Evolutionary and Comparative Genomics to Drive Rational Drug Design, with Particular Focus on Neuropeptide Seven-Transmembrane Receptors

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초록

Seven transmembrane receptors (7TMRs), also known as G protein-coupled receptors, are popular targets of drug development, particularly 7TMR systems that are activated by peptide ligands. Although many pharmaceutical drugs have been discovered via conventional bulk analysis techniques the increasing availability of structural and evolutionary data are facilitating change to rational, targeted drug design. This article discusses the appeal of neuropeptide-7TMR systems as drug targets and provides an overview of concepts in the evolution of vertebrate genomes and gene families. Subsequently, methods that use evolutionary concepts and comparative analysis techniques to aid in gene discovery, gene function identification, and novel drug design are provided along with case study examples.

키워드

Neuropeptide; 7TMR; G protein-coupled receptor; Coevolution; Gene duplication; Whole genome duplication; Evolutionary history; PROTEIN-COUPLED RECEPTORS; GONADOTROPIN-RELEASING-HORMONE; GALANIN-LIKE PEPTIDE; EN-BLOC DUPLICATION; MOLECULAR EVOLUTION; EARLY VERTEBRATES; ENVELOPE GENE; ORPHAN GPCRS; 2 ROUNDS; FAMILY
제목
Evolutionary and Comparative Genomics to Drive Rational Drug Design, with Particular Focus on Neuropeptide Seven-Transmembrane Receptors
저자
Furlong, Michael; Seong, Jae Young
DOI
10.4062/biomolther.2016.199
발행일
2017-01
유형
Review
저널명
Biomolecules & Therapeutics
권
25
호
1
페이지
57 ~ 68