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RAMP2 与 CRF 受体之间的相互作用:受体亚型、剪接变体和细胞环境的影响。

Interactions between RAMP2 and CRF receptors: The effect of receptor subtypes, splice variants and cell context.

机构信息

School of Biosciences, University of Birmingham, Edgbaston, Birmingham B15 2TQ, UK.

Department of Pharmacology, University of Cambridge, Cambridge CB2 1PD, UK.

出版信息

Biochim Biophys Acta Biomembr. 2019 May 1;1861(5):997-1003. doi: 10.1016/j.bbamem.2019.02.008. Epub 2019 Feb 28.

Abstract

Corticotrophin releasing factor (CRF) acts via two family B G-protein-coupled receptors, CRFR1 and CRFR2. Additional subtypes exist due to alternative splicing. CRFR1α is the most widely expressed subtype and lacks a 29-residue insert in the first intracellular loop that is present in CRFR1β. It has been shown previously that co-expression of CRFR1β with receptor activity modifying protein 2 (RAMP2) in HEK 293S cells increased the cell-surface expression of both proteins suggesting a physical interaction as seen with RAMPs and calcitonin receptor-like receptor (CLR). This study investigated the ability of CRFR1α, CRFR1β and CRFR2β to promote cell-surface expression of FLAG-tagged RAMP2. Four different cell-lines were utilised to investigate the effect of varying cellular context; COS-7, HEK 293T, HEK 293S and [ΔCTR]HEK 293 (which lacks endogenous calcitonin receptor). In all cell-lines, CRFR1α and CRFR1β enhanced RAMP2 cell-surface expression. The magnitude of the effect on RAMP2 was dependent on the cell-line ([ΔCTR]HEK 293 > COS-7 > HEK 293T > HEK 293S). RT-PCR indicated this variation may relate to differences in endogenous RAMP expression between cell types. Furthermore, pre-treatment with CRF resulted in a loss of cell-surface FLAG-RAMP2 when it was co-expressed with CRFR1 subtypes. CRFR2β co-expression had no effect on RAMP2 in any cell-line. Molecular modelling suggests that the potential contact interface between the extracellular domains of RAMP2 and CRF receptor subtypes is smaller than that of RAMP2 and CRL, the canonical receptor:RAMP pairing, assuming a physical interaction. Furthermore, a specific residue difference between CRFR1 subtypes (glutamate) and CRFR2β (histidine) in this interface region may impair CRFR2β:RAMP2 interaction by electrostatic repulsion.

摘要

促肾上腺皮质素释放因子 (CRF) 通过两种 B 族 G 蛋白偶联受体 CRFR1 和 CRFR2 发挥作用。由于选择性剪接,还存在其他亚型。CRFR1α 是表达最广泛的亚型,在第一个细胞内环中缺乏 29 个残基插入,而 CRFR1β 中存在该插入。先前的研究表明,在 HEK 293S 细胞中共表达 CRFR1β 和受体活性修饰蛋白 2 (RAMP2) 可增加两种蛋白的细胞表面表达,表明存在物理相互作用,如 RAMP 与降钙素受体样受体 (CLR) 之间的相互作用。本研究探讨了 CRFR1α、CRFR1β 和 CRFR2β 促进 FLAG 标记的 RAMP2 细胞表面表达的能力。利用四种不同的细胞系来研究不同细胞环境的影响;COS-7、HEK 293T、HEK 293S 和 [ΔCTR]HEK 293(缺乏内源性降钙素受体)。在所有细胞系中,CRFR1α 和 CRFR1β 均增强了 RAMP2 的细胞表面表达。对 RAMP2 的影响程度取决于细胞系 ([ΔCTR]HEK 293>COS-7>HEK 293T>HEK 293S)。RT-PCR 表明,这种差异可能与细胞类型之间内源性 RAMP 表达的差异有关。此外,当与 CRFR1 亚型共表达时,CRF 预处理导致细胞表面 FLAG-RAMP2 丢失。在任何细胞系中,CRFR2β 共表达对 RAMP2 均没有影响。分子建模表明,假设存在物理相互作用,RAMP2 和 CRF 受体亚型的细胞外结构域之间的潜在接触界面小于 RAMP2 和经典受体:RAMP 配对的接触界面。此外,该界面区域中 CRFR1 亚型(谷氨酸)和 CRFR2β(组氨酸)之间的特定残基差异可能通过静电排斥作用损害 CRFR2β:RAMP2 相互作用。

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