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一种降低盘基网柄菌中cGMP磷酸二酯酶活性的突变,通过改变趋化信号影响细胞运动。

A mutation that depresses cGMP phosphodiesterase activity in Dictyostelium affects cell motility through an altered chemotactic signal.

作者信息

Chandrasekhar A, Wessels D, Soll D R

机构信息

Department of Biological Sciences, University of Iowa, Iowa City 52242, USA.

出版信息

Dev Biol. 1995 May;169(1):109-22. doi: 10.1006/dbio.1995.1131.

Abstract

The streamer F (StmF) mutant of Dictyostelium discoideum is defective in cGMP-phosphodiesterase activity. In early aggregation territories, when individual cells chemotax toward aggregation centers prior to streaming, the average periodicity of surging of StmF cells is half that of wild-type cells. In addition, in the period between surges, which has been interpreted to include the peak and back of the wave, StmF cells abnormally remain nonmotile and retain their elongate shape. In contrast, in the period between surges wild-type cells form pseudopods randomly around their cell perimeter and take on an amorphous shape. Using a newly developed protocol for vitally staining and tracking individual mutant cells in unstained wild-type aggregation territories and individual wild-type cells in unstained StmF aggregation territories, we have found that mutant cells behave normally (i.e., like their predominant wild-type neighbors) in the deduced back of waves generated by wild-type cells. Conversely, wild-type cells behave aberrantly (i.e., like their predominant StmF neighbors) in the deduced back of waves generated by mutant cells. These results suggest that the defective behavior of StmF cells in early StmF aggregation territories is not due to a single cell defect in responsiveness, but, rather, is due either to the genesis of an aberrant cAMP wave or to the accumulation of a molecule which interferes with normal behavior in the back of the wave.

摘要

盘基网柄菌的流光F(StmF)突变体在cGMP磷酸二酯酶活性方面存在缺陷。在早期聚集区域,当单个细胞在流动之前向聚集中心进行趋化运动时,StmF细胞涌动的平均周期是野生型细胞的一半。此外,在涌动之间的时间段(这被解释为包括波峰和波谷),StmF细胞异常地保持不运动状态并维持其细长形状。相比之下,在涌动之间的时间段,野生型细胞在其细胞周边随机形成伪足并呈现无定形形状。通过使用一种新开发的方案,对未染色的野生型聚集区域中的单个突变细胞以及未染色的StmF聚集区域中的单个野生型细胞进行活体染色和追踪,我们发现突变细胞在野生型细胞产生的推断波谷中表现正常(即,与其主要的野生型邻居一样)。相反,野生型细胞在突变细胞产生的推断波谷中表现异常(即,与其主要的StmF邻居一样)。这些结果表明,StmF细胞在早期StmF聚集区域中的缺陷行为并非由于单个细胞的反应性缺陷,而是由于异常cAMP波的产生或干扰波谷正常行为的分子积累所致。

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