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Yong-Sun Bahn

Yonsei University · Medicine

About the Lab

Professor Yong-Sun Bahn's research lab focuses on the molecular mechanisms underlying fungal pathogenesis, particularly in *Cryptococcus neoformans*, a major cause of fatal fungal meningitis. The lab investigates signaling pathways—especially MAP kinase cascades like Pbs2-Hog1—and their roles in regulating virulence, stress responses, morphological differentiation, and host adaptation. By employing large-scale functional genomics approaches, including signature-tagged gene deletion libraries, the lab identifies key regulators of fungal development and pathogenicity in both in vitro and in vivo models. Their work bridges fungal cell biology, pathogenesis, and host-pathogen interactions to uncover novel therapeutic targets.

fungal pathogenesisMAP kinase signalingtranscription factorsfunctional genomicsvirulence regulation

Research Overview

Papers
245
Total Citations
7,859
Papers (5y)
74
Primary Field
Medicine

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
74total
2022
2023
2024
2025
2026
Citations per year (5y)
425total
20222023202420252026

Selected Papers

15
1
Review|412 citations·2006
Sensing the environment: lessons from fungi
Yong‐Sun Bahn, Chaoyang Xue, Alexander Idnurm, Julian C. Rutherford, Joseph Heitman, María E. Cárdenas
SJR Q1Nature Reviews Microbiology
PharmacologyMedicine
2
Article|277 citations·2005
Specialization of the HOG Pathway and Its Impact on Differentiation and Virulence ofCryptococcus neoformans
Yong‐Sun Bahn, Kaihei Kojima, Gary M. Cox, Joseph Heitman
SJR Q2Molecular Biology of the CellOA

The human pathogenic fungus Cryptococcus neoformans has diverged from a common ancestor into three biologically distinct varieties or sibling species over the past 10-40 million years. During evolution of these divergent forms, serotype A C. neoformans var. grubii has emerged as the most virulent and cosmopolitan pathogenic clade. Therefore, understanding how serotype A C. neoformans is distinguished from less successful pathogenic serotypes will provide insights into the evolution of fungal vir

EpidemiologyMedicine
3
Article|234 citations·2006
A Unique Fungal Two-Component System Regulates Stress Responses, Drug Sensitivity, Sexual Development, and Virulence ofCryptococcus neoformans
Yong‐Sun Bahn, Kaihei Kojima, Gary M. Cox, Joseph Heitman
SJR Q2Molecular Biology of the CellOA

The stress-activated mitogen-activated protein kinase (MAPK) pathway is widely used by eukaryotic organisms as a central conduit via which cellular responses to the environment effect growth and differentiation. The basidiomycetous human fungal pathogen Cryptococcus neoformans uniquely uses the stress-activated Pbs2-Hog1 MAPK system to govern a plethora of cellular events, including stress responses, drug sensitivity, sexual reproduction, and virulence. Here, we characterized a fungal "two-compo

EpidemiologyMedicine
4
Article|209 citations·2015
Systematic functional profiling of transcription factor networks in Cryptococcus neoformans
Kwang‐Woo Jung, Dong‐Hoon Yang, Shinae Maeng, Kyung-Tae ‍Lee, Yee-Seul So, Joohyeon Hong, Jaeyoung Choi, Hyo-Jeong Byun, Hyelim Kim, Soohyun Bang, Min-Hee Song, Jang-Won Lee
SJR Q1Nature CommunicationsOA

Cryptococcus neoformans causes life-threatening meningoencephalitis in humans, but its overall biological and pathogenic regulatory circuits remain elusive, particularly due to the presence of an evolutionarily divergent set of transcription factors (TFs). Here, we report the construction of a high-quality library of 322 signature-tagged gene-deletion strains for 155 putative TF genes previously predicted using the DNA-binding domain TF database, and examine their in vitro and in vivo phenotypic

EpidemiologyMedicine
5
Article|203 citations·2005
Carbonic Anhydrase and CO2 Sensing during Cryptococcus neoformans Growth, Differentiation, and Virulence
Yong‐Sun Bahn, Gary M. Cox, John R. Perfect, Joseph Heitman
SJR Q1Current BiologyOA
Plant ScienceAgricultural and Biological Sciences
6
Review|173 citations·2008
Master and Commander in Fungal Pathogens: the Two-Component System and the HOG Signaling Pathway
Yong‐Sun Bahn
Eukaryotic CellOA

30).On the right side are diagrams of known fungal sensor kinases, which were generated by the MacVector software.Each domain was identified by the comparative fungal genomics platform (http://cfgp.snu.ac.kr) and

EpidemiologyMedicine
7
Article|167 citations·2016
Systematic functional analysis of kinases in the fungal pathogen Cryptococcus neoformans
Kyung-Tae ‍Lee, Yee-Seul So, Dong‐Hoon Yang, Kwang-Woo Jung, Jaeyoung Choi, Dong‐Gi Lee, Hyojeong Kwon, Juyeong Jang, Li Li Wang, Soohyun Cha, Gena Lee Meyers, Eunji Jeong
SJR Q1Nature CommunicationsOA

Cryptococcus neoformans is the leading cause of death by fungal meningoencephalitis; however, treatment options remain limited. Here we report the construction of 264 signature-tagged gene-deletion strains for 129 putative kinases, and examine their phenotypic traits under 30 distinct in vitro growth conditions and in two different hosts (insect larvae and mice). Clustering analysis of in vitro phenotypic traits indicates that several of these kinases have roles in known signalling pathways, and

