The local cell curvature guides pseudopodia towards chemoattractants.

Hfsp Journal Pub Date : 2009-08-01 Epub Date: 2009-08-07 DOI:10.2976/1.3185725
Peter J M Van Haastert, Leonard Bosgraaf
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引用次数: 27

Abstract

Many eukaryotic cells use pseudopodia for movement towards chemoattractants. We developed a computer algorithm to identify pseudopodia, and analyzed how pseudopodia of Dictyostelium cells are guided toward cAMP. Surprisingly, the direction of a pseudopod is not actively oriented toward the gradient, but is always perpendicular to the local cell curvature. The gradient induces a bias in the position where the pseudopod emerges: pseudopodia more likely emerge at the side of the cell closer to the gradient where perpendicular pseudopodia are pointed automatically toward the chemoattractant. A mutant lacking the formin dDia2 is not spherical but has many invaginations. Although pseudopodia still emerge at the side closer to the gradient, the surface curvature is so irregular that many pseudopodia are not extended toward cAMP. The results imply that the direction of the pseudopod extension, and therefore also the direction of cell movement, is dominated by two aspects: the position at the cell surface where a pseudopod emerges, and the local curvature of the membrane at that position.

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局部细胞曲率引导假足向化学引诱剂方向运动。
许多真核细胞利用假足向化学引诱剂移动。我们开发了一种识别伪足的计算机算法,并分析了盘基骨柱细胞的伪足是如何被引导到cAMP的。令人惊讶的是,伪足的方向并不主动朝向梯度,而是始终垂直于局部细胞曲率。梯度诱导假足出现的位置产生偏差:假足更可能出现在靠近梯度的细胞一侧,垂直的假足自动指向化学引诱剂。缺乏双胍蛋白dDia2的突变体不是球形的,但有许多内凹。虽然假足仍然出现在靠近梯度的一侧,但表面曲率非常不规则,许多假足没有向cAMP方向延伸。结果表明,假足延伸的方向以及细胞运动的方向由两个方面决定:假足在细胞表面出现的位置,以及该位置膜的局部曲率。
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Hfsp Journal
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