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Computer simulations reveal motor properties generating stable antiparallel microtubule interactions

机译:计算机仿真揭示了运动特性产生稳定的反平行微管相互作用

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摘要

An aster of microtubules is a set of flexible polar filaments with dynamic plus ends that irradiate from a common location at which the minus ends of the filaments are found. Processive soluble oligomeric motor complexes can bind simultaneously to two microtubules, and thus exert forces between two asters. Using computer simulations, I have explored systematically the possible steady-state regimes reached by two asters under the action of various kinds of oligomeric motors. As expected, motor complexes can induce the asters to fuse, for example when the complexes consist only of minus end–directed motors, or to fully separate, when the motors are plus end directed. More surprisingly, complexes made of two motors of opposite directionalities can also lead to antiparallel interactions between overlapping microtubules that are stable and sustained, like those seen in mitotic spindle structures. This suggests that such heterocomplexes could have a significant biological role, if they exist in the cell.
机译:微管的紫苑是一组具有动态正端的柔性极性细丝,其从发现细丝负端的公共位置照射。进行性可溶性低聚运动复合物可以同时结合到两个微管,从而在两个翠菊之间施加力。使用计算机模拟,我系统地探索了在各种低聚物马达的作用下,两个星号达到的可能的稳态状态。不出所料,例如,当电动机仅由负方向导向的电动机组成时,电动机综合体会导致星号熔断,或者当电动机正向导向时,电动机会完全分离。更令人惊讶的是,由方向相反的两个电动机构成的复合体也可能导致稳定且持续的重叠微管之间发生反平行相互作用,就像在有丝分裂纺锤体结构中看到的那样。这表明,如果它们存在于细胞中,这种杂合物可能具有重要的生物学作用。

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