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首页> 外文期刊>Biochimica et biophysica acta. Molecular cell research >Identification of α-helix 4 (α4) of Rab11a as a novel Rab11-binding domain (RBD): Interaction of Rab11a with the Prostacyclin Receptor
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Identification of α-helix 4 (α4) of Rab11a as a novel Rab11-binding domain (RBD): Interaction of Rab11a with the Prostacyclin Receptor

机译:Rab11a的α-螺旋4(α4)的鉴定为新的Rab11结合结构域(RBD):Rab11a与前列环素受体的相互作用

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摘要

Abstract The cellular trafficking of numerous G protein-coupled receptors (GPCRs) is known to be regulated by Rab proteins that involves a direct protein:protein interaction between the receptor and the GTPase. In the case of the human prostacyclin receptor (hIP), it undergoes agonist-induced internalization and subsequent Rab11a-dependent recyclization involving an interaction between a Rab11-binding domain (RBD) localized within its carboxyl-tail domain with Rab11a. However, the GPCR-interacting domain on Rab11a itself is unknown. Hence, we sought to identify the region within Rab11a that mediates its interaction with the RBD of the hIP. The α4 helix region of Rab11 was identified as a novel binding domain for the hIP, a site entirely distinct from the Switch I/Switch II -regions that act as specific binding domain for most other Rab and Ras-like GTPase interactants. Specifically, Glu 138 within α4 helix of Rab11a appears to contact with key residues (e.g. Lys 304 ) within the RBD of the hIP, where such contacts differ depending on the agonist-activated versus -inactive status of the hIP. Through mutational studies, supported by in silico homology modelling of the inactive and active hIP:Rab11a complexes, a mechanism is proposed to explain both the constitutive and agonist-induced binding of Rab11a to regulate intracellular trafficking of the hIP. Collectively, these studies are not only the first to identify α4 helix of Rab11a as a protein binding domain on the GTPase but also reveal novel mechanistic insights into the intracellular trafficking of the hIP, and potentially of other members of the GPCR superfamily, involving Rab11-dependent mechanisms. Highlights ? Interaction between Rab11a and a G protein-coupled receptor (GPCR) characterized. ? α4 helix of Rab11a discovered to mediate interaction with the prostacyclin receptor. ? α4 helix of Rab11a revealed as a novel protein binding domain on Rab11a. ? Novel binding domain different to Switch I/II-domain on other Rab/Ras-like GTPases ? New mechanistic insights into Rab11-trafficking of the hIP &/or other GPCRs revealed. ]]>
机译:摘要已知涉及涉及直接蛋白质:受体与GTP酶之间的蛋白质相互作用的Rab蛋白来调节众多G蛋白偶联受体(GPCR)的细胞贩运。在人前列环素受体(臀部)的情况下,它经历激动剂诱导的内化和随后的RAB11A依赖性再循环,涉及与RAB11a局部局部化的RAB11结合结构域(RBD)之间的相互作用。然而,Rab11a本身上的GPCR相互作用域未知。因此,我们试图识别Rab11a内的区域,介导其与髋关节的RBD的相互作用。 Rab11的α4螺旋区域被鉴定为髋髋的新型结合结构域,一个完全不同于开关I /开关II -Regions的部位,其用作大多数其他RAB和RA样GTP酶交互剂的特异性结合结构域。具体地,Rab11a的α4螺旋内的Glu 138似乎与臀部的RBD内的钥匙残留物(例如Lys 304)接触,其中这种触点根据激动剂活化与臀部的活性状态而不同。通过突变研究,通过在无活性和活性髋部的硅同源性建模中支持:Rab11a络合物,提出了一种机制来解释rab11a的组成型和激动剂诱导的结合来调节细胞内运输髋的髋骨。总的来说,这些研究不仅是鉴定Rab11a的α4螺旋作为GTPAse上的蛋白质结合结构域的研究,而且还揭示了新的机械洞察力对髋关节的细胞内贩运,并且可能是GPCR超家族的其他成员,涉及Rab11-依赖机制。强调 ?表征Rab11a和G蛋白偶联受体(GPCR)之间的相互作用。还Rab11a的α4螺旋发现与前列环素受体介导的相互作用。还Rab11a的α4螺旋显示为Rab11a上的新型蛋白质结合结构域。还新型绑定结构域不同于在其他RAB / RAS样GTP酶上切换I / II结构域?新的机械洞察Rab11贩运髋关节& /或其他GPCR透露。 ]]>

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