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Dissection of Functional Residues in Receptor Activity-Modifying Proteins Through Phylogenetic and Statistical Analyses

机译:通过系统发育和统计分析解剖受体活性蛋白中的功能残基

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摘要

Type I and type-II functional divergences have been stated to highlight specific residues carrying out differential functions in evolutionary-divergent protein clusters from a single common ancestor. Briefly, type I analysis is based on residue constraints reflecting a gain of function just in one cluster of an entire family of proteins; while the type-II approach is based on residue constraints showing a different chemical nature in every cluster of a protein family. This last evidence is understood as differential functionality among clusters. The Receptor Activity-Modifying Proteins constitute a family characterized by its paralogous distribution in vertebrates. They are known as G-Protein Coupled Receptor modulators. Although several studies have determined their involvement in ligand binding, specificity, and enhancement of signal transduction, the responsible residues supporting those functions are unclear. Using different bioinformatic approaches, we predicted residues involved in different RAMP functional tasks. Many residues localized in an extracellular coil of RAMP proteins were predicted to be under functional divergence suggesting a gain of function in their respective proteins. Interestingly, the transmembrane region also showed important results for residues playing relevant roles where most of them showed a biased distribution on the structure. A relevant role was conferred by the enrichment of type-II residues observed in their sequences. We show a collection of residues explaining possible gain of function and differential functionality in RAMP proteins. These residues are still experimentally unexplored with regards to functionality. Finally, an evolutionary history could be discerned. Mainly, the RAMP2 cluster has evolved in a higher manner than other RAMP clusters. However, a deacceleration in the aminoacid substitution rate of RAMP2 was observed in mammals. Such effect could be caused by the co-evolution of ligands and receptors interacting with RAMP2 through evolution and/or the specialization of this cluster in GPCR modulation.
机译:已经指出,I型和II型功能差异突出显示了来自单个共同祖先的进化差异蛋白簇中执行差异功能的特定残基。简而言之,I型分析基于残基限制条件,反映出仅在整个蛋白质家族的一个簇中功能的获得;而II型方法基于残基限制条件,在蛋白质家族的每个簇中均显示出不同的化学性质。最后的证据被理解为集群之间的差异功能。受体活性修饰蛋白构成一个家族,其特征是其在脊椎动物中的同源分布。它们被称为G蛋白偶联受体调节剂。尽管一些研究已经确定它们参与配体结合,特异性和信号转导的增强,但是支持这些功能的负责任残基尚不清楚。使用不同的生物信息学方法,我们预测了参与不同RAMP功能任务的残基。预测位于RAMP蛋白质胞外线圈中的许多残基在功能差异下,表明它们各自蛋白质的功能增强。有趣的是,跨膜区域还显示出重要的结果,表明残基起着相关的作用,其中大多数残基在结构上呈偏向分布。在其序列中观察到的II型残基的富集赋予了相关的作用。我们显示了一个残基集合,解释了RAMP蛋白质中功能和差异功能的可能获得。这些残基在功能性方面仍未进行实验性探索。最后,可以辨别出进化史。主要是,RAMP2群集比其他RAMP群集具有更高的演进方式。然而,在哺乳动物中观察到RAMP2的氨基酸取代率降低。这种作用可能是由于配体和受体通过在GPCR调控中该簇的进化和/或特化而与RAMP2相互作用而共同引起的。

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