TY - JOUR
T1 - Hypoxia-inducible factor 1α regulates branching morphogenesis during kidney development
AU - Tsuji, Kenji
AU - Kitamura, Shinji
AU - Makino, Hirofumi
N1 - Funding Information:
This study was supported by the Health and Labor Sciences Research Grants for Research on Tissue Engineering from the Ministry of Health Labor and Welfare of Japan , the programme for the promotion of fundamental studies in Health Sciences of the National Institute of Biomedical Innovation (VIBIO) and the Okayama Medical Foundation, Japan . SK receives speaker honoraria from Kyowa Hakko kirin, Chugai, Torii, JT and Baxter Japan. HM is a consultant for AbbVie, Astellas and Teijin, receives speaker honoraria from Astellas, Boehringer-ingelheim, Chugai, Daiichi Sanky, Dainippon Sumitomo, Kyowa Hakko Kirin,MSD, Novartis,Takeda, Tanabe Mitsubishi and Pfizar and receives grant support from Astellas, Boehringer-ingelheim, Mochida, Novartis, Pfizer, Daiichi Sankyo, Dainippon Sumitomo, MSD, Novo Nordisk, Takeda, and Kyowa Hakko Kirin.
PY - 2014/4/25
Y1 - 2014/4/25
N2 - The kidneys are exposed to hypoxic conditions during development. Hypoxia-inducible factor (HIF), an important mediator of the response to hypoxia, is believed to have an important role in development. However, the relationship between HIF and branching morphogenesis has not been elucidated clearly. In this study, we examined whether HIF regulates kidney development. We harvested kidneys from day 13 rat embryos (E13Ks) and cultured the organs under normoxic (20% O2/5% CO2) or hypoxic (5% O2/5% CO2) conditions. We evaluated the kidneys based on morphology and gene expression. E13Ks cultured under hypoxic conditions had significantly more ureteric bud (UB) branching than the E13Ks cultured under normoxic conditions. In addition, the mRNA levels of GDNF and GDNF receptor (GFR-α1), increased under hypoxic conditions in E13Ks. When we cultured E13Ks with the HIF-1α inhibitor digoxin or with siRNA targeting HIF-1α under hypoxic conditions, we did not observe increased UB branching. In addition, the expression of GDNF and GFR-α1 was inhibited under hypoxic conditions when the kidneys were treated with siRNA targeting HIF-1α. We also elucidated that hypoxia inhibited UB cell apoptosis and promoted the expression of FGF7 mRNA levels in metanephric mesenchymal (MM) cells in vitro. These findings suggest that hypoxic condition has important roles in inducing branching morphogenesis during kidney development. Hypoxia might mediate branching morphogenesis via not only GDNF/Ret but also FGF signaling pathway.
AB - The kidneys are exposed to hypoxic conditions during development. Hypoxia-inducible factor (HIF), an important mediator of the response to hypoxia, is believed to have an important role in development. However, the relationship between HIF and branching morphogenesis has not been elucidated clearly. In this study, we examined whether HIF regulates kidney development. We harvested kidneys from day 13 rat embryos (E13Ks) and cultured the organs under normoxic (20% O2/5% CO2) or hypoxic (5% O2/5% CO2) conditions. We evaluated the kidneys based on morphology and gene expression. E13Ks cultured under hypoxic conditions had significantly more ureteric bud (UB) branching than the E13Ks cultured under normoxic conditions. In addition, the mRNA levels of GDNF and GDNF receptor (GFR-α1), increased under hypoxic conditions in E13Ks. When we cultured E13Ks with the HIF-1α inhibitor digoxin or with siRNA targeting HIF-1α under hypoxic conditions, we did not observe increased UB branching. In addition, the expression of GDNF and GFR-α1 was inhibited under hypoxic conditions when the kidneys were treated with siRNA targeting HIF-1α. We also elucidated that hypoxia inhibited UB cell apoptosis and promoted the expression of FGF7 mRNA levels in metanephric mesenchymal (MM) cells in vitro. These findings suggest that hypoxic condition has important roles in inducing branching morphogenesis during kidney development. Hypoxia might mediate branching morphogenesis via not only GDNF/Ret but also FGF signaling pathway.
KW - HIF-1α
KW - Hypoxia
KW - Kidney development
KW - Ureteric bud branching
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U2 - 10.1016/j.bbrc.2014.03.111
DO - 10.1016/j.bbrc.2014.03.111
M3 - Article
C2 - 24690177
AN - SCOPUS:84899480256
SN - 0006-291X
VL - 447
SP - 108
EP - 114
JO - Biochemical and Biophysical Research Communications
JF - Biochemical and Biophysical Research Communications
IS - 1
ER -