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伪足里有飞行员吗?

Is there a pilot in a pseudopod?

作者信息

Weber Igor

机构信息

Ruder Bosković Institute, Department of Molecular Biology, Bijenicka 54, HR-10000 Zagreb, Croatia.

出版信息

Eur J Cell Biol. 2006 Sep;85(9-10):915-24. doi: 10.1016/j.ejcb.2006.05.002. Epub 2006 Jun 14.

Abstract

The concept of pilot pseudopodia is reconsidered 30 years after its inauguration (Gerisch, G., Hülser, D., Malchow, D., Wick, U., 1975. Cell communication by periodic cyclic-AMP pulses. Phil. Trans. R. Soc. Lond. B 272, 181-192). The original hypothesis stated that protruding pseudopodia serve as dynamic sensory organelles that aid a cell in perceiving variations of chemoattractant concentration and, consequently, in navigation during chemotaxis. This influential idea is reevaluated in the light of recent findings about the mechanisms governing chemotactic cell motility, morphology and dynamics of pseudopodia, and about molecular constituents and regulators of pseudopod extension and retraction. It is proposed that stimulation by a chemoattractant modulates speed of pseudopod protrusion and thereby increases cell elongation. Elongation further enhances chemotactic sensitivity of the cell to shallow chemoattractant gradients, reinforces cell polarization, and finally leads to suppression of lateral pseudopodia and continuation of cell migration in the gradient direction.

摘要

在“先导伪足”概念提出30年后(Gerisch, G., Hülser, D., Malchow, D., Wick, U., 1975年。《伦敦皇家学会哲学学报》B辑272卷,第181 - 192页,通过周期性环磷酸腺苷脉冲进行细胞通讯),我们对其进行了重新审视。最初的假设认为,伸出的伪足作为动态感觉细胞器,帮助细胞感知趋化因子浓度的变化,从而在趋化作用中进行导航。鉴于最近关于趋化性细胞运动、伪足形态和动力学的调控机制,以及伪足伸出和缩回的分子成分和调节因子的研究结果,我们对这一有影响力的观点进行了重新评估。有人提出,趋化因子的刺激会调节伪足伸出的速度,从而增加细胞的伸长。伸长进一步增强了细胞对浅趋化因子梯度的趋化敏感性,加强了细胞极化,最终导致侧向伪足的抑制,并使细胞在梯度方向上继续迁移。

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