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METTL3-induced circ_0008345 contributes to the progression of colorectal cancer via the microRNA-182-5p/CYP1A2 pathway. | LitMetric

AI Article Synopsis

  • Circ_0008345, a type of circular RNA found to be upregulated in colorectal cancer (CRC), plays a significant role in promoting cancer progression by interacting with microRNA (miR)-182-5p and the oncogene CYP1A2.
  • The study utilized various assays to demonstrate that when circ_0008345 is knocked down, it inhibits CRC cell growth and movement, as well as tumor formation in mice, indicating its critical role in cancer development.
  • The expression of circ_0008345 is regulated by the m6A methylation process mediated by METTL3, underscoring a complex interplay between these molecules that contributes to the aggressive nature of CRC.

Article Abstract

Background: Circular RNA (circRNAs) have been found to play major roles in the progression of colorectal cancer (CRC). However, the functions of circ_0008345 (transcribed by PTK2) in regulating CRC development remain undefined. In this study, we aimed to explore the roles and underlying mechanisms of circ_0008345 in CRC.

Methods: RNase R-treated total cellular RNA was used to verify the circular structure of circ_0008345, and a subcellular fractionation assay was performed to detect the subcellular localization of circ_0008345. RNA pull-down and dual-luciferase assays were used to verify the binding relation between microRNA (miR)-182-5p and circ_0008345 and/or CYP1A2. Colony formation assay, EdU, and Transwell assays were performed to detect the biological behavior of CRC cells in vitro, and CRC cells were injected into mice to observe the tumor formation. m6A immunoprecipitation was used to detect the m6A modification of circ_0008345 in CRC cells.

Results: Circ_0008345, upregulated in CRC tissues and cells, was mainly present in the cytoplasm. Circ_0008345 bound to miR-182-5p, and miR-182-5p targeted CYP1A2, an oncogene in CRC. The colony formation, mobility, EdU-positive cell rate in vitro, and tumor growth in mice were inhibited after the knockdown of circ_0008345. However, the suppressing effects of sh-circ_0008345 on CRC and CYP1A2 expression were significantly reversed after further knockdown of miR-182-5p. METTL3 was the m6A modifier mediating circ_0008345 expression, and the suppression of METTL3 reduced the expression of circ_0008345.

Conclusions: METTL3-dependent m6A methylation upregulated circ_0008345, which blocked the inhibitory effect of miR-182-5p on CYP1A2, thereby exacerbating the malignant phenotype of CRC cells.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC11177402PMC
http://dx.doi.org/10.1186/s12885-024-12474-5DOI Listing

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