Sequence-structure based phylogeny of GPCR Class A Rhodopsin receptors.

Mol Phylogenet Evol

Centre for Biotechnology and Bioinformatics (CBB), School of Life Sciences, Jawaharlal Nehru Institute of Advanced Studies (JNIAS), 6th Floor, Buddha Bhawan, M.G. Road, Secunderabad 500003, Andhra Pradesh, India.

Published: May 2014

AI Article Synopsis

  • Current GPCR classification often fails with divergent sequences, so this study used sequence structure profile alignment via PROMALS3D to analyze the evolution of Class A Rhodopsin superfamily through MEGA 5 software.
  • The analysis employed both Neighbor-Joining and Maximum Likelihood methods, with 1000 bootstrap replicates to ensure reliability.
  • This research identified potential ligands for several Class A orphan and unclassified receptors, contributing to receptor re-classification and the understanding of cross-reactivity in signaling, which has implications for disease modulation.

Article Abstract

Current methods of G protein coupled receptors (GPCRs) phylogenetic classification are sequence based and therefore inappropriate for highly divergent sequences, sharing low sequence identity. In this study, sequence structure profile based alignment generated by PROMALS3D was used to understand the GPCR Class A Rhodopsin superfamily evolution using the MEGA 5 software. Phylogenetic analysis included a combination of Neighbor-Joining method and Maximum Likelihood method, with 1000 bootstrap replicates. Our study was able to identify potential ligand association for Class A Orphans and putative/unclassified Class A receptors with no cognate ligand information: GPR21 and GPR52 with fatty acids; GPR75 with Neuropeptide Y; GPR82, GPR18, GPR141 with N-arachidonylglycine; GPR176 with Free fatty acids, GPR10 with Tachykinin & Neuropeptide Y; GPR85 with ATP, ADP & UDP glucose; GPR151 with Galanin; GPR153 and GPR162 with Adrenalin, Noradrenalin; GPR146, GPR139, GPR142 with Neuromedin, Ghrelin, Neuromedin U-25 & Thyrotropin-releasing hormone; GPR171 with ATP, ADP & UDP Glucose; GPR88, GPR135, GPR161, GPR101with 11-cis-retinal; GPR83 with Tackykinin; GPR148 with Prostanoids, GPR109b, GPR81, GPR31with ATP & UTP and GPR150 with GnRH I & GnRHII. Furthermore, we suggest that this study would prove useful in re-classification of receptors, selecting templates for homology modeling and identifying ligands which may show cross reactivity with other GPCRs as signaling via multiple ligands play a significant role in disease modulation.

Download full-text PDF

Source
http://dx.doi.org/10.1016/j.ympev.2014.01.022DOI Listing

Publication Analysis

Top Keywords

gpcr class
8
class rhodopsin
8
fatty acids
8
atp adp
8
adp udp
8
udp glucose
8
sequence-structure based
4
based phylogeny
4
phylogeny gpcr
4
class
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!