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盘基网柄菌变形虫对环磷酸腺苷浓度梯度的趋化反应:支持环磷酸腺苷空间感知机制的证据。

Chemotactic responses of Dictyostelium discoideum amoebae to a cyclic AMP concentration gradient: evidence to support a spatial mechanism for sensing cyclic AMP.

作者信息

Tani T, Naitoh Y

机构信息

Department of Biology, Graduate College of Arts and Sciences, University of Tokyo, Komaba, Meguro-ku, Tokyo 153, Japan.

出版信息

J Exp Biol. 1999 Jan;202(Pt 1):1-12. doi: 10.1242/jeb.202.1.1.

DOI:10.1242/jeb.202.1.1
PMID:9841889
Abstract

The motile responses of Dictyostelium discoideum amoebae to a cyclic AMP (cAMP) concentration gradient were examined using a novel assay system. In this system, a cAMP concentration gradient was generated, while the overall cAMP concentration could be either increased or decreased in a chamber containing amoebae. The chemotactic responses of amoebae were examined immediately after they had been subjected to the cAMP concentration gradient. Amoebae moving in random directions in a reference solution ascended a cAMP concentration gradient after they had been exposed to the gradient irrespective of whether there was an increase or a decrease in the overall cAMP concentration. This strongly supports the idea that D. discoideum amoebae can sense a spatial cAMP gradient around them and that this causes their chemoaccumulation behavior. Ascending locomotion became less conspicuous when the amoebae were treated with a homogeneous cAMP solution for approximately 8 min before exposure to a cAMP gradient. This cAMP pretreatment reduced the sensitivity of the amoeba to a cAMP concentration gradient. The cAMP concentration gradient could be reversed in less than 30 s in this assay system, allowing the generation of a cAMP wave by accumulating amoebae to be mimicked. The ascending amoebae continued to move in the same direction for 1-2 min after the gradient had been reversed. This is consistent with the well-known observation that reversal of a cAMP concentration gradient experienced by the amoebae passing through a cAMP wave does not negate their chemotactic movement towards the accumulation center.

摘要

使用一种新型检测系统研究了盘基网柄菌变形虫对环磷酸腺苷(cAMP)浓度梯度的运动反应。在该系统中,产生了cAMP浓度梯度,而在含有变形虫的小室中,总的cAMP浓度可以升高或降低。在变形虫受到cAMP浓度梯度作用后,立即检测其趋化反应。在参考溶液中随机方向移动的变形虫在暴露于该梯度后,无论总的cAMP浓度是增加还是降低,都会上升到cAMP浓度梯度中。这有力地支持了这样一种观点,即盘基网柄菌变形虫能够感知其周围的空间cAMP梯度,并且这会导致它们的化学聚集行为。当变形虫在暴露于cAMP梯度之前用均匀的cAMP溶液处理约8分钟时,上升运动变得不那么明显。这种cAMP预处理降低了变形虫对cAMP浓度梯度的敏感性。在该检测系统中,cAMP浓度梯度可以在不到30秒内反转,从而能够模拟通过聚集变形虫产生的cAMP波。在梯度反转后,上升的变形虫会继续沿相同方向移动1 - 2分钟。这与一个众所周知的观察结果一致,即穿过cAMP波的变形虫所经历的cAMP浓度梯度的反转不会否定它们向聚集中心的趋化运动。

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