CoA synthase regulates mitotic fidelity via CBP-mediated acetylation

10.1038/s41467-018-03422-6

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Main Authors: Lin, C.-C, Kitagawa, M, Tang, X, Hou, M.-H, Wu, J, Qu, D.C, Srinivas, V, Liu, X, Thompson, J.W, Mathey-Prevot, B, Yao, T.-P, Lee, S.H, Chi, J.-T
Other Authors: DUKE-NUS MEDICAL SCHOOL
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Published: Nature Publishing Group 2020
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Online Access:https://scholarbank.nus.edu.sg/handle/10635/174236
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spelling sg-nus-scholar.10635-1742362024-11-14T15:48:57Z CoA synthase regulates mitotic fidelity via CBP-mediated acetylation Lin, C.-C Kitagawa, M Tang, X Hou, M.-H Wu, J Qu, D.C Srinivas, V Liu, X Thompson, J.W Mathey-Prevot, B Yao, T.-P Lee, S.H Chi, J.-T DUKE-NUS MEDICAL SCHOOL acyltransferase alpha tubulin aurora A kinase beta tubulin coenzyme A coenzyme A synthase cyclic AMP responsive element binding protein binding protein cyclin B1 cycloheximide enzyme messenger RNA protein top2a protein tpx2 protein unclassified drug aurora A kinase cell cycle protein COASY protein, human cyclic AMP responsive element binding protein binding protein microtubule associated protein nuclear protein protein binding TPX2 protein, human transferase chemical analysis chemical reaction enzyme enzyme activity molecular analysis protein acetylation Article cancer cell culture controlled study cytokinesis enzyme activation enzyme activity gene inactivation genomic instability human human cell in vitro study interphase mitosis protein degradation protein stability triple negative breast cancer ubiquitination acetylation cell line genetics metabolism Acetylation Aurora Kinase A Cell Cycle Proteins Cell Line CREB-Binding Protein Humans Microtubule-Associated Proteins Mitosis Nuclear Proteins Protein Binding Transferases 10.1038/s41467-018-03422-6 Nature Communications 9 1 1039 2020-09-04T01:52:05Z 2020-09-04T01:52:05Z 2018 Article Lin, C.-C, Kitagawa, M, Tang, X, Hou, M.-H, Wu, J, Qu, D.C, Srinivas, V, Liu, X, Thompson, J.W, Mathey-Prevot, B, Yao, T.-P, Lee, S.H, Chi, J.-T (2018). CoA synthase regulates mitotic fidelity via CBP-mediated acetylation. Nature Communications 9 (1) : 1039. ScholarBank@NUS Repository. https://doi.org/10.1038/s41467-018-03422-6 2041-1723 https://scholarbank.nus.edu.sg/handle/10635/174236 Nature Publishing Group Unpaywall 20200831
institution National University of Singapore
building NUS Library
continent Asia
country Singapore
Singapore
content_provider NUS Library
collection ScholarBank@NUS
topic acyltransferase
alpha tubulin
aurora A kinase
beta tubulin
coenzyme A
coenzyme A synthase
cyclic AMP responsive element binding protein binding protein
cyclin B1
cycloheximide
enzyme
messenger RNA
protein
top2a protein
tpx2 protein
unclassified drug
aurora A kinase
cell cycle protein
COASY protein, human
cyclic AMP responsive element binding protein binding protein
microtubule associated protein
nuclear protein
protein binding
TPX2 protein, human
transferase
chemical analysis
chemical reaction
enzyme
enzyme activity
molecular analysis
protein
acetylation
Article
cancer cell culture
controlled study
cytokinesis
enzyme activation
enzyme activity
gene inactivation
genomic instability
human
human cell
in vitro study
interphase
mitosis
protein degradation
protein stability
triple negative breast cancer
ubiquitination
acetylation
cell line
genetics
metabolism
Acetylation
Aurora Kinase A
Cell Cycle Proteins
Cell Line
CREB-Binding Protein
Humans
Microtubule-Associated Proteins
Mitosis
Nuclear Proteins
Protein Binding
Transferases
spellingShingle acyltransferase
alpha tubulin
aurora A kinase
beta tubulin
coenzyme A
coenzyme A synthase
cyclic AMP responsive element binding protein binding protein
cyclin B1
cycloheximide
enzyme
messenger RNA
protein
top2a protein
tpx2 protein
unclassified drug
aurora A kinase
cell cycle protein
COASY protein, human
cyclic AMP responsive element binding protein binding protein
microtubule associated protein
nuclear protein
protein binding
TPX2 protein, human
transferase
chemical analysis
chemical reaction
enzyme
enzyme activity
molecular analysis
protein
acetylation
Article
cancer cell culture
controlled study
cytokinesis
enzyme activation
enzyme activity
gene inactivation
genomic instability
human
human cell
in vitro study
interphase
mitosis
protein degradation
protein stability
triple negative breast cancer
ubiquitination
acetylation
cell line
genetics
metabolism
Acetylation
Aurora Kinase A
Cell Cycle Proteins
Cell Line
CREB-Binding Protein
Humans
Microtubule-Associated Proteins
Mitosis
Nuclear Proteins
Protein Binding
Transferases
Lin, C.-C
Kitagawa, M
Tang, X
Hou, M.-H
Wu, J
Qu, D.C
Srinivas, V
Liu, X
Thompson, J.W
Mathey-Prevot, B
Yao, T.-P
Lee, S.H
Chi, J.-T
CoA synthase regulates mitotic fidelity via CBP-mediated acetylation
description 10.1038/s41467-018-03422-6
author2 DUKE-NUS MEDICAL SCHOOL
author_facet DUKE-NUS MEDICAL SCHOOL
Lin, C.-C
Kitagawa, M
Tang, X
Hou, M.-H
Wu, J
Qu, D.C
Srinivas, V
Liu, X
Thompson, J.W
Mathey-Prevot, B
Yao, T.-P
Lee, S.H
Chi, J.-T
format Article
author Lin, C.-C
Kitagawa, M
Tang, X
Hou, M.-H
Wu, J
Qu, D.C
Srinivas, V
Liu, X
Thompson, J.W
Mathey-Prevot, B
Yao, T.-P
Lee, S.H
Chi, J.-T
author_sort Lin, C.-C
title CoA synthase regulates mitotic fidelity via CBP-mediated acetylation
title_short CoA synthase regulates mitotic fidelity via CBP-mediated acetylation
title_full CoA synthase regulates mitotic fidelity via CBP-mediated acetylation
title_fullStr CoA synthase regulates mitotic fidelity via CBP-mediated acetylation
title_full_unstemmed CoA synthase regulates mitotic fidelity via CBP-mediated acetylation
title_sort coa synthase regulates mitotic fidelity via cbp-mediated acetylation
publisher Nature Publishing Group
publishDate 2020
url https://scholarbank.nus.edu.sg/handle/10635/174236
_version_ 1821207995867987968