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在无外部信号情况下的持续细胞运动:真核细胞的一种搜索策略

Persistent cell motion in the absence of external signals: a search strategy for eukaryotic cells.

作者信息

Li Liang, Nørrelykke Simon F, Cox Edward C

机构信息

Department of Physics, Princeton University, Princeton, New Jersey, United States of America.

出版信息

PLoS One. 2008 May 7;3(5):e2093. doi: 10.1371/journal.pone.0002093.

Abstract

BACKGROUND

Eukaryotic cells are large enough to detect signals and then orient to them by differentiating the signal strength across the length and breadth of the cell. Amoebae, fibroblasts, neutrophils and growth cones all behave in this way. Little is known however about cell motion and searching behavior in the absence of a signal. Is individual cell motion best characterized as a random walk? Do individual cells have a search strategy when they are beyond the range of the signal they would otherwise move toward? Here we ask if single, isolated, Dictyostelium and Polysphondylium amoebae bias their motion in the absence of external cues.

METHODOLOGY

We placed single well-isolated Dictyostelium and Polysphondylium cells on a nutrient-free agar surface and followed them at 10 sec intervals for approximately 10 hr, then analyzed their motion with respect to velocity, turning angle, persistence length, and persistence time, comparing the results to the expectation for a variety of different types of random motion.

CONCLUSIONS

We find that amoeboid behavior is well described by a special kind of random motion: Amoebae show a long persistence time ( approximately 10 min) beyond which they start to lose their direction; they move forward in a zig-zag manner; and they make turns every 1-2 min on average. They bias their motion by remembering the last turn and turning away from it. Interpreting the motion as consisting of runs and turns, the duration of a run and the amplitude of a turn are both found to be exponentially distributed. We show that this behavior greatly improves their chances of finding a target relative to performing a random walk. We believe that other eukaryotic cells may employ a strategy similar to Dictyostelium when seeking conditions or signal sources not yet within range of their detection system.

摘要

背景

真核细胞足够大,能够检测信号,然后通过区分细胞长度和宽度上的信号强度来朝向信号定向。变形虫、成纤维细胞、中性粒细胞和生长锥都以这种方式行动。然而,在没有信号的情况下,关于细胞运动和搜索行为知之甚少。单个细胞的运动是否最适合用随机游走描述?当单个细胞超出它们原本会朝向的信号范围时,它们是否有搜索策略?在这里,我们探究单个分离的盘基网柄菌属和多孢黏菌属变形虫在没有外部线索时是否会偏向其运动。

方法

我们将单个分离良好的盘基网柄菌属和多孢黏菌属细胞放置在无营养的琼脂表面,每隔10秒跟踪它们约10小时,然后分析它们在速度、转向角、持续长度和持续时间方面的运动,并将结果与各种不同类型随机运动的预期进行比较。

结论

我们发现变形虫行为可以用一种特殊的随机运动很好地描述:变形虫表现出较长的持续时间(约10分钟),超过这个时间它们开始失去方向;它们以之字形向前移动;并且它们平均每1 - 2分钟转弯一次。它们通过记住上一次转弯并远离该方向来使运动产生偏向。将运动解释为由直行和转弯组成,发现直行的持续时间和转弯的幅度均呈指数分布。我们表明,相对于进行随机游走,这种行为极大地提高了它们找到目标的机会。我们认为,其他真核细胞在寻找尚未在其检测系统范围内的条件或信号源时,可能采用类似于盘基网柄菌属的策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1232/2358978/3d9b0795d2ac/pone.0002093.g001.jpg

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