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Jae-young Sung

Korea University · Medicine

About the Lab

Professor Jae-young Sung's research lab specializes in the molecular and evolutionary biology of neuropeptide G protein-coupled receptors (GPCRs) and their endogenous ligands. The lab investigates the structure-function relationships of orphan and neuropeptide GPCRs, focusing on receptor activation mechanisms, ligand specificity, and the development of selective pharmacological tools. Key research directions include the identification of endogenous ligands for orphan GPCRs, the evolutionary origins of neuropeptide systems, and the preclinical development of GPCR-targeted therapeutics for mood and metabolic disorders.

neuropeptide GPCRsreceptor pharmacologyevolutionary genomicsneuropsychiatric disordersligand-receptor interactions

Research Overview

Papers
185
Total Citations
5,299
Papers (5y)
28
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
28total
2022
2023
2024
2025
2026
Citations per year (5y)
124total
20222023202420252026

Selected Papers

15
1
Article|142 citations·2008
Identification of Farnesyl Pyrophosphate and N-Arachidonylglycine as Endogenous Ligands for GPR92
Da Young Oh, Jung Min Yoon, Mi Jin Moon, Jong‐Ik Hwang, Han Choe, Ju‐Yeon Lee, Jae Il Kim, Sunoh Kim, Hyewhon Rhim, David K. O’Dell, James M. Walker, Heung Sik Na
SJR Q1Journal of Biological ChemistryOA

A series of small compounds acting at the orphan G protein-coupled receptor GPR92 were screened using a signaling pathway-specific reporter assay system. Lipid-derived molecules including farnesyl pyrophosphate (FPP), N-arachidonylglycine (NAG), and lysophosphatidic acid were found to activate GPR92. FPP and lysophosphatidic acid were able to activate both G(q/11)- and G(s)-mediated signaling pathways, whereas NAG activated only the G(q/11)-mediated signaling pathway. Computer-simulated modeling

Sensory SystemsNeuroscience
2
Article|101 citations·2010
Revisiting the evolution of gonadotropin-releasing hormones and their receptors in vertebrates: Secrets hidden in genomes
Dong-Kyu Kim, Eun Bee Cho, Mi Jin Moon, Sumi Park, Jong‐Ik Hwang, Olivier Kah, Stacia A. Sower, Hubert Vaudry, Jae Young Seong
SJR Q1General and Comparative Endocrinology
Reproductive MedicineMedicine
3
Article|85 citations·2010
Molecular coevolution of kisspeptins and their receptors from fish to mammals
Haet Nim Um, Ji Man Han, Jong‐Ik Hwang, Sung In Hong, Hubert Vaudry, Jae Young Seong
SJR Q1Annals of the New York Academy of Sciences

Kisspeptin and its receptor, GPR54, play a pivotal role in vertebrate reproduction. Recent advances in bioinformatic tools combined with comparative genomics have led to the identification of a large number of kisspeptin and GPR54 genes in a variety of vertebrate species. Genome duplications may have produced at least two isoforms of both ligand (KiSS1 and KiSS2) and receptor (GPR54-1 and GPR54-2). Additional isoforms of kisspeptin (KiSS1b) and GPR54 (GPR54-1b) have been found in an amphibian sp

Reproductive MedicineMedicine
4
Article|79 citations·2016
Development of Spexin-based Human Galanin Receptor Type II-Specific Agonists with Increased Stability in Serum and Anxiolytic Effect in Mice
Arfaxad Reyes‐Alcaraz, Yoo-Na Lee, Gi Hoon Son, Nam Hoon Kim, Dong-Kyu Kim, Seongsik Yun, Dong Hoon Kim, Jong‐Ik Hwang, Jae Young Seong
SJR Q1Scientific ReportsOA

The novel neuropeptide spexin (SPX) was discovered to activate galanin receptor 2 (GALR2) and 3 (GALR3) but not galanin receptor 1 (GALR1). Although GALR2 is known to display a function, particularly in anxiety, depression, and appetite regulation, the further determination of its function would benefit from a more stable and selective agonist that acts only at GALR2. In the present study, we developed a GALR2-specific agonist with increased stability in serum. As galanin (GAL) showed a low affi

