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Jaeyong Han

Seoul National University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Jaeyong Han's research lab specializes in avian reproductive biotechnology, with a primary focus on primordial germ cells (PGCs) and germline chimera technology in chickens. The lab develops advanced techniques for nonviral transgenesis, germ cell transplantation, and in vitro PGC culture to enable efficient genetic modification in poultry. Key research directions include identifying novel PGC markers, optimizing germ cell transfer systems, and enhancing germline transmission rates for applications in agriculture, medicine, and biomedical modeling.

primordial germ cellsgermline chimeratransgenic poultryPGC culturegerm cell transplantation

Research Overview

Papers
421
Total Citations
7,155
Papers (5y)
51
Primary Field
生化学・遺伝学・分子生物学

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
51total
2022
2023
2024
2025
2026
Citations per year (5y)
259total
20222023202420252026

Selected Papers

15
1
Article|196 citations·2012
piggyBac transposition into primordial germ cells is an efficient tool for transgenesis in chickens
Tae Sub Park, Jae Yong Han
SJR Q1Proceedings of the National Academy of SciencesOA

Transgenic birds embody one of the most potent and exciting research tools in biotechnology for agriculture, medicine, and model animals. To date, retrovirus- or lentivirus-mediated transgenesis has been established in chickens and quail. However, despite having a valid technique for viral transduction to achieve transgenic birds, many obstacles exist for practical applications because of relatively low and variable rates of germ-line transmission and transgenic offspring showing transgene silen

GeneticsBiochemistry, Genetics and Molecular Biology
2
Review|113 citations·2008
Germ cells and transgenesis in chickens
Jae Yong Han
SJR Q1Comparative Immunology Microbiology and Infectious Diseases
GeneticsBiochemistry, Genetics and Molecular Biology
3
Article|103 citations·1997
PRODUCTION OF GERMLINE CHIMERIC CHICKENS BY TRANSFER OF CULTURED PRIMORDIAL GERM CELLS
Il‐Kuk Chang, Dong Kee Jeong, Yeong Ho Hong, Tae Sub Park, Yangha Kim Moon, Tadao Ohno, Jae Yong Han
SJR Q1Cell Biology International

Primordial germ cells (PGCs) from stage 27 (5.5-day-old) Korean native ogol chicken embryonic germinal ridges were cultured in vitro for 5 days. As in in vivo culture, these cultured PGCs were expected to have already passed beyond the migration stage. Approximately 200 of these PGCs were transferred into 2.5-day-old white leghorn embryonic blood stream, and then the recipient embryos were incubated until hatching. The rate of hatching was 58.8% in the manipulated eggs. Six out of 60 recipients

GeneticsBiochemistry, Genetics and Molecular Biology
4
Article|103 citations·2003
Improved Germline Transmission in Chicken Chimeras Produced by Transplantation of Gonadal Primordial Germ Cells into Recipient Embryos1
Tae Sub Park, Dong Kee Jeong, Jin Nam Kim, Gwon Hwa Song, Yeong Ho Hong, Jeong Mook Lim, Jae Yong Han
SJR Q1Biology of ReproductionOA

In the avian species, germline chimera production could be possible by transfer of donor germ cells into the blood vessel of recipient embryos. This study was conducted to establish an efficient transfer system of chicken gonadal primordial germ cells (gPGCs) for producing the chimeras having a high capacity of germline transmission. Gonadal PGCs retrieved from 5.5-day-old embryos (stage 28) of Korean Ogol chicken (KOC with i/i gene) were transferred into the dorsal aorta of 2.5-day-old embryos

GeneticsBiochemistry, Genetics and Molecular Biology
5
Article|94 citations·2008
Reproduction of Wild Birds via Interspecies Germ Cell Transplantation1
Seok Jin Kang, Jin Won Choi, Sun Young Kim, Kyung Je Park, Tae Min Kim, Young‐Mock Lee, Heebal Kim, Jeong Mook Lim, Jae Yong Han
SJR Q1Biology of ReproductionOA

The present study was conducted to apply an interspecies germ cell transfer technique to wild bird reproduction. Pheasant (Phasianus colchicus) primordial germ cells (PGCs) retrieved from the gonads of 7-day-old embryos were transferred to the bloodstream of 2.5-day-old chicken (Gallus gallus) embryos. Pheasant-to-chicken germline chimeras hatched from the recipient embryos, and 10 pheasants were derived from testcross reproduction of the male chimeras with female pheasants. Gonadal migration of

