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Hepatocyte nuclear factor 4α negatively regulates connective tissue growth factor during liver regeneration
Junmei Zhou1,2, Xiaowei Sun1,3, Lu Yang4
1Department of Pediatrics, University of Florida, Gainesville, FL, USA.
Abstract:
Liver regeneration after injury requires fine-tune regulation of connective tissue growth factor (Ctgf). It also involves dynamic expression of hepatocyte nuclear factor (Hnf)4α, Yes-associated protein (Yap), and transforming growth factor (Tgf)-β. The upstream inducers of Ctgf, such as Yap, etc, are well-known. However, the negative regulator of Ctgf remains unclear. Here, we investigated the Hnf4α regulation of Ctgf post-various types of liver injury. Both wild-type animals and animals contained siRNA-mediated Hnf4α knockdown and Cre-mediated Ctgf conditional deletion were used. We observed that Ctgf induction was associated with Hnf4α decline, nuclear Yap accumulation, and Tgf-β upregulation during early stage of liver regeneration. The Ctgf promoter contained an Hnf4α binding sequence that overlapped with the cis-regulatory element for Yap and Tgf-β. Ctgf loss attenuated inflammation, hepatocyte proliferation, and collagen synthesis, whereas Hnf4α knockdown enhanced Ctgf induction and liver fibrogenesis. These findings provided a new mechanism about fine-tuned regulation of Ctgf through Hnf4α antagonism of Yap and Tgf-β activities to balance regenerative and fibrotic signals.
Insights
Hepatocyte nuclear factor (Hnf)4α negatively regulates connective tissue growth factor (Ctgf) during liver repair. This Hnf4α antagonism of Yap and Tgf-β balances liver regeneration and fibrosis.
Area of Science:
- Molecular biology
- Hepatology
- Regenerative medicine
Background:
- Liver regeneration requires precise control of connective tissue growth factor (Ctgf).
- Key regulators like hepatocyte nuclear factor (Hnf)4α, Yes-associated protein (Yap), and transforming growth factor (Tgf)-β are dynamically expressed.
- While Ctgf inducers are known, its negative regulator remains unidentified.
Purpose of the Study:
- To investigate the role of Hnf4α in regulating Ctgf following liver injury.
- To elucidate the mechanism by which Hnf4α controls Ctgf expression and its impact on liver regeneration and fibrosis.
Main Methods:
- Utilized wild-type animals, siRNA-mediated Hnf4α knockdown models, and Cre-mediated Ctgf conditional deletion models.
- Analyzed Ctgf, Hnf4α, Yap, and Tgf-β expression during early liver regeneration.
- Performed promoter analysis to identify Hnf4α binding sites overlapping with Yap and Tgf-β regulatory elements.
Main Results:
- Ctgf induction correlated with decreased Hnf4α, increased nuclear Yap, and elevated Tgf-β during early liver regeneration.
- Hnf4α binding sequences on the Ctgf promoter overlapped with cis-regulatory elements for Yap and Tgf-β.
- Ctgf deficiency reduced inflammation, hepatocyte proliferation, and collagen synthesis; Hnf4α knockdown exacerbated Ctgf induction and liver fibrogenesis.
Conclusions:
- Hnf4α acts as a negative regulator of Ctgf in the injured liver.
- Hnf4α antagonizes Yap and Tgf-β activities, providing a mechanism for fine-tuning Ctgf.
- This regulation is crucial for balancing regenerative and fibrotic signaling pathways in the liver.
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