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Jeongsu Oh

Sungkyunkwan University · Biochemistry, Genetics and Molecular Biology

About the Lab

Professor Jeongsu Oh's research lab focuses on cell cycle regulation, particularly the molecular mechanisms governing meiotic arrest and resumption in mammalian oocytes. The lab investigates key regulators such as Cdc2-cyclin B (MPF), Wee1/Myt1 kinases, Cdc25 phosphatases, and the cytostatic factor (CSF) that maintain metaphase II arrest. A central theme is the dynamic control of Cdk1 phosphorylation and cyclin degradation, as well as the role of signaling molecules like CaMKII and melatonin in protecting oocytes from DNA damage during prolonged prophase arrest. The lab also explores the therapeutic potential of targeting cell cycle regulators, such as MASTL, in cancer cells.

meiosisoocyte maturationcell cycle regulationCdk1 phosphorylationDNA damage response

Research Overview

Papers
106
Total Citations
3,091
Papers (5y)
42
Primary Field
Biochemistry, Genetics and Molecular Biology

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
42total
2021
2022
2023
2024
2025
Citations per year (5y)
183total
20212022202320242025

Selected Papers

15
1
Article|184 citations·2010
Wee1B, Myt1, and Cdc25 function in distinct compartments of the mouse oocyte to control meiotic resumption
Jeong Su Oh, Seung Jin Han, Marco Conti
SJR Q1The Journal of Cell BiologyOA

After a long period of quiescence at dictyate prophase I, termed the germinal vesicle (GV) stage, mammalian oocytes reenter meiosis by activating the Cdc2-cyclin B complex (maturation-promoting factor [MPF]). The activity of MPF is regulated by Wee1/Myt1 kinases and Cdc25 phosphatases. In this study, we demonstrate that the sequestration of components that regulate MPF activity in distinct subcellular compartments is essential for their function during meiosis. Down-regulation of either Wee1B or

Cell BiologyBiochemistry, Genetics and Molecular Biology
2
Article|133 citations·2011
Protein Tyrosine Kinase Wee1B Is Essential for Metaphase II Exit in Mouse Oocytes
Jeong Su Oh, Andrej Šušor, Marco Conti
SJR Q1ScienceOA

Waves of cyclin synthesis and degradation regulate the activity of Cdc2 protein kinase during the cell cycle. Cdc2 inactivation by Wee1B-mediated phosphorylation is necessary for arrest of the oocyte at G2-prophase, but it is unclear whether this regulation functions later during the metaphase-to-anaphase transition. We show that reactivation of a Wee1B pathway triggers the decrease in Cdc2 activity during egg activation. When Wee1B is down-regulated, oocytes fail to form a pronucleus in respons

Public Health, Environmental and Occupational HealthMedicine
3
Article|119 citations·2004
Regulation of the Neuron-specific Ras GTPase-activating Protein, synGAP, by Ca2+/Calmodulin-dependent Protein Kinase II
Jeong Su Oh, Pasquale Manzerra, Mary B. Kennedy
SJR Q1Journal of Biological ChemistryOA

synGAP is a neuron-specific Ras GTPase-activating protein found in high concentration in the postsynaptic density fraction from mammalian forebrain. Proteins in the postsynaptic density, including synGAP, are part of a signaling complex attached to the cytoplasmic tail of the N-methyl-d-aspartate-type glutamate receptor. synGAP can be phosphorylated by a second prominent component of the complex, Ca(2+)/calmodulin-dependent protein kinase II. Here we show that phosphorylation of synGAP by Ca(2+)

Cellular and Molecular NeuroscienceNeuroscience
4
Article|94 citations·2009
ADAM7 Is Associated with Epididymosomes and Integrated into Sperm Plasma Membrane
Jeong Su Oh, Cecil Han, Chunghee Cho
SJR Q1Molecules and Cells
Reproductive MedicineMedicine
5
Article|47 citations·2013
Cdc25A activity is required for the metaphase II arrest in mouse oocytes
Jeong Su Oh, Andrej Šušor, Karen Schindler, Richard M. Schultz, Marco Conti
SJR Q2Journal of Cell ScienceOA

