首页> 美国卫生研究院文献>The Journal of Biophysical and Biochemical Cytology >Dynacortin a Genetic Link between Equatorial Contractility and Global Shape Control Discovered by Library Complementation of a Dictyostelium discoideum Cytokinesis Mutant
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Dynacortin a Genetic Link between Equatorial Contractility and Global Shape Control Discovered by Library Complementation of a Dictyostelium discoideum Cytokinesis Mutant

机译:Dynacortin由盘基网柄菌胞质分裂的突变体库发现的赤道收缩力和全局形状控制之间的遗传联系

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摘要

We have developed a system for performing interaction genetics in Dictyostelium discoideum that uses a cDNA library complementation/multicopy suppression strategy. Chemically mutagenized cells were screened for cytokinesis-deficient mutants and one mutant was subjected to library complementation. Isolates of four different genes were recovered as modifiers of this strain's cytokinesis defect. These include the cleavage furrow protein cortexillin I, a novel protein we named dynacortin, an ezrin-radixin-moesin-family protein, and coronin. The cortexillin I locus and transcript were found to be disrupted in the strain, identifying it as the affected gene. Dynacortin is localized partly to the cell cortex and becomes enriched in protrusive regions, a localization pattern that is similar to coronin and partly dependent on RacE. During cytokinesis, dynacortin is found in the cortex and is somewhat enriched at the poles. Furthermore, it appears to be reduced in the cleavage furrow. The genetic interactions and the cellular distributions of the proteins suggest a hypothesis for cytokinesis in which the contraction of the medial ring is a function of spatially restricted cortexillin I and myosin II and globally distributed dynacortin, coronin, and RacE.
机译:我们已经开发了一种系统,用于在盘基网柄菌中进行相互作用遗传,该系统使用cDNA文库互补/多拷贝抑制策略。筛选化学诱变的细胞的胞质分裂缺陷型突变体,并对一种突变体进行文库互补。回收了四个不同基因的分离物作为该菌株胞质分裂缺陷的修饰物。这些包括卵沟蛋白Cortexillin I,我们将其命名为dynacortin的新型蛋白,ezrin-radixin-moesin-家族蛋白,以及coronin。发现该菌株中的皮质青霉素I基因座和转录物被破坏,将其鉴定为受影响的基因。动力蛋白部分定位于细胞皮层并富集于突出区域,该定位模式类似于冠蛋白,部分取决于RacE。在胞质分裂过程中,dynacortin在皮层中被发现,并在两极有些富集。此外,它在切割沟中似乎减少了。蛋白质的遗传相互作用和细胞分布提出了胞质分裂的假设,其中内侧环的收缩是空间受限的皮质醇I和肌球蛋白II以及全球分布的dynacortin,coronin和RacE的作用。

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