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When Heterotrimeric G Proteins Are Not Activated by G Protein-Coupled Receptors: Structural Insights and Evolutionary Conservation

机译:当通过G蛋白偶联的受体未激活异映直氧化蛋白:结构见解和进化节约

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摘要

Heterotrimeric G proteins are signal-transducing switches conserved across eukaryotes. In humans, they work as critical mediators of intercellular communication in the context of virtually any physiological process. While G protein regulation by G protein-coupled receptors (GPCRs) is well-established and has received much attention, it has become recently evident that heterotrimeric G proteins can also be activated by cytoplasmic proteins. However, this alternative mechanism of G protein regulation remains far less studied than GPCR-mediated signaling. This Viewpoint focuses on recent advances in the characterization of a group of nonreceptor proteins that contain a sequence dubbed the “Gα-binding and -activating (GBA) motif”. So far, four proteins present in mammals [GIV (also known as Girdin), DAPLE, CALNUC, and NUCB2] and one protein in Caenorhabditis elegans (GBAS-1) have been described as possessing a functional GBA motif. The GBA motif confers guanine nucleotide exchange factor activity on Gαi subunits in vitro and activates G protein signaling in cells. The importance of this mechanism of signal transduction is highlighted by the fact that its dysregulation underlies human diseases, such as cancer, which has made the proteins attractive new candidates for therapeutic intervention. Here we discuss recent discoveries on the structural basis of GBA-mediated activation of G proteins and its evolutionary conservation and compare them with the better-studied mechanism mediated by GPCRs.
机译:异映直列化蛋白是信号转换开关,其跨越真核生物。在人类中,他们在几乎任何生理过程中作为细胞间通信的关键介质。虽然G蛋白偶联受体(GPCR)的G蛋白调节是良好的,但已经受到了很多关注,但最近显而易见的是,异抗体G蛋白也可以通过细胞质蛋白激活。然而,G蛋白调节的这种替代机制仍然比GPCR介导的信号传导更少。该观点侧重于近期含有序列被称为“Gα结合和活化(GBA)基序”的序列的一组非受体蛋白质的进展。到目前为止,哺乳动物中存在的四种蛋白质[GIV(也称为颈蛋白),雏菊,钙肌和NUCB2]和一种蛋白质杆菌(GBAS-1)中的一种蛋白质已被描述为具有功能性GBA基序。 GBA基序在体外赋予Gαi亚基的鸟嘌呤核苷酸交换因子活性,并在细胞中激活G蛋白信号传导。这种信号转导机制的重要性被突显了癌症,例如癌症,如癌症,这使得蛋白质具有吸引力的新候选人进行治疗干预。在这里,我们讨论了最近关于GBA介导的G蛋白的结构基础的发现及其进化保护,并将它们与GPCR介导的更好学习的机制进行比较。

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  • 来源
    《Biochemistry》 |2018年第3期|共3页
  • 作者单位

    Department of Biochemistry Boston University School of Medicine Boston Massachusetts 02118 United States;

    Department of Biochemistry Boston University School of Medicine Boston Massachusetts 02118 United States;

    Department of Biochemistry Boston University School of Medicine Boston Massachusetts 02118 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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