Mammalian oocytes are arrested in metaphase of second meiosis (MII) until fertilization. This arrest is enforced by the cytostatic factor (CSF), which maintains the M-phase promoting factor (MPF) in a highly active state. Although the continuous synthesis and degradation of cyclin B to maintain the CSF-mediated MII arrest is well established, it is unknown whether cyclin-dependent kinase 1 (Cdk1) phosphorylations are involved in this arrest in mouse oocytes. Here, we show that a dynamic equilibr

Public Health, Environmental and Occupational HealthMedicine
6
Article|47 citations·2019
Melatonin protects mouse oocytes from DNA damage by enhancing nonhomologous end‐joining repair
Jiyeon Leem, Guang‐Yu Bai, Jae‐Sung Kim, Jeong Su Oh
SJR Q1Journal of Pineal Research

Mammalian oocytes remain arrested at the first prophase of meiosis in ovarian follicles for an extended period. During this protracted arrest, oocytes are remarkably susceptible to the accumulation of DNA damage. Melatonin (N-acetyl-5-methoxytryptamine), a hormone secreted by the pineal gland, has diverse effects on various physiological processes. However, the effect of melatonin on DNA damage response in mammalian oocytes has not been explored. Here, we showed that melatonin protected mouse oo

Endocrine and Autonomic SystemsNeuroscience
7
Article|43 citations·2016
Eccentric localization of catalase to protect chromosomes from oxidative damages during meiotic maturation in mouse oocytes
Yong Seok Park, Seung Yeop You, Sungrae Cho, Hyuk‐Joon Jeon, Sukchan Lee, Dong‐Hyung Cho, Jae‐Sung Kim, Jeong Su Oh
SJR Q1Histochemistry and Cell Biology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
8
Article|40 citations·2018
MASTL inhibition promotes mitotic catastrophe through PP2A activation to inhibit cancer growth and radioresistance in breast cancer cells
Yi Na Yoon, Min Ho Choe, Kwan‐Young Jung, Sang‐Gu Hwang, Jeong Su Oh, Jae‐Sung Kim
SJR Q2BMC CancerOA

Our data suggested that MASTL inhibition promoted mitotic catastrophe through PP2A activation, which led to the inhibition of cancer cell growth and a reversal of radioresistance in breast cancer cells.

Cell BiologyBiochemistry, Genetics and Molecular Biology
9
Article|37 citations·2017
Antihelminthic drug niclosamide inhibits CIP2A and reactivates tumor suppressor protein phosphatase 2A in non-small cell lung cancer cells
Myeong-Ok Kim, Min Ho Choe, Yi Na Yoon, Jiyeon Ahn, Minjin Yoo, Kwan‐Young Jung, Sungkwan An, Sang‐Gu Hwang, Jeong Su Oh, Jae‐Sung Kim
SJR Q1Biochemical Pharmacology
Molecular BiologyBiochemistry, Genetics and Molecular Biology
10
Article|33 citations·2016
TCTP regulates spindle microtubule dynamics by stabilizing polar microtubules during mouse oocyte meiosis
Hyuk‐Joon Jeon, Seung Yeop You, Yong Seok Park, Jong Wook Chang, Jae‐Sung Kim, Jeong Su Oh
SJR Q1Biochimica et Biophysica Acta (BBA) - Molecular Cell Research
Psychiatry and Mental healthMedicine
11
Article|29 citations·2024
Distinct characteristics of the DNA damage response in mammalian oocytes
Jiyeon Leem, Crystal Lee, Da Yi Choi, Jeong Su Oh
SJR Q1Experimental & Molecular MedicineOA

DNA damage is a critical threat that poses significant challenges to all cells. To address this issue, cells have evolved a sophisticated molecular and cellular process known as the DNA damage response (DDR). Among the various cell types, mammalian oocytes, which remain dormant in the ovary for extended periods, are particularly susceptible to DNA damage. The occurrence of DNA damage in oocytes can result in genetic abnormalities, potentially leading to infertility, birth defects, and even abort

