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      MiR-34a functions as a tumor suppressor in oral cancer through the inhibition of the Axl/Akt/GSK-3β pathway

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          Abstract

          Background/purpose

          Oral cancer is a prevalent malignancy affecting men globally. This study aimed to investigate the regulatory role of miR-34a in oral cancer cells through the Axl/Akt/glycogen synthase kinase-3β (GSK-3β) pathway and its impact on cellular malignancy.

          Materials and methods

          We examined the effects of miR-34a overexpression on the malignancy of oral cancer cells. Multiple oral cancer cell lines were assessed to determine the correlation between endogenous miR-34a and Axl levels. Transfection experiments with miR-34a were conducted to analyze its influence on Axl mRNA and protein expression. Luciferase reporter assays were performed to investigate miR-34a′s modulation of Axl gene transcription. Manipulation of miR-34a expression was utilized to demonstrate its regulatory effects on oral cancer cells through the Axl/Akt/GSK-3β pathway.

          Results

          Overexpression of miR-34a significantly suppressed the malignancy of oral cancer cells. We observed an inverse correlation between endogenous miR-34a and Axl levels across multiple oral cancer cell lines. Transfection of miR-34a resulted in decreased Axl mRNA and protein expression, and luciferase reporter assays confirmed miR-34a-mediated modulation of Axl gene transcription. The study revealed regulatory effects of miR-34a on oral cancer cells through the Axl/Akt/GSK-3β pathway, leading to alterations in downstream target genes involved in cellular proliferation and tumorigenesis.

          Conclusion

          Our findings highlight the significance of the miR-34a/Axl/Akt/GSK-3β signaling axis in modulating the malignancy of oral cancer cells. Targeting miR-34a may hold therapeutic potential in oral cancer treatment, as manipulating its expression can attenuate the aggressive behavior of oral cancer cells via the Axl/Akt/GSK-3β pathway.

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          Most cited references31

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          MicroRNAs: target recognition and regulatory functions.

          MicroRNAs (miRNAs) are endogenous approximately 23 nt RNAs that play important gene-regulatory roles in animals and plants by pairing to the mRNAs of protein-coding genes to direct their posttranscriptional repression. This review outlines the current understanding of miRNA target recognition in animals and discusses the widespread impact of miRNAs on both the expression and evolution of protein-coding genes.
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            • Record: found
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            Is Open Access

            miRDB: an online database for prediction of functional microRNA targets

            Abstract MicroRNAs (miRNAs) are small noncoding RNAs that act as master regulators in many biological processes. miRNAs function mainly by downregulating the expression of their gene targets. Thus, accurate prediction of miRNA targets is critical for characterization of miRNA functions. To this end, we have developed an online database, miRDB, for miRNA target prediction and functional annotations. Recently, we have performed major updates for miRDB. Specifically, by employing an improved algorithm for miRNA target prediction, we now present updated transcriptome-wide target prediction data in miRDB, including 3.5 million predicted targets regulated by 7000 miRNAs in five species. Further, we have implemented the new prediction algorithm into a web server, allowing custom target prediction with user-provided sequences. Another new database feature is the prediction of cell-specific miRNA targets. miRDB now hosts the expression profiles of over 1000 cell lines and presents target prediction data that are tailored for specific cell models. At last, a new web query interface has been added to miRDB for prediction of miRNA functions by integrative analysis of target prediction and Gene Ontology data. All data in miRDB are freely accessible at http://mirdb.org.
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              Transcriptional activation of miR-34a contributes to p53-mediated apoptosis.

              p53 is a potent tumor suppressor, whose biological effects are largely due to its function as a transcriptional regulator. Here we report that, in addition to regulating the expression of hundreds of protein-coding genes, p53 also modulates the levels of microRNAs (miRNAs). Specifically, p53 can induce expression of microRNA-34a (miR-34a) in cultured cells as well as in irradiated mice, by binding to a perfect p53 binding site located within the gene that gives rise to miR-34a. Processing of the primary transcript into mature miR-34a involves the excision of a 30 kb intron. Notably, inactivation of miR-34a strongly attenuates p53-mediated apoptosis in cells exposed to genotoxic stress, whereas overexpression of miR-34a mildly increases apoptosis. Hence, miR-34a is a direct proapoptotic transcriptional target of p53 that can mediate some of p53's biological effects. Perturbation of miR-34a expression, as occurs in some human cancers, may thus contribute to tumorigenesis by attenuating p53-dependent apoptosis.
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                Author and article information

                Contributors
                Journal
                J Dent Sci
                J Dent Sci
                Journal of Dental Sciences
                Association for Dental Sciences of the Republic of China
                1991-7902
                2213-8862
                25 August 2023
                January 2024
                25 August 2023
                : 19
                : 1
                : 428-437
                Affiliations
                [a ]Graduate Institute of Medical Sciences, National Defense Medical Center, Taipei, Taiwan
                [b ]Department of Radiation Oncology, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
                [c ]National Institute of Cancer Research, National Health Research Institutes, Miaoli, Taiwan
                [d ]Division of Thoracic Surgery, Department of Surgery, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
                [e ]Department of Oral and Maxillofacial Surgery, Chi Mei Medical Center, Tainan, Taiwan
                [f ]Division of Endocrinology and Metabolism, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
                [g ]Department of Dentistry, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan
                [h ]Department and Graduate Institute of Biochemistry, National Defense Medical Center, Taipei, Taiwan
                [i ]School of Dentistry, College of Dental Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan
                Author notes
                []Corresponding author. Division of Endocrinology and Metabolism, National Defense Medical Center, No.161, Sec. 6, Min-Chuan East Rd., Nei-Hu, Taipei, 114, Taiwan. metahung@ 123456yahoo.com
                [∗∗ ]Corresponding author. School of Dentistry, National Defense Medical Center, No.161, Sec. 6, Min-Chuan East Rd., Nei-Hu, Taipei, 114, Taiwan. ndmcyss@ 123456ndmctsgh.edu.tw
                Article
                S1991-7902(23)00258-1
                10.1016/j.jds.2023.08.013
                10829669
                38303867
                7843cf12-9de7-4ea2-8387-40efd68b159a
                © 2023 Association for Dental Sciences of the Republic of China. Publishing services by Elsevier B.V.

                This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).

                History
                : 10 August 2023
                : 14 August 2023
                Categories
                Original Article

                axl,mir-34a,oral cancer,targeted therapy
                axl, mir-34a, oral cancer, targeted therapy

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