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首页> 外文期刊>Regulatory peptides. >The effects of C-terminal truncation of receptor activity modifying proteins on the induction of amylin receptor phenotype from human CTb receptors.
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The effects of C-terminal truncation of receptor activity modifying proteins on the induction of amylin receptor phenotype from human CTb receptors.

机译:受体活性修饰蛋白的C端截短对人CTb受体诱导胰岛淀粉样多肽受体表型的影响。

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Receptor activity modifying proteins (RAMPs) interact with calcitonin receptors to produce novel amylin receptor phenotypes. We have recently demonstrated that the short intracellular C-terminus of RAMPs plays a key role in the function of amylin receptors derived from the CTa calcitonin receptor through the use of chimeric RAMPs and RAMPs that are truncated at the C-terminus [15, Udawela M, Christopoulos G, Morfis M, Christopoulos A, Ye S, Tilakaratne N, Sexton PM. A critical role for the short intracellular C terminus in receptor activity modifying protein function. Mol Pharmacol 2006;70:1750-60., 18, Udawela M, Christopoulos G, Tilakaratne N, Christopoulos A, Albiston A, Sexton PM. Distinct receptor activity-modifying protein domains differentially modulate interaction with calcitonin receptors. Mol Pharmacol 2006;69:1984-89.]. The calcitonin receptor in humans is expressed as two major alternatively spliced isoforms termed CTa and CTb. Relatively little is known about how alternate splicing of the receptor affects the interaction between calcitonin receptors and RAMPs. We have examined the effect of RAMP truncation, through use of mutant constructs that delete the last 8 amino acids of each of the 3 known human RAMPs, and characterised these for interaction with CTb receptors through co-expression in COS-7 cells. As seen with the CTa receptor isoform, RAMP truncation caused a marked loss in induction of AMYb receptor phenotypes as characterised by (125)I-rat amylin radioligand binding assays and cAMP accumulation assays; the latter as a marker of receptor signalling. The effect was most pronounced for RAMP1 and RAMP2 deletion mutants, but attenuated responses were also observed with co-expressed RAMP3 deletion mutants. These data support a direct role for the RAMP C-terminus in the interaction of RAMP/calcitonin receptor complexes with intracellular accessory proteins involved in signalling and/or receptor trafficking.
机译:受体活性修饰蛋白(RAMPs)与降钙素受体相互作用,产生新的胰岛淀粉样多肽受体表型。我们最近证明,通过使用嵌合的RAMP和在C末端截短的RAMP,RAMP的短细胞内C末端在衍生自CTa降钙素受体的胰岛淀粉样多肽受体的功能中起着关键作用[15,Udawela M ,Christopoulos G,Morfis M,Christopoulos A,Ye S,Tilakaratne N,Sexton PM。细胞内短C末端在受体活性修饰蛋白功能中的关键作用。 Mol Pharmacol 2006; 70:1750-60。,18,Udawela M,Christopoulos G,Tilakaratne N,Christopoulos A,Albiston A,Sexton PM。不同的受体活性修饰蛋白结构域差异调节与降钙素受体的相互作用。 [Mol Pharmacol 2006; 69:1984-89]。降钙素受体在人类中表达为两种主要的剪接异构体,称为CTa和CTb。关于受体的可变剪接如何影响降钙素受体与RAMP之间的相互作用的知之甚少。我们已经通过使用突变体构建体检查了RAMP截短的作用,该突变体构建体删除了3种已知人类RAMPs的每一个的最后8个氨基酸,并通过在COS-7细胞中的共表达来表征它们与CTb受体的相互作用。从CTa受体同工型可以看出,RAMP截短导致AMYb受体表型的诱导显着减少,其特征在于(125)I-大鼠胰岛淀粉样多肽的放射性配体结合测定和cAMP积累测定。后者作为受体信号的标记。对于RAMP1和RAMP2缺失突变体,效果最为明显,但对于共表达的RAMP3缺失突变体,也观察到了减弱的应答。这些数据支持RAMP C末端在RAMP /降钙素受体复合物与参与信号传导和/或受体运输的细胞内辅助蛋白相互作用中的直接作用。

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