Public Health, Environmental and Occupational HealthMedicine
12
Article|24 citations·2020
MKI-1, a Novel Small-Molecule Inhibitor of MASTL, Exerts Antitumor and Radiosensitizer Activities Through PP2A Activation in Breast Cancer
Ah Young Kim, Yi Na Yoon, Jiyeon Leem, Jee‐Young Lee, Kwan‐Young Jung, Minsung Kang, Jiyeon Ahn, Sang‐Gu Hwang, Jeong Su Oh, Jae‐Sung Kim
SJR Q2Frontiers in OncologyOA

Although MASTL (microtubule-associated serine/threonine kinase-like) is an attractive target for anticancer treatment, MASTL inhibitors with antitumor activity have not yet been reported. In this study, we have presented a novel MASTL inhibitor, MKI-1, identified through <i>in silico</i> screening and <i>in vitro</i> analysis. Our data revealed that MKI-1 exerted antitumor and radiosensitizer activities in <i>in vitro</i> and <i>in vivo</i> models of breast cancer. The mechanism of action of MKI

Cell BiologyBiochemistry, Genetics and Molecular Biology
13
Article|24 citations·2023
Oocytes can repair DNA damage during meiosis via a microtubule-dependent recruitment of CIP2A–MDC1–TOPBP1 complex from spindle pole to chromosomes
Jiyeon Leem, Jae‐Sung Kim, Jeong Su Oh
SJR Q1Nucleic Acids ResearchOA

Because DNA double-strand breaks (DSBs) greatly threaten genomic integrity, effective DNA damage sensing and repair are essential for cellular survival in all organisms. However, DSB repair mainly occurs during interphase and is repressed during mitosis. Here, we show that, unlike mitotic cells, oocytes can repair DSBs during meiosis I through microtubule-dependent chromosomal recruitment of the CIP2A-MDC1-TOPBP1 complex from spindle poles. After DSB induction, we observed spindle shrinkage and

Molecular BiologyBiochemistry, Genetics and Molecular Biology
14
Article|22 citations·2016
Beclin-1 knockdown shows abscission failure but not autophagy defect during oocyte meiotic maturation
Seung Yeop You, Yong‐Seok Park, Hyuk‐Joon Jeon, Dong‐Hyung Cho, Hong Bae Jeon, Sung Hyun Kim, Jong Wook Chang, Jae-Sung Kim, Jeong Su Oh
SJR Q1Cell CycleOA

Cytokinesis is the final step in cell division that results in the separation of a parent cell into daughter cells. Unlike somatic cells that undergo symmetric division, meiotic division is highly asymmetric, allowing the preservation of maternal resources for embryo development. Beclin-1/BECN1, the mammalian homolog of yeast Atg6, is a key molecule of autophagy. As part of a class III phosphatidylinositol 3-kinase (PI3K-III) complex, BECN1 initiates autophagosome formation by coordinating membr

EpidemiologyMedicine
15
Article|21 citations·2017
Filamin A is required for spindle migration and asymmetric division in mouse oocytes
Haiyang Wang, Jing Guo, Zili Lin, Suk Namgoong, Jeong Su Oh, Nam‐Hyung Kim
SJR Q1The FASEB Journal

Dynamic changes in the actin network are crucial for the cortical migration of spindles and establishment of polarity, to ensure asymmetric division during meiotic maturation. In this study, filamin A (FLNA) was found to be an essential actin regulator that controlled spindle migration and asymmetric division during oocyte meiosis. FLNA was localized in the cytoplasm and enriched at the cortex and near the chromosomes. Knockdown of FLNA impaired meiotic asymmetric division and spindle migration

Public Health, Environmental and Occupational HealthMedicine

Research Areas

Cell BiologyPublic Health, Environmental and Occupational HealthMolecular BiologyOncologyImmunologyGenetics

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