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Jegyeong Ryu

Seoul National University

研究室紹介

Professor Jegyeong Ryu's research lab specializes in single-molecule biophysics and molecular mechanisms underlying chromosome organization and intracellular membrane trafficking. The lab investigates how ring-shaped SMC complexes like cohesin and condensin extrude DNA loops to shape chromatin architecture, with a focus on their ability to translocate through protein-bound DNA and large macromolecular complexes. Additionally, the lab explores the mechanochemical mechanisms of AAA+ ATPases, such as NSF, in disassembling SNARE complexes during membrane fusion. Using advanced single-molecule imaging and force spectroscopy techniques, the lab uncovers fundamental principles of biomolecular condensation, loop extrusion, and protein complex disassembly.

chromosome organizationloop extrusionAAA+ ATPasessingle-molecule biophysicsmembrane fusion

Research Overview

Papers
1
Total Citations
0
Papers (5y)
1
Primary Field

Research Output Trend

Figures are computed from collected data and may differ slightly.

Publications per year (5y)
1total
2026
Citations per year (5y)
0total
2026

Selected Papers

1
1
dataset|0 citations·2026
Data and code from: In vitro reconstitution of heterochromatin compartments reveals the spontaneous formation of tunable liquid-liquid interfaces
Lucy D. Brennan, Hoon‐Soo Kim, Serafin U. Colmenares, Tatum Ego, Je-Kyung Ryu, Gary Karpen
DRYADOA

This dataset contains the time-lapse imaging data collected and analyzed in "In vitro reconstitution of heterochromatin compartments reveals the spontaneous formation of tunable liquid-liquid interfaces." These movies include representative droplet fusions and heat-reversibility of chromatin compartmentalization, the quantification of which is shown in Figures 2, 3, and 4 of the manuscript. The Python scripts used to analyze and visualize this data are included in the PythonNotebooks.zip folder.

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