Cellular and Molecular NeuroscienceNeuroscience
5
Article|66 citations·2013
Expansion of Secretin-Like G Protein-Coupled Receptors and Their Peptide Ligands via Local Duplications Before and After Two Rounds of Whole-Genome Duplication
Jong‐Ik Hwang, Mi Jin Moon, Sumi Park, Dong‐Kyu Kim, Eun Bee Cho, Nui Ha, Gi Hoon Son, Kyung‐Jin Kim, Hubert Vaudry, Jae Young Seong
SJR Q1Molecular Biology and EvolutionOA

In humans, the secretin-like G protein-coupled receptor (GPCR) family comprises 15 members with 18 corresponding peptide ligand genes. Although members have been identified in a large variety of vertebrate and nonvertebrate species, the origin and relationship of these proteins remain unresolved. To address this issue, we employed large-scale genome comparisons to identify genome fragments with conserved synteny and matched these fragments to linkage groups in reconstructed early gnathostome anc

Molecular BiologyBiochemistry, Genetics and Molecular Biology
6
Article|52 citations·2019
Spexin-Based Galanin Receptor Type 2 Agonist for Comorbid Mood Disorders and Abnormal Body Weight
Seongsik Yun, Arfaxad Reyes‐Alcaraz, Yoo-Na Lee, Hyo Jeong Yong, Jeewon Choi, Byung‐Joo Ham, Jong‐Woo Sohn, Dong Hoon Kim, Gi Hoon Son, Hyun Kim, Soon Gu Kwon, Dong‐Sik Kim
SJR Q2Frontiers in NeuroscienceOA

Despite the established comorbidity between mood disorders and abnormal eating behaviors, the underlying molecular mechanism and therapeutics remain to be resolved. Here, we show that a spexin-based galanin receptor type 2 agonist (SG2A) simultaneously normalized mood behaviors and body weight in corticosterone pellet-implanted (CORTI) mice, which are underweight and exhibit signs of anhedonia, increased anxiety, and depression. Administration of SG2A into the lateral ventricle produced antidepr

Cellular and Molecular NeuroscienceNeuroscience
7
Article|50 citations·2008
Molecular cloning of the bullfrog kisspeptin receptor GPR54 with high sensitivity to Xenopus kisspeptin
Jung Sun Moon, Yeo Reum Lee, Da Young Oh, Jong‐Ik Hwang, Ju Yeon Lee, Jae Il Kim, Hubert Vaudry, Hyuk Bang Kwon, Jae Young Seong
SJR Q2Peptides
Reproductive MedicineMedicine
8
Article|47 citations·2012
Molecular Coevolution of Neuropeptides Gonadotropin-Releasing Hormone and Kisspeptin with their Cognate G Protein-Coupled Receptors
Dong‐Kyu Kim, Eun Bee Cho, Mi Jin Moon, Sumi Park, Jong‐Ik Hwang, Jean-Luc Do Rego, Hubert Vaudry, Jae Young Seong
SJR Q2Frontiers in NeuroscienceOA

The neuropeptides gonadotropin-releasing hormone (GnRH) and kisspeptin (KiSS), and their receptors gonadotropin-releasing hormone receptor (GnRHR) and kisspeptin receptor (KiSSR) play key roles in vertebrate reproduction. Multiple paralogous isoforms of these genes have been identified in various vertebrate species. Two rounds of genome duplication in early vertebrates likely contributed to the generation of these paralogous genes. Genome synteny and phylogenetic analyses in a variety of vertebr

Reproductive MedicineMedicine
9
Article|46 citations·2020
Serum FAM19A5 levels: A novel biomarker for neuroinflammation and neurodegeneration in major depressive disorder
Kyu‐Man Han, Woo‐Suk Tae, Aram Kim, Youbin Kang, Wooyoung Kang, June Kang, Yong‐Ku Kim, Bongcheol Kim, Jae Young Seong, Byung‐Joo Ham
SJR Q1Brain Behavior and Immunity
Biological PsychiatryNeuroscience
10
Article|44 citations·2003
Ala/Thr201 in Extracellular Loop 2 and Leu/Phe290 in Transmembrane Domain 6 of Type 1 Frog Gonadotropin-Releasing Hormone Receptor Confer Differential Ligand Sensitivity and Signal Transduction
Jae Young Seong, Li Wang, Da Young Oh, Oim Yun, Kaushik Maiti, Jian Hua Li, Jae Mog Soh, Hueng Sik Choi, Kyungjin Kim, Hubert Vaudry, Hyuk Bang Kwon
SJR Q1EndocrinologyOA

