KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.

As a member of the polymerase delta-interacting protein 1 (PDIP1) gene family, potassium channel tetramerisation domain-containing 10 (KCTD10) interacts with proliferating cell nuclear antigen (PCNA) and polymerase δ, participates in DNA repair, DNA replication and cell-cycle control. In order to fu...

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Main Authors: Kaiqun Ren, Jing Yuan, Manjun Yang, Xiang Gao, Xiaofeng Ding, Jianlin Zhou, Xingwang Hu, Jianguo Cao, Xiyun Deng, Shuanglin Xiang, Jian Zhang
Format: Article
Language:English
Published: Public Library of Science (PLoS) 2014-01-01
Series:PLoS ONE
Online Access:http://europepmc.org/articles/PMC4234411?pdf=render
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spelling doaj-f565a352335945e7b3d3a5e87da815072020-11-25T01:37:16ZengPublic Library of Science (PLoS)PLoS ONE1932-62032014-01-01911e11227510.1371/journal.pone.0112275KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.Kaiqun RenJing YuanManjun YangXiang GaoXiaofeng DingJianlin ZhouXingwang HuJianguo CaoXiyun DengShuanglin XiangJian ZhangAs a member of the polymerase delta-interacting protein 1 (PDIP1) gene family, potassium channel tetramerisation domain-containing 10 (KCTD10) interacts with proliferating cell nuclear antigen (PCNA) and polymerase δ, participates in DNA repair, DNA replication and cell-cycle control. In order to further investigate the physiological functions of KCTD10, we generated the KCTD10 knockout mice. The heterozygous KCTD10(+/-) mice were viable and fertile, while the homozygous KCTD10(-/-) mice showed delayed growth from E9.0, and died at approximately E10.5, which displayed severe defects in angiogenesis and heart development. Further study showed that VEGF induced the expression of KCTD10 in a time- and dose-dependent manner. Quantitative real-time PCR and western blotting results revealed that several key members in Notch signaling were up-regulated either in KCTD10-deficient embryos or in KCTD10-silenced HUVECs. Meanwhile, the endogenous immunoprecipitation (IP) analysis showed that KCTD10 interacted with Cullin3 and Notch1 simultaneously, by which mediating Notch1 proteolytic degradation. Our studies suggest that KCTD10 plays crucial roles in embryonic angiogenesis and heart development in mammalians by negatively regulating the Notch signaling pathway.http://europepmc.org/articles/PMC4234411?pdf=render
collection DOAJ
language English
format Article
sources DOAJ
author Kaiqun Ren
Jing Yuan
Manjun Yang
Xiang Gao
Xiaofeng Ding
Jianlin Zhou
Xingwang Hu
Jianguo Cao
Xiyun Deng
Shuanglin Xiang
Jian Zhang
spellingShingle Kaiqun Ren
Jing Yuan
Manjun Yang
Xiang Gao
Xiaofeng Ding
Jianlin Zhou
Xingwang Hu
Jianguo Cao
Xiyun Deng
Shuanglin Xiang
Jian Zhang
KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.
PLoS ONE
author_facet Kaiqun Ren
Jing Yuan
Manjun Yang
Xiang Gao
Xiaofeng Ding
Jianlin Zhou
Xingwang Hu
Jianguo Cao
Xiyun Deng
Shuanglin Xiang
Jian Zhang
author_sort Kaiqun Ren
title KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.
title_short KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.
title_full KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.
title_fullStr KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.
title_full_unstemmed KCTD10 is involved in the cardiovascular system and Notch signaling during early embryonic development.
title_sort kctd10 is involved in the cardiovascular system and notch signaling during early embryonic development.
publisher Public Library of Science (PLoS)
series PLoS ONE
issn 1932-6203
publishDate 2014-01-01
description As a member of the polymerase delta-interacting protein 1 (PDIP1) gene family, potassium channel tetramerisation domain-containing 10 (KCTD10) interacts with proliferating cell nuclear antigen (PCNA) and polymerase δ, participates in DNA repair, DNA replication and cell-cycle control. In order to further investigate the physiological functions of KCTD10, we generated the KCTD10 knockout mice. The heterozygous KCTD10(+/-) mice were viable and fertile, while the homozygous KCTD10(-/-) mice showed delayed growth from E9.0, and died at approximately E10.5, which displayed severe defects in angiogenesis and heart development. Further study showed that VEGF induced the expression of KCTD10 in a time- and dose-dependent manner. Quantitative real-time PCR and western blotting results revealed that several key members in Notch signaling were up-regulated either in KCTD10-deficient embryos or in KCTD10-silenced HUVECs. Meanwhile, the endogenous immunoprecipitation (IP) analysis showed that KCTD10 interacted with Cullin3 and Notch1 simultaneously, by which mediating Notch1 proteolytic degradation. Our studies suggest that KCTD10 plays crucial roles in embryonic angiogenesis and heart development in mammalians by negatively regulating the Notch signaling pathway.
url http://europepmc.org/articles/PMC4234411?pdf=render
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