Junseong Park
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Research Assistant Professor
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Recent Grants
Grant: Open
Establishment of innovative therapeutic strategies for brain tumors using patient-derived organoids and combined single cell-spatial transcriptome analysis
Open Date: 2024-05-01
Close Date: 2029-04-01
Grant: Close
Development of gliosarcoma organoid model for novel therapeutic strategy
Open Date: 2023-05-01
Close Date: 2024-04-01
Grant: Close
Construction of pan-cancer transcriptional regulatory network landscape map and its application to identification of drug targets
Open Date: 2021-06-01
Close Date: 2024-05-01
Grant: Close
Elucidation of mechanism of peritoneal carcinomatosis from ovarian cancer through single cell RNA-seq
Open Date: 2020-09-01
Close Date: 2021-08-01
Grant: Close
Identification of invasion-deterministic transcriptional networks and invasion-targeting therapeutic strategy in glioblastoma using integrative genome analysis
Open Date: 2017-03-01
Close Date: 2020-02-01
Articles (10)
Single‐cell <scp>RNA</scp> sequencing of a poorly metastatic melanoma cell line and its subclones with high lung and brain metastasis potential reveals gene expression signature of metastasis with prognostic implication
The molecular mechanisms underlying melanoma metastasis remain poorly understood. In this study, we aimed to delineate the mechanisms underlying gene expression alterations during metastatic potential acquisition and characterize the metastatic subclones within primary cell lines. We performed single‐cell RNA sequencing of a poorly metastatic melanoma cell line (WM239A) and its subclones with high metastatic potential to the lung (113/6‐4L) and the brain (131/4‐5B1 and 131/4‐5B2). Unsupervised clustering of 8173 melanoma cells identified three distinct clusters according to cell type (‘Primary’, ‘Lung’ and ‘Brain’ clusters) with differential expression of MITF and AXL pathways and putative cancer and cell cycle drivers, with the lung cluster expressing intermediate but distinct gene profiles between primary and brain clusters. Principal component (PC) analysis revealed that PC2 (the second PC), which was positively associated with MITF expression and negatively with AXL pathways, primarily segregated cell types, in addition to PC1 of the cell cycle pathway. Pseudotime trajectory and RNA velocity analyses suggested the existence of cellular subsets with metastatic potential in the Primary cluster and an association between PC2 signature alteration and metastasis potential acquisition. Analysis of The Cancer Genome Atlas melanoma samples by clustering into PC2‐high and ‐low clusters by quartiles of PC2 signature expression revealed that the PC2‐high cluster was an independent significant factor for poor prognosis ( p ‐value = 0.003) with distinct genomic and transcriptomic characteristics, compared to the PC2‐low cluster. In conclusion, we identified signatures of melanoma metastasis with prognostic significance and putative pro‐metastatic subclones within a primary cell line.
Year:
2023
Collaborators (6)
Jae-Sung Park
Clinical Associate Professor
Catholic University of Korea Eunpyeong St Mary's Hospital
Seok-Gu Kang
Professor
Yonsei University
Yeun‐Jun Chung
-
Soo Jeong Park
Professor
Ewha Women's University Mokdong Hospital
Seon-Jin Yoon
Professor
Ewha Womans University Medical center
Eui Hyun Kim
Yonsei University College of Medicine

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