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PCAF-mediated acetylation of Lin28B increases let-7 biogenesis in lung adenocarcinoma H1299 cells
Ting-Ting Qu1, Fei Chen1, Jing Wang1
1State Key Laboratory of Medical Molecular Biology, Department of Biochemistry and Molecular Biology, Institute of Basic Medical Sciences, Chinese Academy of Medical Sciences & School of Basic Medicine, Peking Union Medical College, 5 Dongdan Santiao, Beijing, 100005, China.
Background:
Lin28B and its paralog Lin28A are small RNA binding proteins that have similar inhibitory effects, although they target separate steps in the maturation of let-7 miRNAs in mammalian cells. Because Lin28B participates in the promotion and development of tumors mostly by blocking the let-7 tumor suppressor family members, we sought to explore the associated mechanisms to gain insights into how Lin28B might be decreased in human cancer cells to increase let-7 levels and reverse malignancy.
Results:
We demonstrated that the histone acetyltransferase PCAF, via its cold shock domain, directly interacts with and subsequently acetylates Lin28B in lung adenocarcinoma-derived H1299 cells. RT-qPCR assays showed that both let-7a-1 and let-7g were increased in PCAF-transfected H1299 cells. Lin28B is acetylated by ectopic PCAF and translocates from the nucleus to the cytoplasm in H1299 cells.
Conclusions:
The effects of acetylated Lin28B on let-7a-1 and let-7g are similar to that of stable knockdown of Lin28B in H1299 cells. The new role of PCAF in mediating Lin28B acetylation and the specific release of its target microRNAs in H1299 cells may shed light on the potential application of let-7 in the clinical treatment of lung cancer patients.
Insights
The histone acetyltransferase PCAF acetylates Lin28B, increasing let-7 tumor suppressor levels in lung cancer cells. This acetylation may offer new therapeutic strategies for lung cancer by restoring let-7 activity.
Area of Science:
- Biochemistry
- Molecular Biology
- Oncology
Background:
- Lin28B, a small RNA binding protein, promotes tumors by inhibiting let-7 tumor suppressor miRNAs.
- Understanding Lin28B regulation is crucial for developing cancer therapies that restore let-7 levels.
Purpose of the Study:
- To investigate the mechanisms regulating Lin28B in human cancer cells.
- To explore how Lin28B levels can be decreased to increase let-7 activity and reverse malignancy.
Main Methods:
- Utilized lung adenocarcinoma-derived H1299 cells.
- Employed RT-qPCR assays to quantify microRNA levels.
- Investigated protein-protein interactions and post-translational modifications.
Main Results:
- The histone acetyltransferase PCAF directly interacts with and acetylates Lin28B.
- PCAF-mediated acetylation of Lin28B leads to its translocation from the nucleus to the cytoplasm.
- Acetylated Lin28B results in increased levels of let-7a-1 and let-7g.
Conclusions:
- PCAF plays a novel role in regulating Lin28B acetylation and activity.
- This mechanism highlights the potential of targeting PCAF-Lin28B interaction for lung cancer treatment.
- Restoring let-7 microRNA function through Lin28B modulation offers a promising therapeutic avenue.
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