TY - JOUR
T1 - Missense mutations in IHH impair Indian hedgehog signaling in C3H10T1/2 cells
T2 - Implications for brachydactyly type A1, and new targets for hedgehog signaling
AU - Guo, Shengzhen
AU - Zhou, Jian
AU - Gao, Bo
AU - Hu, Jianxin
AU - Wang, Hongsheng
AU - Meng, Junwei
AU - Zhao, Xinzhi
AU - Ma, Gang
AU - Lin, Chuwen
AU - Xiao, Yue
AU - Tang, Wei
AU - Zhu, Xuming
AU - Cheah, Kathryn S.E.
AU - Feng, Guoying
AU - Chan, Danny
AU - He, Lin
N1 - Funding Information:
Acknowledgements. We would like to thank Dr Hiroshi Sasaki and Dr Alexandra L. Joyner for donating the full-length mouse Gli1 plasmid, Dr Cliff Tabin for 5’ partial human IHH-cDNA, and Dr Sarah Herzog and Dr Emiliana Borrelli for the mouse Penk1 probes. We would like to thank Dr Barry Merriman for his contribution to the microarray data analysis. This work was supported by grants (2007CB947300, 07DZ22917, 2010CB529600, and 09DJ1400601), by the Shanghai Leading Academic Discipline Project (B205), Research Grants Council of Hong Kong (HKU760608M), and the University Grants Council of Hong Kong (AoE/M-04/04).
PY - 2010/3
Y1 - 2010/3
N2 - Heterozygous missense mutations in IHH result in Brachydactyly type A1 (BDA1; OMIM 112500), a condition characterized by the shortening of digits due to hypoplasia/aplasia of the middle phalanx. Indian Hedgehog signaling regulates the proliferation and differentiation of chondrocytes and is essential for endochondral bone formation. Analyses of activated IHH signaling in C3H10T1/2 cells showed that three BDA1-associated mutations (p.E95K, p.D100E and p.E131K) severely impaired the induction of targets such as Ptch1 and Gli1. However, this was not a complete loss of function, suggesting that these mutations may affect the interaction with the receptor PTCH1 or its partners, with an impact on the induction potency. From comparative microarray expression analyses and quantitative real-time PCR, we identified three additional targets, Sostdc1, Penk1 and Igfbp5, which were also severely affected. Penk1 and Igfbp5 were confirmed to be regulated by GLI1, while the induction of Sostdc1 by IHH is independent of GLI1. SOSTDC1 is a BMP antagonist, and altered BMP signaling is known to affect digit formation. The role of Penk1 and Igfbp5 in skeletogenesis is not known. However, we have shown that both Penk1 and Igfbp5 are expressed in the interzone region of the developing joint of mouse digits, providing another link for a role for IHH signaling in the formation of the distal digits.
AB - Heterozygous missense mutations in IHH result in Brachydactyly type A1 (BDA1; OMIM 112500), a condition characterized by the shortening of digits due to hypoplasia/aplasia of the middle phalanx. Indian Hedgehog signaling regulates the proliferation and differentiation of chondrocytes and is essential for endochondral bone formation. Analyses of activated IHH signaling in C3H10T1/2 cells showed that three BDA1-associated mutations (p.E95K, p.D100E and p.E131K) severely impaired the induction of targets such as Ptch1 and Gli1. However, this was not a complete loss of function, suggesting that these mutations may affect the interaction with the receptor PTCH1 or its partners, with an impact on the induction potency. From comparative microarray expression analyses and quantitative real-time PCR, we identified three additional targets, Sostdc1, Penk1 and Igfbp5, which were also severely affected. Penk1 and Igfbp5 were confirmed to be regulated by GLI1, while the induction of Sostdc1 by IHH is independent of GLI1. SOSTDC1 is a BMP antagonist, and altered BMP signaling is known to affect digit formation. The role of Penk1 and Igfbp5 in skeletogenesis is not known. However, we have shown that both Penk1 and Igfbp5 are expressed in the interzone region of the developing joint of mouse digits, providing another link for a role for IHH signaling in the formation of the distal digits.
KW - Brachydactyly type A1
KW - EMSA
KW - Indian hedgehog
KW - Microarray
UR - http://www.scopus.com/inward/record.url?scp=76149118077&partnerID=8YFLogxK
U2 - 10.2478/s11658-009-0040-2
DO - 10.2478/s11658-009-0040-2
M3 - Article
AN - SCOPUS:76149118077
SN - 1425-8153
VL - 15
SP - 153
EP - 176
JO - Cellular and Molecular Biology Letters
JF - Cellular and Molecular Biology Letters
IS - 1
ER -