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  4. VCP maintains nuclear size by regulating the DNA damage-associated MDC1?�p53?�autophagy axis in Drosophila
 
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VCP maintains nuclear size by regulating the DNA damage-associated MDC1?�p53?�autophagy axis in Drosophila

Journal
Nature Communications
Journal Volume
12
Journal Issue
1
Start Page
4258
ISSN
20411723
Date Issued
2021
Author(s)
Chang, Ya-Chu
Peng, Yu-Xiang
Yu, Bo-Hua
Chang, Henry C.
Liang, Pei-Shin
Huang, Ting-Yi
Shih, Chao-Jie
LI-AN CHU  
Sang, Tzu-Kang
DOI
10.1038/s41467-021-24556-0
URI
https://www.scopus.com/inward/record.uri?eid=2-s2.0-85110653300&doi=10.1038%2Fs41467-021-24556-0&partnerID=40&md5=9fb0ad4efa9a8a46692c3968c9cb63eb
https://scholars.lib.ntu.edu.tw/handle/123456789/736674
Abstract
The maintenance of constant karyoplasmic ratios suggests that nuclear size has physiological significance. Nuclear size anomalies have been linked to malignant transformation, although the mechanism remains unclear. By expressing dominant-negative TER94 mutants in Drosophila photoreceptors, here we show disruption of VCP (valosin-containing protein, human TER94 ortholog), a ubiquitin-dependent segregase, causes progressive nuclear size increase. Loss of VCP function leads to accumulations of MDC1 (mediator of DNA damage checkpoint protein 1), connecting DNA damage or associated responses to enlarged nuclei. TER94 can interact with MDC1 and decreases MDC1 levels, suggesting that MDC1 is a VCP substrate. Our evidence indicates that MDC1 accumulation stabilizes p53A, leading to TER94K2A-associated nuclear size increase. Together with a previous report that p53A disrupts autophagic flux, we propose that the stabilization of p53A in TER94K2A-expressing cells likely hinders the removal of nuclear content, resulting in aberrant nuclear size increase. © 2021, The Author(s).
Publisher
Nature Research
Type
journal article

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