EpidemiologyMedicine
8
Article|167 citations·2021
Fungal brain infection modelled in a human-neurovascular-unit-on-a-chip with a functional blood–brain barrier
Jin Kim, Kyung-Tae ‍Lee, Jong Seung Lee, Jisoo Shin, Baofang Cui, Kisuk Yang, Yi Sun Choi, Nakwon Choi, Soo Hyun Lee, Jae‐Hyun Lee, Yong‐Sun Bahn, Seung‐Woo Cho
SJR Q1Nature Biomedical Engineering
NeurologyNeuroscience
9
Review|161 citations·2006
CO2 sensing in fungi and beyond
Yong‐Sun Bahn, Fritz A. Mühlschlegel
SJR Q1Current Opinion in Microbiology
Infectious DiseasesMedicine
10
Article|159 citations·2001
CAP1 , an Adenylate Cyclase-Associated Protein Gene, Regulates Bud-Hypha Transitions, Filamentous Growth, and Cyclic AMP Levels and Is Required for Virulence of Candida albicans
Yong‐Sun Bahn, Paula Sundstrom
SJR Q2Journal of BacteriologyOA

In response to a wide variety of environmental stimuli, the opportunistic fungal pathogen Candida albicans exits the budding cycle, producing germ tubes and hyphae concomitant with expression of virulence genes, such as that encoding hyphal wall protein 1 (HWP1). Biochemical studies implicate cyclic AMP (cAMP) increases in promoting bud-hypha transitions, but genetic evidence relating genes that control cAMP levels to bud-hypha transitions has not been reported. Adenylate cyclase-associated prot

Infectious DiseasesMedicine
11
Article|135 citations·2011
Unique Evolution of the UPR Pathway with a Novel bZIP Transcription Factor, Hxl1, for Controlling Pathogenicity of Cryptococcus neoformans
Seon Ah Cheon, Kwang-Woo Jung, Ying‐Lien Chen, Joseph Heitman, Yong‐Sun Bahn, Hyun Ah Kang
SJR Q1PLoS PathogensOA

In eukaryotic cells, the unfolded protein response (UPR) pathway plays a crucial role in cellular homeostasis of the endoplasmic reticulum (ER) during exposure to diverse environmental conditions that cause ER stress. Here we report that the human fungal pathogen Cryptococcus neoformans has evolved a unique UPR pathway composed of an evolutionarily conserved Ire1 protein kinase and a novel bZIP transcription factor encoded by HXL1 (HAC1 and XBP1-Like gene 1). C. neoformans HXL1 encodes a protein

EpidemiologyMedicine
12
Article|118 citations·2004
Adenylyl Cyclase-Associated Protein Aca1 Regulates Virulence and Differentiation of Cryptococcus neoformans via the Cyclic AMP-Protein Kinase A Cascade
Yong‐Sun Bahn, Julie K. Hicks, Steven S. Giles, Gary M. Cox, Joseph Heitman
Eukaryotic CellOA

The evolutionarily conserved cyclic AMP (cAMP) signaling pathway controls cell functions in response to environmental cues in organisms as diverse as yeast and mammals. In the basidiomycetous human pathogenic fungus Cryptococcus neoformans, the cAMP pathway governs virulence and morphological differentiation. Here we identified and characterized adenylyl cyclase-associated protein, Aca1, which functions in parallel with the Galpha subunit Gpa1 to control the adenylyl cyclase (Cac1). Aca1 interac

EpidemiologyMedicine
13
Article|111 citations·2010
Characterizing the role of RNA silencing components in Cryptococcus neoformans
Guilhem Janbon, Shinae Maeng, Dong‐Hoon Yang, Young Joon Ko, Kwang-Woo Jung, Frédérique Moyrand, Anna Floyd, Joseph Heitman, Yong‐Sun Bahn
SJR Q2Fungal Genetics and BiologyOA
EpidemiologyMedicine
14
Article|88 citations·2003
Increased high‐affinity phosphodiesterase PDE2 gene expression in germ tubes counteracts CAP1‐dependent synthesis of cyclic AMP, limits hypha production and promotes virulence of Candida albicans
Yong‐Sun Bahn, Janet F. Staab, Paula Sundstrom
SJR Q1Molecular MicrobiologyOA

Frequent interconversion between yeasts, pseudohyphae and true hyphae is a hallmark of Candida albicans growth in mammalian tissues. The requirement for transient CAP1-dependent pulses of cAMP for generating true hyphae, Hwp1 and virulence raises questions about the role of yeast and pseudohyphal forms in the pathogenesis of candidiasis. In this study, hyperfilamentous mutants, limited in their capacity to produce buds, were generated by disrupting the high-affinity phosphodiesterase gene PDE2.

Infectious DiseasesMedicine
15
Review|86 citations·2013
Stress Signaling Pathways for the Pathogenicity of Cryptococcus
Yong‐Sun Bahn, Kwang‐Woo Jung
Eukaryotic CellOA

Sensing, responding, and adapting to the surrounding environment are crucial for all living organisms to survive, proliferate, and differentiate in their biological niches. This ability is also essential for Cryptococcus neoformans and its sibling species Cryptococcus gattii, as these pathogens have saprobic and parasitic life cycles in natural and animal host environments. The ability of Cryptococcus to cause fatal meningoencephalitis is highly related to its capability to remodel and optimize

EpidemiologyMedicine

Research Areas

EpidemiologyInfectious DiseasesMolecular BiologyPharmacologyCell BiologyPlant Science

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