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Dynamic instability of microtubules: effect of catastrophe-suppressing drugs

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arxiv cond-mat/0310546 v4 pith:VSXYWAPJ submitted 2003-10-23 cond-mat.stat-mech cond-mat.softq-bio.SC

Dynamic instability of microtubules: effect of catastrophe-suppressing drugs

classification cond-mat.stat-mech cond-mat.softq-bio.SC
keywords microtubulescatastrophe-suppressingdrugsdynamicgrowinginstabilityknownmicrotubule
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Microtubules are stiff filamentary proteins that constitute an important component of the cytoskeleton of cells. These are known to exhibit a dynamic instability. A steadily growing microtubule can suddenly start depolymerizing very rapidly; this phenomenon is known as ``catastrophe''. However, often a shrinking microtubule is ``rescued'' and starts polymerizing again. Here we develope a model for the polymerization-depolymerization dynamics of microtubules in the presence of {\it catastrophe-suppressing drugs}. Solving the dynamical equations in the steady-state, we derive exact analytical expressions for the length distributions of the microtubules tipped with drug-bound tubulin subunits as well as those of the microtubules, in the growing and shrinking phases, tipped with drug-free pure tubulin subunits. We also examine the stability of the steady-state solutions.

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