AbstractThe co-existence and interconversion of growing and shrinking microtubules have been termed ‘dynamic instability’, and have been directly observed to occur under a variety of conditions in vitro and in vivo. Previous modelling was based on the concept of an extensive, fluctuating cap of tubulin-GTP to stabilise growing microtubules. A quantitative kinetic model is now presented in which only the terminal layer of the multi-start helical microtubule lattice contains tubulin-GTP molecules, comprising a ‘Lateral Cap’. In Monte Carlo numerical simulation, this model readily reproduces the decisive experimental evidence of microtubule dynamics, and predicts a co-operative mechanism for microtubule transitions. The model also suggests how...
Characterising complex kinetics of non-equilibrium self-assembly of bio-filaments is of general inte...
The current two-state GTP cap model of microtubule dynamic instability proposes that a terminal crow...
A key question in understanding microtubule dynamics is how GTP hydrolysis leads to catastrophe, the...
AbstractThe co-existence and interconversion of growing and shrinking microtubules have been termed ...
Original article can be found at: http://www.sciencedirect.com/science/journal/00145793 Copyright Fe...
Original article can be found at: http://jcs.biologists.org/ Copyright Company of Biologists [Full t...
Dynamic instability is the term used to describe the transition of an individual microtubule, appare...
Original article can be found at: http://www.sciencedirect.com/science/journal/03044165 Copyright El...
"The final copyedited version of the paper may be found at www.biophysj.org.” Copyright the Biophysi...
Microtubule (MT) dynamic instability is fundamental to many cell functions, but its mechanism remain...
Original article can be found at: http://jcs.biologists.org/ Copyright Company of Biologists [Full t...
Abstract. Simulations of microtubule oscillations have been obtained by a kinetic model including nu...
doi:10.1088/1742-5468/2007/05/L05004 Abstract. We investigate an idealized model of microtubule dyna...
ABSTRACT: Microtubules are biopolymers consisting of tubulin dimer subunits. As a major component of...
Microtubule dynamics is largely influenced by nucleotide hydrolysis and the resultant tubulin config...
Characterising complex kinetics of non-equilibrium self-assembly of bio-filaments is of general inte...
The current two-state GTP cap model of microtubule dynamic instability proposes that a terminal crow...
A key question in understanding microtubule dynamics is how GTP hydrolysis leads to catastrophe, the...
AbstractThe co-existence and interconversion of growing and shrinking microtubules have been termed ...
Original article can be found at: http://www.sciencedirect.com/science/journal/00145793 Copyright Fe...
Original article can be found at: http://jcs.biologists.org/ Copyright Company of Biologists [Full t...
Dynamic instability is the term used to describe the transition of an individual microtubule, appare...
Original article can be found at: http://www.sciencedirect.com/science/journal/03044165 Copyright El...
"The final copyedited version of the paper may be found at www.biophysj.org.” Copyright the Biophysi...
Microtubule (MT) dynamic instability is fundamental to many cell functions, but its mechanism remain...
Original article can be found at: http://jcs.biologists.org/ Copyright Company of Biologists [Full t...
Abstract. Simulations of microtubule oscillations have been obtained by a kinetic model including nu...
doi:10.1088/1742-5468/2007/05/L05004 Abstract. We investigate an idealized model of microtubule dyna...
ABSTRACT: Microtubules are biopolymers consisting of tubulin dimer subunits. As a major component of...
Microtubule dynamics is largely influenced by nucleotide hydrolysis and the resultant tubulin config...
Characterising complex kinetics of non-equilibrium self-assembly of bio-filaments is of general inte...
The current two-state GTP cap model of microtubule dynamic instability proposes that a terminal crow...
A key question in understanding microtubule dynamics is how GTP hydrolysis leads to catastrophe, the...