201588 cited

Tubulin bond energies and microtubule biomechanics determined from nanoindentation in silico

Olga Kononova, Yaroslav Kholodov, Kelly E. Theisen +5

Microtubules, the primary components of the chromosome segregation machinery, are stabilized by longitudinal and lateral non-covalent bonds between the tubulin subunits. However, t…