Recently, we have identified three distinct types of bullfrog GnRH receptor (designated bfGnRHR-1, bfGnRHR-2, and bfGnRHR-3). In the present study, we have isolated three GnRHR clones in Rana dybowskii (dyGnRHR-1, dyGnRHR-2, and dyGnRHR-3). Despite high homology of dyGnRHRs with the corresponding bfGnRHRs, dyGnRHRs revealed different signaling pathways and ligand sensitivity compared with the bfGnRHR counterparts. Activation of dyGnRHRs with GnRH stimulated cAMP-mediated gene expression. However

Reproductive MedicineMedicine
11
Article|43 citations·2015
Prevertebrate Local Gene Duplication Facilitated Expansion of the Neuropeptide GPCR Superfamily
Seongsik Yun, Michael Furlong, Mikang Sim, Gyu Seok Cho, Sumi Park, Eun Bee Cho, Arfaxad Reyes‐Alcaraz, Jong‐Ik Hwang, Jaebum Kim, Jae Young Seong
SJR Q1Molecular Biology and EvolutionOA

In humans, numerous genes encode neuropeptides that comprise a superfamily of more than 70 genes in approximately 30 families and act mainly through rhodopsin-like G protein-coupled receptors (GPCRs). Two rounds of whole-genome duplication (2R WGD) during early vertebrate evolution greatly contributed to proliferation within gene families; however, the mechanisms underlying the initial emergence and diversification of these gene families before 2R WGD are largely unknown. In this study, we analy

Cellular and Molecular NeuroscienceNeuroscience
12
Review|42 citations·2006
Molecular evolution of neuropeptide receptors with regard to maintaining high affinity to their authentic ligands
Hyun-Ju Cho, Sujata Acharjee, Mi Jin Moon, Da Young Oh, Hubert Vaudry, Hyuk Bang Kwon, Jae Young Seong
SJR Q1General and Comparative Endocrinology
Cellular and Molecular NeuroscienceNeuroscience
13
Article|41 citations·2003
Differential G protein coupling preference of mammalian and nonmammalian gonadotropin-releasing hormone receptors
Da Young Oh, Li Wang, Ryun S. Ahn, Jae‐Yong Park, Jae Young Seong, Hyuk Bang Kwon
SJR Q1Molecular and Cellular Endocrinology
Reproductive MedicineMedicine
14
Article|40 citations·2019
FAM19A5 Expression During Embryogenesis and in the Adult Traumatic Brain of FAM19A5-LacZ Knock-in Mice
Anu Shahapal, Eun Bee Cho, Hyo Jeong Yong, Inyoung Jeong, Hoyun Kwak, Jong‐Dae Lee, Won‐Kyum Kim, Bongcheol Kim, Hae‐Chul Park, Won Suk Lee, Hyun Kim, Jong‐Ik Hwang
SJR Q2Frontiers in NeuroscienceOA

FAM19A5 is a secretory protein that is predominantly expressed in the brain. Although the <i>FAM19A5</i> gene has been found to be associated with neurological and/or psychiatric diseases, only limited information is available on its function in the brain. Using <i>FAM19A5-LacZ</i> knock-in mice, we determined the expression pattern of FAM19A5 in developing and adult brains and identified cell types that express FAM19A5 in naïve and traumatic brain injury (TBI)-induced brains. According to X-gal

NeurologyNeuroscience
15
Article|39 citations·2004
Identification of Amino Acid Residues That Direct Differential Ligand Selectivity of Mammalian and Nonmammalian V1a Type Receptors for Arginine Vasopressin and Vasotocin
Sujata Acharjee, Jean-Luc Do-Rego, Da Young Oh, Ryun S. Ahn, Han Choe, Hubert Vaudry, Kyungjin Kim, Jae Young Seong, Hyuk Bang Kwon
SJR Q1Journal of Biological ChemistryOA

Arginine vasotocin (VT) is the ortholog in all nonmammalian vertebrates of arginine vasopressin (AVP) in mammals. We have previously cloned an amphibian V1atype vasotocin receptor (VT1R) that exhibited higher sensitivity for VT than AVP, while the mammalian V1a type receptor (V1aR) responded better to AVP than VT. In the present study, we identified the amino acid residues that confer differential ligand selectivity for AVP and VT between rat V1aR and bullfrog VT1R (bfVT1R). A chimeric rat V1aR

Social PsychologyPsychology

Research Areas

Molecular BiologyReproductive MedicineCellular and Molecular NeuroscienceOncologyEndocrinology, Diabetes and MetabolismCancer Research

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