TY - JOUR
T1 - Roles of PKC, PI3K and JNK in multiple transduction of CCN2/CTGF signals in chondrocytes
AU - Yosimichi, Gen
AU - Kubota, Satoshi
AU - Nishida, Takashi
AU - Kondo, Seiji
AU - Yanagita, Takeshi
AU - Nakao, Kyouji
AU - Takano-Yamamoto, Teruko
AU - Takigawa, Masaharu
N1 - Funding Information:
This work was supported by Grants-in-aid for Scientific Research (S) [to M.T] and (C) [to S.K.], for Exploratory Research [to M.T.], for Young Scientists (B) [to T.N.] and for JSPS Fellows [to S.K.] from the Ministry of Education, Culture, Sports, Science and Technology of Japan and Japan Society for the Promotion of Science; and by grants from the Nakatomi Health Science Foundation [to S. K.], the Foundation for Growth Science in Japan [to M. T.], the Sumitomo Foundation [to M. T.] and the Ryobi-teien Memorial Foundation [to S. K.]. We thank Dr. Takanori Eguchi for the useful discussions, Drs. Norifumi H. Moritani and Masanao Minato for the technical assistance, Drs. Daisuke Ekuni and Sumie Yasuoka for performing the Dunnett test and Ms. Yuki Nonami for the secretarial assistance.
PY - 2006/6
Y1 - 2006/6
N2 - CCN2/connective tissue growth factor (CCN2/CTGF) is known to promote both the proliferation and differentiation of chondrocytes, which actions are mediated by ERK and p38 MAPK, respectively. In this study, we first re-evaluated the involvement of multiple MAPKs therein and found that JNK also mediated such CCN2 signals. Thereafter, we further analyzed the roles of upstream kinases. The involvement of PKC, PI3K and PKA in the CCN2 signaling to promote the maturation, proliferation and terminal differentiation of a human chondrocytic cell line, HCS-2/8 and rabbit primary growth cartilage cells was investigated. As a result, the PKC inhibitor calphostin C repressed all of the effects of CCN2, which were represented by increased synthesis of DNA and proteoglycans and the display of alkaline phosphatase activity. In addition, evaluation of the effect of the PI3K inhibitor wortmannin disclosed the contribution of PI3K in transducing CCN2 signals to promote chondrocyte hypertrophy. This signal was known to be mediated by PKB, which was translocated into the nucleus upon CCN2 stimulation. Of note, calphostin C showed inhibitory effects on the activation of p38 MAPK, ERK and also PKB, whereas it exerted no effect on JNK activation. These results suggest that PKC is a driver of multiple signal transducing kinases that promote the proliferation and differentiation of chondrocytes. The requirement of PI3K in transmitting the signal for terminal differentiation and PKC-independent signaling pathways for the promotion of chondrocytic growth and differentiation, which was mediated by JNK, were also uncovered.
AB - CCN2/connective tissue growth factor (CCN2/CTGF) is known to promote both the proliferation and differentiation of chondrocytes, which actions are mediated by ERK and p38 MAPK, respectively. In this study, we first re-evaluated the involvement of multiple MAPKs therein and found that JNK also mediated such CCN2 signals. Thereafter, we further analyzed the roles of upstream kinases. The involvement of PKC, PI3K and PKA in the CCN2 signaling to promote the maturation, proliferation and terminal differentiation of a human chondrocytic cell line, HCS-2/8 and rabbit primary growth cartilage cells was investigated. As a result, the PKC inhibitor calphostin C repressed all of the effects of CCN2, which were represented by increased synthesis of DNA and proteoglycans and the display of alkaline phosphatase activity. In addition, evaluation of the effect of the PI3K inhibitor wortmannin disclosed the contribution of PI3K in transducing CCN2 signals to promote chondrocyte hypertrophy. This signal was known to be mediated by PKB, which was translocated into the nucleus upon CCN2 stimulation. Of note, calphostin C showed inhibitory effects on the activation of p38 MAPK, ERK and also PKB, whereas it exerted no effect on JNK activation. These results suggest that PKC is a driver of multiple signal transducing kinases that promote the proliferation and differentiation of chondrocytes. The requirement of PI3K in transmitting the signal for terminal differentiation and PKC-independent signaling pathways for the promotion of chondrocytic growth and differentiation, which was mediated by JNK, were also uncovered.
KW - CCN family
KW - CTGF
KW - Chondrocyte
KW - MAPK
KW - PKC
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U2 - 10.1016/j.bone.2005.11.016
DO - 10.1016/j.bone.2005.11.016
M3 - Article
C2 - 16431170
AN - SCOPUS:33747640237
SN - 8756-3282
VL - 38
SP - 853
EP - 863
JO - Bone
JF - Bone
IS - 6
ER -