A mathematical model for bleb regulation in zebrafish primordial germ cells

Carolin Dirks;Paul Striewski;Benedikt Wirth;Anne Aalto;Adan Olguin-Olguin
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引用次数: 1

Abstract

Blebs are cell protrusions generated by local membrane–cortex detachments followed by expansion of the plasma membrane. Blebs are formed by some migrating cells, e.g. primordial germ cells of the zebrafish. While blebs occur randomly at each part of the membrane in unpolarized cells, a polarization process guarantees the occurrence of blebs at a preferential site and thereby facilitates migration toward a specified direction. Little is known about the factors involved in the controlled and directed bleb generation, yet recent studies revealed the influence of an intracellular flow and the stabilizing role of the membrane–cortex linker molecule Ezrin. Based on this information, we develop and analyse a coupled bulk-surface model describing a potential cellular mechanism by which a bleb could be induced at a controlled site. The model rests upon intracellular Darcy flow and a diffusion–advection–reaction system, describing the temporal evolution from a homogeneous to a strongly anisotropic Ezrin distribution. We prove the well-posedness of the mathematical model and show that simulations qualitatively correspond to experimental observations, suggesting that indeed the interaction of an intracellular flow with membrane proteins can be the cause of the Ezrin redistribution accompanying bleb formation.
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斑马鱼原始生殖细胞泡调节的数学模型
泡是细胞的突出物,由局部的膜-皮层分离引起,接着是质膜的扩张。水泡是由一些迁移的细胞形成的,例如斑马鱼的原始生殖细胞。在非极化细胞中,泡在膜的各个部分随机发生,而极化过程保证了泡在优先位置的发生,从而促进了向特定方向的迁移。关于控制和定向起泡产生的因素知之甚少,但最近的研究揭示了细胞内流动的影响和膜-皮质连接分子Ezrin的稳定作用。基于这些信息,我们开发和分析了一个耦合体-表面模型,描述了一个潜在的细胞机制,通过这个机制,一个气泡可以在一个受控的部位被诱导。该模型基于细胞内达西流和扩散-平流-反应系统,描述了从均匀到强各向异性Ezrin分布的时间演变。我们证明了数学模型的完备性,并表明模拟在定性上与实验观察相一致,这表明细胞内流与膜蛋白的相互作用确实可能是Ezrin再分布伴随气泡形成的原因。
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