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Ho Sung Jung

Yonsei University · 生化学・遺伝学・分子生物学

研究室紹介

Professor Ho Sung Jung's research lab focuses on the molecular and cellular mechanisms underlying neuronal development, plasticity, and disease, with a central emphasis on local protein synthesis in axons and the role of chemokine signaling in neural circuit formation and neuropathic pain. The lab employs innovative in vivo imaging and genetic tools—such as TRAP-RiboTag and bitransgenic reporter mice—to dissect subcellular mRNA translation and receptor activation in real time within the nervous system. Key research directions include the regulation of axonal translatomes during wiring and maintenance, the function of CCR2/CCL2 signaling in monocyte trafficking and neuroinflammation, and the impact of GABAergic signaling on neurodevelopmental disorders. The lab integrates neuroscience, molecular biology, and live imaging to uncover fundamental principles of cellular communication in health and disease.

axonal translationCCR2 signalingneuropathic painin vivo imagingneurodevelopmental disorders

Research Overview

Papers
115
Total Citations
4,771
Papers (5y)
16
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)
16total
2021
2022
2023
2024
2025
Citations per year (5y)
183total
20212022202320242025

Selected Papers

15
1
Review|491 citations·2012
Axonal mRNA localization and local protein synthesis in nervous system assembly, maintenance and repair
Hosung Jung, Byung Chul Yoon, Christine E. Holt
SJR Q1Nature reviews. NeuroscienceOA
Cellular and Molecular NeuroscienceNeuroscience
2
Article|469 citations·2016
Dynamic Axonal Translation in Developing and Mature Visual Circuits
Toshiaki Shigeoka, Hosung Jung, Jane Jung, Benita Turner-Bridger, Jiyeon Ohk, Julie Qiaojin Lin, Paul S. Amieux, Christine E. Holt
SJR Q1CellOA

Local mRNA translation mediates the adaptive responses of axons to extrinsic signals, but direct evidence that it occurs in mammalian CNS axons in vivo is scant. We developed an axon-TRAP-RiboTag approach in mouse that allows deep-sequencing analysis of ribosome-bound mRNAs in the retinal ganglion cell axons of the developing and adult retinotectal projection in vivo. The embryonic-to-postnatal axonal translatome comprises an evolving subset of enriched genes with axon-specific roles, suggesting

Molecular BiologyBiochemistry, Genetics and Molecular Biology
3
Review|315 citations·2014
Remote Control of Gene Function by Local Translation
Hosung Jung, Christos G. Gkogkas, Nahum Sonenberg, Christine E. Holt
SJR Q1CellOA

The subcellular position of a protein is a key determinant of its function. Mounting evidence indicates that RNA localization, where specific mRNAs are transported subcellularly and subsequently translated in response to localized signals, is an evolutionarily conserved mechanism to control protein localization. On-site synthesis confers novel signaling properties to a protein and helps to maintain local proteome homeostasis. Local translation plays particularly important roles in distal neurona

Molecular BiologyBiochemistry, Genetics and Molecular Biology
4
Article|252 citations·2007
Monocyte chemoattractant protein‐1 functions as a neuromodulator in dorsal root ganglia neurons
Hosung Jung, Péter T. Tóth, Fletcher A. White, Richard J. Miller
SJR Q1Journal of NeurochemistryOA

It has previously been observed that expression of chemokine monocyte chemoattractant protein-1 (MCP-1/CC chemokine ligand 2 (CCL2)) and its receptor CC chemokine receptor 2 (CCR2) is up-regulated by dorsal root ganglion (DRG) neurons in association with rodent models of neuropathic pain. MCP-1 increases the excitability of nociceptive neurons after a peripheral nerve injury, while disruption of MCP-1/CCR2 signaling blocks the development of neuropathic pain, suggesting MCP-1 signaling is respon

PhysiologyMedicine
5
Article|128 citations·2009
Visualization of Chemokine Receptor Activation in Transgenic Mice Reveals Peripheral Activation of CCR2 Receptors in States of Neuropathic Pain
Hosung Jung, Sonia K. Bhangoo, Ghazal Banisadr, Constantin Wilhelm Freitag, Dongjun Ren, Fletcher A. White, R. J. Miller
SJR Q1Journal of NeuroscienceOA

CCR2 chemokine receptor signaling has been implicated in the generation of diverse types of neuropathology, including neuropathic pain. For example, ccr2 knock-out mice are resistant to the establishment of neuropathic pain, and mice overexpressing its ligand, monocyte chemoattractant protein-1 (MCP1; also known as CCL2), show enhanced pain sensitivity. However, whether CCR2 receptor activation occurs in the central or peripheral nervous system in states of neuropathic pain has not been clear. W

PhysiologyMedicine
6
Article|85 citations·2017
GABBR2 mutations determine phenotype in rett syndrome and epileptic encephalopathy
Yongjin Yoo, Jane Jung, Yoo‐Na Lee, Youngha Lee, Hyosuk Cho, Eunjung Na, JeaYeok Hong, Eunjin Kim, Jin Sook Lee, Je‐Sang Lee, Chansik Hong, Sang‐Yoon Park
SJR Q1Annals of NeurologyOA

