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CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage

Aging is a major risk factor of osteoarthritis, which is characterized by the degeneration of articular cartilage. CCN3, a member of the CCN family, is expressed in cartilage and has various physiological functions during chondrocyte development, differentiation, and regeneration. Here, we examine t...

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Autores principales: Kuwahara, Miho, Kadoya, Koichi, Kondo, Sei, Fu, Shanqi, Miyake, Yoshiko, Ogo, Ayako, Ono, Mitsuaki, Furumatsu, Takayuki, Nakata, Eiji, Sasaki, Takako, Minagi, Shogo, Takigawa, Masaharu, Kubota, Satoshi, Hattori, Takako
Formato: Online Artículo Texto
Lenguaje:English
Publicado: MDPI 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593953/
https://www.ncbi.nlm.nih.gov/pubmed/33066270
http://dx.doi.org/10.3390/ijms21207556
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author Kuwahara, Miho
Kadoya, Koichi
Kondo, Sei
Fu, Shanqi
Miyake, Yoshiko
Ogo, Ayako
Ono, Mitsuaki
Furumatsu, Takayuki
Nakata, Eiji
Sasaki, Takako
Minagi, Shogo
Takigawa, Masaharu
Kubota, Satoshi
Hattori, Takako
author_facet Kuwahara, Miho
Kadoya, Koichi
Kondo, Sei
Fu, Shanqi
Miyake, Yoshiko
Ogo, Ayako
Ono, Mitsuaki
Furumatsu, Takayuki
Nakata, Eiji
Sasaki, Takako
Minagi, Shogo
Takigawa, Masaharu
Kubota, Satoshi
Hattori, Takako
author_sort Kuwahara, Miho
collection PubMed
description Aging is a major risk factor of osteoarthritis, which is characterized by the degeneration of articular cartilage. CCN3, a member of the CCN family, is expressed in cartilage and has various physiological functions during chondrocyte development, differentiation, and regeneration. Here, we examine the role of CCN3 in cartilage maintenance. During aging, the expression of Ccn3 mRNA in mouse primary chondrocytes from knee cartilage increased and showed a positive correlation with p21 and p53 mRNA. Increased accumulation of CCN3 protein was confirmed. To analyze the effects of CCN3 in vitro, either primary cultured human articular chondrocytes or rat chondrosarcoma cell line (RCS) were used. Artificial senescence induced by H(2)O(2) caused a dose-dependent increase in Ccn3 gene and CCN3 protein expression, along with enhanced expression of p21 and p53 mRNA and proteins, as well as SA-β gal activity. Overexpression of CCN3 also enhanced p21 promoter activity via p53. Accordingly, the addition of recombinant CCN3 protein to the culture increased the expression of p21 and p53 mRNAs. We have produced cartilage-specific CCN3-overexpressing transgenic mice, and found degradative changes in knee joints within two months. Inflammatory gene expression was found even in the rib chondrocytes of three-month-old transgenic mice. Similar results were observed in human knee articular chondrocytes from patients at both mRNA and protein levels. These results indicate that CCN3 is a new senescence marker of chondrocytes, and the overexpression of CCN3 in cartilage may in part promote chondrocyte senescence, leading to the degeneration of articular cartilage through the induction of p53 and p21.
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spelling pubmed-75939532020-10-30 CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage Kuwahara, Miho Kadoya, Koichi Kondo, Sei Fu, Shanqi Miyake, Yoshiko Ogo, Ayako Ono, Mitsuaki Furumatsu, Takayuki Nakata, Eiji Sasaki, Takako Minagi, Shogo Takigawa, Masaharu Kubota, Satoshi Hattori, Takako Int J Mol Sci Article Aging is a major risk factor of osteoarthritis, which is characterized by the degeneration of articular cartilage. CCN3, a member of the CCN family, is expressed in cartilage and has various physiological functions during chondrocyte development, differentiation, and regeneration. Here, we examine the role of CCN3 in cartilage maintenance. During aging, the expression of Ccn3 mRNA in mouse primary chondrocytes from knee cartilage increased and showed a positive correlation with p21 and p53 mRNA. Increased accumulation of CCN3 protein was confirmed. To analyze the effects of CCN3 in vitro, either primary cultured human articular chondrocytes or rat chondrosarcoma cell line (RCS) were used. Artificial senescence induced by H(2)O(2) caused a dose-dependent increase in Ccn3 gene and CCN3 protein expression, along with enhanced expression of p21 and p53 mRNA and proteins, as well as SA-β gal activity. Overexpression of CCN3 also enhanced p21 promoter activity via p53. Accordingly, the addition of recombinant CCN3 protein to the culture increased the expression of p21 and p53 mRNAs. We have produced cartilage-specific CCN3-overexpressing transgenic mice, and found degradative changes in knee joints within two months. Inflammatory gene expression was found even in the rib chondrocytes of three-month-old transgenic mice. Similar results were observed in human knee articular chondrocytes from patients at both mRNA and protein levels. These results indicate that CCN3 is a new senescence marker of chondrocytes, and the overexpression of CCN3 in cartilage may in part promote chondrocyte senescence, leading to the degeneration of articular cartilage through the induction of p53 and p21. MDPI 2020-10-13 /pmc/articles/PMC7593953/ /pubmed/33066270 http://dx.doi.org/10.3390/ijms21207556 Text en © 2020 by the authors. Licensee MDPI, Basel, Switzerland. This article is an open access article distributed under the terms and conditions of the Creative Commons Attribution (CC BY) license (http://creativecommons.org/licenses/by/4.0/).
spellingShingle Article
Kuwahara, Miho
Kadoya, Koichi
Kondo, Sei
Fu, Shanqi
Miyake, Yoshiko
Ogo, Ayako
Ono, Mitsuaki
Furumatsu, Takayuki
Nakata, Eiji
Sasaki, Takako
Minagi, Shogo
Takigawa, Masaharu
Kubota, Satoshi
Hattori, Takako
CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage
title CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage
title_full CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage
title_fullStr CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage
title_full_unstemmed CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage
title_short CCN3 (NOV) Drives Degradative Changes in Aging Articular Cartilage
title_sort ccn3 (nov) drives degradative changes in aging articular cartilage
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7593953/
https://www.ncbi.nlm.nih.gov/pubmed/33066270
http://dx.doi.org/10.3390/ijms21207556
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