拉伸诱导肌凝蛋白进入横向肌动蛋白环稳定轴突大货物运输

IF 1.9 4区 数学 Q2 BIOLOGY
Nizhum Rahman , Dietmar B. Oelz
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引用次数: 0

摘要

通过模型和模拟,研究了大货囊的轴突运输及其与轴突内收缩的横向动肌球蛋白环的反馈。为此,我们模拟了一个数学模型,该模型集成了分子马达产生的力和横向肌动蛋白环施加的力。我们的研究结果预测,货物囊泡表现出双向运动,并与观察结果一致。据观察,在以逆行为主的轴突货物运输中,blebbistatin治疗延长了货物在逆行运输中花费的时间。我们的模拟表明,这可以通过机械转导拉伸诱导肌凝蛋白马达进入横向肌动蛋白环来解释。这些发现为轴突货物运输的复杂动力学提供了有价值的见解,并为进一步的实验研究提供了潜在的途径。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Stretch-induced recruitment of myosin into transversal actin rings stabilises axonal large cargo transport
We study the axonal transport of large cargo vesicles and its feedback with contractile transversal actomyosin rings in axons through modelling and simulation. To this end, we simulate a mathematical model that integrates forces generated by the molecular motors and forces exerted by transversal actin rings. Our results predict that cargo vesicles exhibit bidirectional movement along with pauses in agreement with observations. It has been observed that during predominantly retrograde axonal cargo transport, blebbistatin treatment prolongs the periods spent by the cargo in anterograde transport. Our simulations show that this can be explained by mechanotransductive stretch-induced recruitment of myosin motors into transversal actin rings. These findings offer valuable insights into the complex dynamics of axonal cargo transport and propose potential avenues for further experimental research.
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来源期刊
Mathematical Biosciences
Mathematical Biosciences 生物-生物学
CiteScore
7.50
自引率
2.30%
发文量
67
审稿时长
18 days
期刊介绍: Mathematical Biosciences publishes work providing new concepts or new understanding of biological systems using mathematical models, or methodological articles likely to find application to multiple biological systems. Papers are expected to present a major research finding of broad significance for the biological sciences, or mathematical biology. Mathematical Biosciences welcomes original research articles, letters, reviews and perspectives.
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