OBJECTIVE: Rett syndrome (RTT) and epileptic encephalopathy (EE) are devastating neurodevelopmental disorders with distinct diagnostic criteria. However, highly heterogeneous and overlapping clinical features often allocate patients into the boundary of the two conditions, complicating accurate diagnosis and appropriate medical interventions. Therefore, we investigated the specific molecular mechanism that allows an understanding of the pathogenesis and relationship of these two conditions. METH

GeneticsBiochemistry, Genetics and Molecular Biology
8
Review|79 citations·2012
Erratum: Axonal mRNA localization and local protein synthesis in nervous system assembly, maintenance and repair
Hosung Jung, Byung Chul Yoon, Christine E. Holt
SJR Q1Nature reviews. NeuroscienceOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
9
Article|65 citations·2015
Localized CCR2 Activation in the Bone Marrow Niche Mobilizes Monocytes by Desensitizing CXCR4
Hosung Jung, Divakar S. Mithal, Jeong Eun Park, Richard J. Miller
SJR Q1PLoS ONEOA

Inflammatory (classical) monocytes residing in the bone marrow must enter the bloodstream in order to combat microbe infection. These monocytes express high levels of CCR2, a chemokine receptor whose activation is required for them to exit the bone marrow. How CCR2 is locally activated in the bone marrow and how their activation promotes monocyte egress is not understood. Here, we have used double transgenic lines that can visualize CCR2 activation in vivo and show that its chemokine ligand CCL2

OncologyMedicine
10
Review|54 citations·2010
Local translation of mRNAs in neural development
Hosung Jung, Christine E. Holt
SJR Q1Wiley Interdisciplinary Reviews - RNAOA

Abstract Growing axons encounter numerous developmental signals to which they must promptly respond in order to properly form complex neural circuitry. In the axons, these signals are often transduced into a local increase or decrease in protein levels. Contrary to the traditional view that the cell bodies are the exclusive source of axonal proteins, it is becoming increasingly clear not only that de novo protein synthesis takes place in axons, but also that it is required for the axons to respo

Molecular BiologyBiochemistry, Genetics and Molecular Biology
11
Article|54 citations·2022
mRNA transport, translation, and decay in adult mammalian central nervous system axons
Jane Jung, Jiyeon Ohk, Hye Young Kim, Christine E. Holt, Hyun Jung Park, Hosung Jung
SJR Q1NeuronOA
Molecular BiologyBiochemistry, Genetics and Molecular Biology
12
Review|34 citations·2011
Translational regulation in growth cones
Hosung Jung, Catherine M. O'Hare, Christine E. Holt
SJR Q1Current Opinion in Genetics & DevelopmentOA
Cellular and Molecular NeuroscienceNeuroscience
13
Article|31 citations·2021
UXT chaperone prevents proteotoxicity by acting as an autophagy adaptor for p62-dependent aggrephagy
Min Ji Yoon, Bo-Yoon Choi, Eun Jin Kim, Jiyeon Ohk, Chansik Yang, Yeon-Gil Choi, Jin‐Young Lee, Chanhee Kang, Hyun Kyu Song, Yoon Ki Kim, Jae‐Sung Woo, Yongcheol Cho
SJR Q1Nature CommunicationsOA

p62/SQSTM1 is known to act as a key mediator in the selective autophagy of protein aggregates, or aggrephagy, by steering ubiquitinated protein aggregates towards the autophagy pathway. Here, we use a yeast two-hybrid screen to identify the prefoldin-like chaperone UXT as an interacting protein of p62. We show that UXT can bind to protein aggregates as well as the LB domain of p62, and, possibly by forming an oligomer, increase p62 clustering for its efficient targeting to protein aggregates, th

EpidemiologyMedicine
14
Article|30 citations·2003
Involvement of CLOCK:BMAL1 heterodimer in serum-responsive mPer1 induction
Hosung Jung, Youngshik Choe, Hyunjung Kim, Noheon Park, Gi Hoon Son, Inkoo Khang, Kyungjin Kim
SJR Q3Neuroreport

A rapid induction of mouse period1 (mPer1) gene expression is supposed to be critical in the clock gene regulation, especially in the phase resetting of the clock, but its molecular mechanism is poorly understood. Based on the previous finding that the process does not involve de novo synthesis of proteins, we postulated the involvement of CLOCK:BMAL1 heterodimer, a positive regulator of circadian oscillator, in the rapid induction of mPer1 transcription. To test this hypothesis, we utilized CLO

Endocrine and Autonomic SystemsNeuroscience
15
Review|28 citations·2020
Local mRNA translation in long-term maintenance of axon health and function
Eunjin Kim, Hosung Jung
SJR Q1Current Opinion in NeurobiologyOA

Distal axons, remote from their cell bodies and nuclei, must survive the lifetime of an organism. Recent studies have provided compelling evidence that proteins are locally synthesized in healthy, mature central nervous system axons and presynaptic terminals in vivo. Presynaptic, mitochondrial and ribosomal proteins are locally synthesized in most adult axons of diverse cell types, linking local translation to axon function and survival. Accordingly, inhibiting the intra-axonal translation of ke

Molecular BiologyBiochemistry, Genetics and Molecular Biology

Research Areas

Molecular BiologyGeneticsPhysiologyCellular and Molecular NeuroscienceOncologyDevelopmental Neuroscience

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