Nizhny Novgorod Neuroscience Centre, Lobachevsky State University of Nizhny Novgorod, Nizhny Novgorod, Russia.
Nizhny Novgorod Neuroscience Centre, Lobachevsky State University of Nizhny Novgorod, Nizhny Novgorod, Russia.
Neurosci Lett. 2014 Jun 6;570:16-20. doi: 10.1016/j.neulet.2014.03.041. Epub 2014 Mar 29.
We consider the influence of extracellular signalling on neurite elongation in a model of neurite growth mediated by building proteins (e.g., tubulin). The tubulin production dynamics were supplied by a function describing the influence of extracellular signalling, which can promote or depress neurite elongation. We found that this extracellular feedback could generate neurite length oscillations consisting of a periodic sequence of elongations and retractions. The oscillations prevent further outgrowth of the neurite, which becomes trapped in the non-uniform extracellular field. We analysed the characteristics of the elongation process for different distributions of attracting and repelling sources of the extracellular signalling molecules. The model predicts three different scenarios of neurite development in the extracellular field, including monotonic and oscillatory outgrowth, localised limit cycle oscillations and complete growth depression.
我们研究了细胞外信号对构建蛋白(如微管蛋白)介导的神经突生长模型中神经突伸长的影响。微管蛋白的产生动力学由一个描述细胞外信号影响的函数提供,该函数可以促进或抑制神经突伸长。我们发现,这种细胞外反馈可以产生由周期性的伸长和回缩序列组成的神经突长度振荡。这些振荡阻止了神经突的进一步生长,使其被困在非均匀的细胞外场中。我们分析了不同的吸引和排斥细胞外信号分子源的分布情况下伸长过程的特征。该模型预测了细胞外场中神经突发育的三种不同情况,包括单调和振荡生长、局部极限环振荡和完全生长抑制。