Communities & Collections
Researchers & Labs
Titles
DGIST
LIBRARY
DGIST R&D
Detail View
Department of Energy Science and Engineering
CMMM Lab(Curious Minds Molecular Modeling Laboratory)
1. Journal Articles
Orientation Dependence of Inter-NCP Interaction: Insights into the Behavior of Liquid Crystal Phase and Chromatin Fiber Organization
Saurabh, Suman
;
Jang, Yun Hee
;
Lansac, Yves
;
Maiti, Prabal K.
Department of Energy Science and Engineering
CMMM Lab(Curious Minds Molecular Modeling Laboratory)
1. Journal Articles
Citations
WEB OF SCIENCE
Citations
SCOPUS
Metadata Downloads
XML
Excel
Title
Orientation Dependence of Inter-NCP Interaction: Insights into the Behavior of Liquid Crystal Phase and Chromatin Fiber Organization
DGIST Authors
Jang, Yun Hee
Issued Date
2020-01
Citation
Saurabh, Suman. (2020-01). Orientation Dependence of Inter-NCP Interaction: Insights into the Behavior of Liquid Crystal Phase and Chromatin Fiber Organization. doi: 10.1021/acs.jpcb.9b07898
Type
Article
Article Type
Article
Keywords
STEERED MOLECULAR-DYNAMICS
;
NUCLEOSOME CORE PARTICLE
;
HIGHER-ORDER STRUCTURE
;
COARSE-GRAINED MODEL
;
HISTONE TAILS
;
FORCE-FIELD
;
H4 TAIL
;
DNA
;
ACETYLATION
;
PROTEIN
ISSN
1520-6106
Abstract
We report equilibrium and nonequilibrium molecular dynamics (MD) simulations of two nucleosome core particles (NCPs) stacked with their dyad axes oriented in parallel or antiparallel fashion. From the equilibrium trajectories, we determine the bridging behavior of different histone tails and observe that different sets of histone tails play important roles in the two orientations in stabilizing the NCP stack. While the H4 and H2A tails play important intermediary roles in the parallel stack, the H3 and H2B tails are important in the antiparallel stack. We use steered MD simulations to unstack the two NCPs and find a stark difference in their unstacking pathways. While the average rupture force was found to be higher for the parallel stack, the work done for complete unstacking was similar for both orientations. We use Jarzynski equality to determine the PMF profiles along the unstacking pathway, relate our findings to the behavior of NCP mesophases, and derive insights into the enigmatic nucleosomal organization in the chromatin fiber. Copyright © 2019 American Chemical Society.
URI
http://hdl.handle.net/20.500.11750/11516
DOI
10.1021/acs.jpcb.9b07898
Publisher
American Chemical Society
Show Full Item Record
File Downloads
There are no files associated with this item.
공유
공유하기
Related Researcher
Jang, Yun Hee
장윤희
Department of Energy Science and Engineering
read more
Total Views & Downloads