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Published on: May 13, 2016
Ahnak depletion accelerates liver regeneration by modulating the TGF-β/Smad signaling pathway
Insook Yang1, Yeri Son1, Jae Hoon Shin2
1Laboratory of Developmental Biology and Genomics, College of Veterinary Medicine, Seoul National University, Seoul 08826, Korea.
Abstract:
Ahnak, a large protein first identified as an inhibitor of TGF-β signaling in human neuroblastoma, was recently shown to promote TGF-β in some cancers. The TGF-β signaling pathway regulates cell growth, various biological functions, and cancer growth and metastasis. In this study, we used Ahnak knockout (KO) mice that underwent a 70% partial hepatectomy (PH) to investigate the function of Ahnak in TGF-β signaling during liver regeneration. At the indicated time points after PH, we analyzed the mRNA and protein expression of the TGF -β/Smad signaling pathway and cell cycle-related factors, evaluated the cell cycle through proliferating cell nuclear antigen (PCNA) immunostaining, analyzed the mitotic index by hematoxylin and eosin staining. We also measured the ratio of liver tissue weight to body weight. Activation of TGF-β signaling was confirmed by analyzing the levels of phospho-Smad 2 and 3 in the liver at the indicated time points after PH and was lower in Ahnak KO mice than in WT mice. The expression levels of cyclin B1, D1, and E1; proteins in the Rb/E2F transcriptional pathway, which regulates the cell cycle; and the numbers of PCNA-positive cells were increased in Ahnak KO mice and showed tendencies opposite that of TGF-β expression. During postoperative regeneration, the liver weight to body weight ratio tended to increase faster in Ahnak KO mice. However, 7 days after PH, both groups of mice showed similar rates of regeneration, following which their active regeneration stopped. Analysis of hepatocytes undergoing mitosis showed that there were more mitotic cells in Ahnak KO mice, consistent with the weight ratio. Our findings suggest that Ahnak enhances TGF-β signaling during postoperative liver regeneration, resulting in cell cycle disruption; this highlights a novel role of Ahnak in liver regeneration. These results provide new insight into liver regeneration and potential treatment targets for liver diseases that require surgical treatment. [BMB Reports 2022; 55(8): 401-406].
Insights
Ahnak protein enhances transforming growth factor-beta (TGF-β) signaling during liver regeneration, impacting cell cycle regulation. Ahnak knockout mice show accelerated liver regeneration initially but similar final outcomes compared to wild-type mice.
Area of Science:
- Molecular Biology
- Cell Biology
- Regenerative Medicine
Background:
- Ahnak protein's dual role in TGF-β signaling, inhibiting it in some contexts and promoting it in others, necessitates further investigation.
- The transforming growth factor-beta (TGF-β) pathway is crucial for regulating cell growth, differentiation, and tissue repair, including liver regeneration.
- Understanding Ahnak's function in liver regeneration is vital for developing therapeutic strategies for liver diseases.
Discussion:
- Ahnak knockout mice exhibited reduced TGF-β signaling activation post-hepatectomy compared to wild-type mice.
- Increased expression of cell cycle regulators (cyclins B1, D1, E1) and proliferating cell nuclear antigen (PCNA) was observed in Ahnak KO mice, inversely correlating with TGF-β levels.
- Ahnak appears to enhance TGF-β signaling, leading to cell cycle modulation during liver regeneration.
Key Insights:
- Ahnak plays a significant role in modulating TGF-β signaling during the liver regeneration process.
- Loss of Ahnak leads to altered cell cycle dynamics, with increased proliferation markers in hepatocytes.
- The study reveals a novel function of Ahnak in regulating liver regeneration, distinct from its previously known roles.
Outlook:
- Further research into Ahnak's precise molecular mechanisms in liver regeneration could unveil new therapeutic targets.
- Investigating Ahnak's role in other regenerative processes may broaden its clinical relevance.
- Targeting Ahnak-mediated TGF-β signaling could offer novel treatment avenues for liver diseases requiring surgical intervention.
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