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Stochastic dynamics of adhesion clusters under shared constant force and with rebinding

机译:共享恒力作用下具有重新结合作用的黏附簇的随机动力学

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Single receptor-ligand bonds have finite lifetimes, so that biological systems can dynamically react to changes in their environment. In cell adhesion, adhesion bonds usually act cooperatively in adhesion clusters. Outside the cellular context, adhesion clusters can be probed quantitatively by attaching receptors and ligands to opposing surfaces. Here we present a detailed theoretical analysis of the stochastic dynamics of a cluster of parallel bonds under shared constant loading and with rebinding. Analytical solutions for the appropriate one-step master equation are presented for special cases, while the general case is treated with exact stochastic simulations. If the completely dissociated state is modeled as an absorbing boundary, mean cluster lifetime is finite and can be calculated exactly. We also present a detailed analysis of fluctuation effects and discuss various approximations to the full stochastic description. (C) 2004 American Institute of Physics.
机译:单受体-配体键具有有限的寿命,因此生物系统可以对环境的变化做出动态反应。在细胞粘附中,粘附键通常在粘附簇中协同作用。在细胞之外,可以通过将受体和配体附着在相对的表面上来定量探测粘附簇。在这里,我们介绍了在共享恒定载荷下和重新绑定下,平行键簇的随机动力学的详细理论分析。针对特殊情况,给出了适用于一阶主方程的解析解,而对一般情况则进行了精确的随机模拟。如果将完全解离的状态建模为吸收边界,则平均团簇寿命是有限的,可以精确计算。我们还提供了波动影响的详细分析,并讨论了全部随机描述的各种近似值。 (C)2004年美国物理研究所。

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