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An attenuating role of a WASP-related protein WASP-B in the regulation of F-actin polymerization and pseudopod formation via the regulation of RacC during Dictyostelium chemotaxis

机译:WASP相关蛋白WASP-B在梭菌的趋化过程中通过RacC调控F-肌动蛋白聚合和假足形成的减弱作用

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摘要

The WASP family of proteins has emerged as important regulators that connect multiple signaling pathways to regulate the actin cytoskeleton. Dictyostelium cells express WASP, as well as a WASP related protein, WASP-B, endoded by wasB gene. WASP-B contains many of the domains present in WASP. Analysis of wild type, wasB null cells revealed that WASP-B is required for proper control of F-actin polymerization in response to a cAMP gradient. Due to the lack of tight control on actin polymerization, wasB null cells exhibited higher level of F-actin polymerization. wasB cells extend more de novo pseudopods laterally and their average life span is longer than those of wild type cells, causing more turns and inefficient chemotaxis. YFP-WASP-B appears to be uniformly distributed in the cytosol and shows no translocation to cortical membrane upon cAMP stimulation. Active RacC pull-down assay reveals that the level of active RacC in wasB cells is significantly higher than wild type cells. Moreover, the distribution of active RacC is not localized in wasB cells. We conclude that chemotaxis defects of wasB cells are likely to result from the aberrant regulation of RacC activation and localization.
机译:WASP蛋白家族已成为重要的调节因子,可连接多种信号通路来调节肌动蛋白的细胞骨架。 Dictyostelium细胞表达WASP以及被wasB基因修饰的WASP相关蛋白WASP-B。 WASP-B包含WASP中存在的许多域。对野生型wasB空细胞的分析表明,WASP-B是响应cAMP梯度正确控制F-肌动蛋白聚合所必需的。由于缺乏对肌动蛋白聚合的严格控制,waSB空细胞显示出更高水平的F-肌动蛋白聚合。 wasB -细胞在侧面从头开始延伸更多的伪足,其平均寿命比野生型细胞更长,从而导致更多的转向和低效趋化性。 YFP-WASP-B似乎均匀地分布在细胞质中,并且在cAMP刺激后未显示出向皮质膜的易位。活性RacC下拉试验表明,wasB -细胞中活性RacC的水平显着高于野生型细胞。此外,活性RacC的分布并不局限于wasB -细胞中。我们得出的结论是,wasB -细胞的趋化性缺陷很可能是由于RacC激活和定位的异常调节引起的。

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