论文标题

胞质流诱导的对称性破坏了概念极性模型

Cytosolic flow induced symmetry breaking in a conceptual polarity model

论文作者

Wigbers, Manon C, Brauns, Fridtjof, Leung, Ching Yee, Frey, Erwin

论文摘要

重要的细胞过程,例如细胞运动和细胞分裂,由细胞极性协调,这是由某些蛋白质的不均匀分布确定的。这种蛋白质模式通过蛋白质反应和蛋白质转运的相互作用形成。自图灵(Turing)的开创性工作以来,已经广泛研究了由反应和扩散运输之间相互作用引起的蛋白质模式的形成。在过去的几年中,越来越多的证据表明,许多细胞中也存在胞质和皮质流动引起的对流运输。但是,尚不清楚这些流程如何以及这些流程是否有助于蛋白质图案的形成。为了解决这个问题,我们使用一个最小的模型,该模型可以保存总蛋白质质量来表征胞质流对图案形成的影响。将线性稳定性分析与数值模拟相结合,我们发现膜结合的蛋白质模式与细胞质流动方向传播,速度最大,对于中间流动速度。我们表明,与下游相比,这种模式传播基础的机制取决于模式上游侧面的较高蛋白质流入。此外,我们发现胞质流可以将膜模式从峰值变为峰值模式变为膜模式。最后,我们的研究表明,不均匀的流量图可以通过触发区域横向不稳定来诱导模式形成。

Important cellular processes, such as cell motility and cell division, are coordinated by cell polarity, which is determined by the non-uniform distribution of certain proteins. Such protein patterns form via an interplay of protein reactions and protein transport. Since Turing's seminal work, the formation of protein patterns resulting from the interplay between reactions and diffusive transport has been widely studied. Over the last few years, increasing evidence shows that also advective transport, resulting from cytosolic and cortical flows, is present in many cells. However, it remains unclear how and whether these flows contribute to protein-pattern formation. To address this question, we use a minimal model that conserves the total protein mass to characterize the effects of cytosolic flow on pattern formation. Combining a linear stability analysis with numerical simulations, we find that membrane-bound protein patterns propagate against the direction of cytoplasmic flow with a speed that is maximal for intermediate flow speed. We show that the mechanism underlying this pattern propagation relies on a higher protein influx on the upstream side of the pattern compared to the downstream side. Furthermore, we find that cytosolic flow can change the membrane pattern qualitatively from a peak pattern to a mesa pattern. Finally, our study shows that a non-uniform flow profile can induce pattern formation by triggering a regional lateral instability.

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