Craig Erin M, Yeung Howard T, Rao Anand N, Baas Peter W
Department of Physics, Central Washington University, Ellensburg, WA 98926
Department of Physics, Central Washington University, Ellensburg, WA 98926.
Mol Biol Cell. 2017 Nov 7;28(23):3271-3285. doi: 10.1091/mbc.E17-06-0380. Epub 2017 Oct 4.
We present a computational model to test a "polarity sorting" mechanism for microtubule (MT) organization in developing axons. We simulate the motor-based axonal transport of short MTs to test the hypothesis that immobilized cytoplasmic dynein motors transport short MTs with their plus ends leading, so "mal-oriented" MTs with minus-end-out are transported toward the cell body while "correctly" oriented MTs are transported in the anterograde direction away from the soma. We find that dynein-based transport of short MTs can explain the predominately plus-end-out polarity pattern of axonal MTs but that transient attachments of plus-end-directed motor proteins and nonmotile cross-linker proteins are needed to explain the frequent pauses and occasional reversals observed in live-cell imaging of MT transport. Static cross-linkers increase the likelihood of a stalled "tug-of-war" between retrograde and anterograde forces on the MT, providing an explanation for the frequent pauses of short MTs and the immobility of longer MTs. We predict that inhibition of the proposed static cross-linker will produce disordered transport of short MTs and increased mobility of longer MTs. We also predict that acute inhibition of cytoplasmic dynein will disrupt the polarity sorting of MTs by increasing the likelihood of "incorrect" sorting of MTs by plus-end-directed motors.
我们提出了一个计算模型,以测试发育中的轴突中微管(MT)组织的“极性分选”机制。我们模拟了基于马达的短微管轴突运输,以检验以下假设:固定的胞质动力蛋白马达运输短微管时,其正端在前,因此负端向外的“方向错误”微管被运输向细胞体,而“正确”定向的微管则沿顺行方向远离胞体运输。我们发现,基于动力蛋白的短微管运输可以解释轴突微管主要为正端向外的极性模式,但需要正端定向的马达蛋白和非运动性交联蛋白的瞬时附着来解释在微管运输的活细胞成像中观察到的频繁停顿和偶尔的逆转。静态交联剂增加了微管上逆行和顺行力之间陷入僵局的“拔河”的可能性,这为短微管的频繁停顿和长微管的固定不动提供了解释。我们预测,对所提出的静态交联剂的抑制将导致短微管的无序运输和长微管的移动性增加。我们还预测,急性抑制胞质动力蛋白将通过增加正端定向马达对微管“错误”分选的可能性来破坏微管的极性分选。