GeneticsBiochemistry, Genetics and Molecular Biology
6
Article|89 citations·2005
Development of Novel Markers for the Characterization of Chicken Primordial Germ Cells
Jin Gyoung Jung, Duk‐Kyung Kim, Tae Sub Park, Seon Duk Lee, Jeong Mook Lim, Jae Yong Han
SJR Q1Stem Cells

This study was undertaken to develop novel markers for chicken primordial germ cells (PGCs), which are of potentially enormous value in transgenic research. Gonadal cells collected from 5.5-day-old chicken embryos were cultured in a Dulbecco's minimal essential medium and the PGC colonies formed during the primary culture period were subcultured three times. Characterization of the PGCs with the candidate marker reagents was performed on the mixed cell population 2 hours after seeding, after the

GeneticsBiochemistry, Genetics and Molecular Biology
7
Article|85 citations·2015
DAZL Expression Explains Origin and Central Formation of Primordial Germ Cells in Chickens
Hyung Chul Lee, Hee Jung Choi, Hyo Gun Lee, Jeong Mook Lim, Tamao Ono, Jae Yong Han
SJR Q2Stem Cells and Development

The timing and biological events associated with germ cell specification in chickens have not been determined yet. In this study, we report the origin of primordial germ cells (PGCs) and germ plasm dynamics through investigation of the expression of the chicken homolog of deleted in azoospermia-like (cDAZL) gene during germ cell specification. Asymmetric localization of germ plasm in the center of oocytes from preovulatory follicle stages leads to PGCs being formed in the center. During cleavage

GeneticsBiochemistry, Genetics and Molecular Biology
8
Article|82 citations·2002
Production of germline chimeras by transfer of chicken gonadal primordial germ cells maintained in vitro for an extended period
Jae Yong Han, Tae Sub Park, Yeong Ho Hong, Dong Kee Jeong, Jin Nam Kim, Ki Dong Kim, Jeong Mook Lim
SJR Q1Theriogenology
GeneticsBiochemistry, Genetics and Molecular Biology
9
Article|78 citations·2006
A Testis-Mediated Germline Chimera Production Based on Transfer of Chicken Testicular Cells Directly into Heterologous Testes1
Young‐Mock Lee, Jin Gyoung Jung, Jin Nam Kim, Tae Sub Park, Tae Min Kim, Sang Su Shin, Dae Kyung Kang, Jeong Mook Lim, Jae Yong Han
SJR Q1Biology of ReproductionOA

In this study, we proposed a testis-mediated germline chimera production system based on the transplantation of testicular cells directly into heterologous testes. The testicular cells of juvenile (4-wk-old) or adult (24-wk-old) Korean Ogol chickens with a recessive pigmentation inhibitory gene, with or without prior culture, were injected (2 x 10(7) cells/head) into the seminiferous tubules of juvenile or adult recipients with White Leghorn with a dominant pigmentation inhibitory gene in a 2 x

GeneticsBiochemistry, Genetics and Molecular Biology
10
Article|74 citations·2015
Deposition of bioactive human epidermal growth factor in the egg white of transgenic hens using an oviduct‐specific minisynthetic promoter
Tae Sub Park, Hyo Gun Lee, Jong Kook Moon, Hong Jo Lee, Jong Won Yoon, Bit Na Rae Yun, Sang‐Chul Kang, Jiho Kim, Hyunil Kim, Jae Yong Han, Beom Ku Han
SJR Q1The FASEB Journal

Currently, transgenic animals have found a wide range of industrial applications and are invaluable in various fields of basic research. Notably, deposition of transgene-encoded proteins in the egg white (EW) of hens affords optimal production of genetically engineered biomaterials. In the present study, we developed a minisynthetic promoter modulating transgene transcription specifically in the hen's oviduct, and assayed the bioactivity of human epidermal growth factor (hEGF) driven by that pro

GeneticsBiochemistry, Genetics and Molecular Biology
11
Article|73 citations·2003
Birth of germline chimeras by transfer of chicken embryonic germ (EG) cells into recipient embryos
Tae Sub Park, Yeong Ho Hong, Se Chang Kwon, Jeong Mook Lim, Jae Yong Han
SJR Q2Molecular Reproduction and Development

