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首页> 外文期刊>Cell Regulation >A Highlights from MBoC Selection: PACRG, a protein linked to ciliary motility, mediates cellular signaling
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A Highlights from MBoC Selection: PACRG, a protein linked to ciliary motility, mediates cellular signaling

机译:MBoC选择的亮点:PACRG是一种与睫状运动相关的蛋白,可介导细胞信号传导

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摘要

Cilia are microtubule-based organelles that project from nearly all mammalian cell types. Motile cilia generate fluid flow, whereas nonmotile (primary) cilia are required for sensory physiology and modulate various signal transduction pathways. Here we investigate the nonmotile ciliary signaling roles of parkin coregulated gene (PACRG), a protein linked to ciliary motility. PACRG is associated with the protofilament ribbon, a structure believed to dictate the regular arrangement of motility-associated ciliary components. Roles for protofilament ribbon–associated proteins in nonmotile cilia and cellular signaling have not been investigated. We show that PACRG localizes to a small subset of nonmotile cilia in Caenorhabditis elegans , suggesting an evolutionary adaptation for mediating specific sensory/signaling functions. We find that it influences a learning behavior known as gustatory plasticity, in which it is functionally coupled to heterotrimeric G-protein signaling. We also demonstrate that PACRG promotes longevity in C. elegans by acting upstream of the lifespan-promoting FOXO transcription factor DAF-16 and likely upstream of insulin/IGF signaling. Our findings establish previously unrecognized sensory/signaling functions for PACRG and point to a role for this protein in promoting longevity. Furthermore, our work suggests additional ciliary motility-signaling connections, since EFHC1 (EF-hand containing 1), a potential PACRG interaction partner similarly associated with the protofilament ribbon and ciliary motility, also positively regulates lifespan.
机译:纤毛是基于微管的细胞器,几乎从所有哺乳动物细胞类型中投射出来。运动性纤毛产生流体流动,而感觉运动生理需要非运动性(初级)纤毛并调节各种信号转导途径。在这里,我们研究了与睫状运动相关的蛋白质parkin核心调节基因(PACRG)的非运动性纤毛信号传导作用。 PACRG与原丝带相关联,该结构被认为可决定与运动相关的睫状体成分的规则排列。尚未研究原丝带相关蛋白在非活动性纤毛和细胞信号传导中的作用。我们显示,PACRG定位于秀丽隐杆线虫的一小部分不活动的纤毛,提示进化适应性介导特定的感觉/信号功能。我们发现它影响一种称为味觉可塑性的学习行为,在功能上它与异三聚体G蛋白信号传导耦合。我们还证明,PACRG通过作用于寿命延长的FOXO转录因子DAF-16的上游以及可能在胰岛素/ IGF信号上游的上游,来提高秀丽隐杆线虫的寿命。我们的发现建立了PACRG以前无法识别的感觉/信号功能,并指出了该蛋白在促进长寿中的作用。此外,我们的工作建议附加的睫状运动信号传递连接,因为EFHC1(EF手含1)是与原丝功能带和睫状运动类似地相关的潜在PACRG相互作用伙伴,也可以有效调节寿命。

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