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盘基网柄菌的变形虫对趋化因子环磷酸腺苷(cAMP)时间梯度增加的反应是转向频率降低:这是变形虫趋化作用中一种时间机制的证据。

Amebae of Dictyostelium discoideum respond to an increasing temporal gradient of the chemoattractant cAMP with a reduced frequency of turning: evidence for a temporal mechanism in ameboid chemotaxis.

作者信息

Varnum-Finney B, Edwards K B, Voss E, Soll D R

机构信息

Department of Biology, University of Iowa, Iowa City 52242.

出版信息

Cell Motil Cytoskeleton. 1987;8(1):7-17. doi: 10.1002/cm.970080103.

Abstract

In an aggregation territory of Dictyostelium discoideum, outwardly moving, nondissipating waves of the chemoattractant cAMP sweep across each ameba. At the front of each wave, an ameba experiences an increasing temporal and a positive spatial gradient of cAMP. At the back of a wave, an ameba experiences a decreasing temporal and a negative spatial gradient of cAMP. Employing a perfusion chamber, we have mimicked the temporal dynamics of these waves in the absence of a spatial gradient and demonstrated that the frequency of lateral pseudopod formation and the frequency of turning are dramatically affected by the direction and dynamics of the temporal gradient. In addition, since an ameba will move in a directed fashion up a shallow, nonpulsatile gradient of cAMP, we also mimicked the increasing temporal gradient generated by an ameba moving up a shallow spatial gradient. The frequency of lateral pseudopod formation and the frequency of turning were depressed. Together, these results demonstrate that amebae can assess the direction of a temporal gradient of chemoattractant in the absence of a spatial gradient and alter both the frequency of pseudopod extension and turning, accordingly. Although these results do not rule out the involvement of a spatial mechanism in assessing a spatial gradient, they strongly suggest that the temporal dynamics of a cAMP wave or the temporal gradient generated by an ameba moving through a spatial gradient may play a major role in chemotaxis.

摘要

在盘基网柄菌的聚集区域,趋化因子环磷酸腺苷(cAMP)向外移动且不消散的波扫过每个变形虫。在每个波的前沿,一个变形虫经历着cAMP时间上递增且空间上正向的梯度。在波的后沿,一个变形虫经历着cAMP时间上递减且空间上负向的梯度。我们利用灌注室,在没有空间梯度的情况下模拟了这些波的时间动态,并证明侧向伪足形成的频率和转向频率会受到时间梯度的方向和动态的显著影响。此外,由于变形虫会沿着cAMP的浅的、非脉动梯度以定向方式移动,我们还模拟了变形虫沿着浅的空间梯度向上移动所产生的时间上递增的梯度。侧向伪足形成的频率和转向频率降低了。这些结果共同表明,变形虫在没有空间梯度的情况下能够评估趋化因子时间梯度的方向,并相应地改变伪足延伸频率和转向频率。尽管这些结果并不排除空间机制在评估空间梯度中的参与,但它们强烈表明cAMP波的时间动态或变形虫在空间梯度中移动所产生的时间梯度可能在趋化作用中起主要作用。

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