This study reports for the first time the production of chicken germline chimeras by transfer of embryonic germ (EG) cells into recipient embryos of different strain. EG cells were established by the subculture of gonadal tissue cells retrieved from stage 28 White Leghorn (WL) embryos with I/I gene. During primary culture (P(0)), gonadal primordial germ cells (gPGCs) in the stromal cells began to form colonies after 7 days in culture with significant (P < 0.0001) increase in cell population. Col

GeneticsBiochemistry, Genetics and Molecular Biology
12
Article|68 citations·2019
Targeted gene insertion into Z chromosome of chicken primordial germ cells for avian sexing model development
Hong Jo Lee, Jong Won Yoon, Kyung Min Jung, Young‐Min Kim, Jin Se Park, Kyung Youn Lee, Kyung Je Park, Young Sun Hwang, Young Hyun Park, Deivendran Rengaraj, Jae Yong Han
SJR Q1The FASEB Journal

Clustered regularly interspaced short palindromic repeats (CRISPR) and CRISPR-associated protein 9 (Cas9) have facilitated the production of genome-edited animals for use as models. Because of their unique developmental system, avian species offer many advantages as model vertebrates. Here, we report the development of novel chicken models using the CRISPR/Cas9-mediated nonhomologous end joining repair pathway in chicken primordial germ cells (PGCs). Through the introduction of a donor plasmid c

Molecular BiologyBiochemistry, Genetics and Molecular Biology
13
Article|61 citations·2011
Expression Patterns and miRNA Regulation of DNA Methyltransferases in Chicken Primordial Germ Cells
Deivendran Rengaraj, Bo Ram Lee, Sang In Lee, Hee Won Seo, Jae Yong Han
SJR Q1PLoS ONEOA

DNA methylation is widespread in most species, from bacteria to mammals, and is crucial for genomic imprinting, gene expression, and embryogenesis. DNA methylation occurs via two major classes of enzymatic reactions: maintenance-type methylation catalyzed by DNA (cytosine-5-)-methyltransferase (DNMT) 1, and de novo methylation catalyzed by DNMT 3 alpha (DNMT3A) and -beta (DNMT3B). The expression pattern and regulation of DNMT genes in primordial germ cells (PGCs) and germ line cells has not been

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|54 citations·2011
Discovery of Candidate Genes and Pathways Regulating Oviduct Development in Chickens1
Gwonhwa Song, Hee Won Seo, Jin Won Choi, Deivendran Rengaraj, Tae Min Kim, Bo Ram Lee, Young‐Min Kim, Tae Won Yun, Jae‐Wook Jeong, Jae Yong Han
SJR Q1Biology of ReproductionOA

Estrogen is a key regulator in the development of the female reproductive system. It also stimulates oviduct development in immature chicks. We identified candidate genes and pathways associated with the development of chicken oviducts. A pellet containing the synthetic estrogen analog diethylstilbestrol (DES) was implanted subcutaneously in 1-wk-old female chicks for 10 days. The pellet was removed from half the group for 10 days, and an additional dose was given for a further 10 days. Total RN

GeneticsBiochemistry, Genetics and Molecular Biology
15
Article|52 citations·2020
Targeted Knockout of MDA5 and TLR3 in the DF-1 Chicken Fibroblast Cell Line Impairs Innate Immune Response Against RNA Ligands
Su Bin Lee, Young Hyun Park, Kelly Chungu, Seung Je Woo, Soo Taek Han, Hee Jung Choi, Deivendran Rengaraj, Jae Yong Han
SJR Q1Frontiers in ImmunologyOA

The innate immune system, which senses invading pathogens, plays a critical role as the first line of host defense. After recognition of foreign RNA ligands (e.g., RNA viruses), host cells generate an innate immune or antiviral response <i>via</i> the interferon-mediated signaling pathway. Retinoic acid-inducible gene I (RIG-1) acts as a major sensor that recognizes a broad range of RNA ligands in mammals; however, chickens lack a RIG-1 homolog, meaning that RNA ligands should be recognized by o

ImmunologyImmunology and Microbiology

Research Areas

GeneticsMolecular BiologyAnimal Science and ZoologyImmunologyCancer ResearchReproductive Medicine

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