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MACC1 is post-transcriptionally regulated by miR-218 in colorectal cancer
Katharina Ilm1, Steffen Fuchs1, Giridhar Mudduluru1,2
1Experimental and Clinical Research Center, Charité University Medicine Berlin and Max-Delbrück-Center for Molecular Medicine in the Helmholtz Association, Berlin, Germany.
Abstract:
Metastasis is a multistep molecular network process, which is lethal for more than 90% of the cancer patients. Understanding the regulatory functions of metastasis-inducing molecules is in high demand for improved therapeutic cancer approaches. Thus, we studied the post-transcriptional regulation of the crucial carcinogenic and metastasis-mediating molecule metastasis associated in colon cancer 1 (MACC1). In silico analysis revealed MACC1 as a potential target of miR-218, a tumor suppressor miRNA. Expression of these two molecules inversely correlated in colorectal cancer (CRC) cell lines. In a cohort of CRC patient tissues (n = 59), miR-218 is significantly downregulated and MACC1 is upregulated compared with normal mucosa. Luciferase reporter assays with a construct of the MACC1-3'-UTR harboring either the wild type or the mutated miR-218 seed sequence confirmed the specificity of the targeting. miR-218 inhibited significantly MACC1 protein expression, and consistently, MACC1-mediated migration, invasion and colony formation in CRC cells. Anti-miR-218 enhanced the MACC1-mediated migration, invasion and colony formation. Similar findings were observed in the gastric cancer cell line MKN-45. Further, we performed methylation-specific PCR of the SLIT2 and SLIT3 promoter, where miR-218 is encoded in intronic regions. The SLIT2 and SLIT3 promoters are hypermethylated in CRC cell lines. miR-218 and SLIT2 expressions correlated positively. Methyltransferase inhibitor 5-Azacytidine induced miR-218 expression and inhibited the expression of its target MACC1. We also determined that MACC1 has alternative polyadenylation (APA) sites, which results in different lengths of 3'-UTR variants in a CRC cell line. Taken together, miR-218 is post-transcriptionally inhibiting the MACC1 expression and its metastasis-inducing abilities.
Insights
MicroRNA-218 (miR-218) suppresses metastasis by inhibiting metastasis associated in colon cancer 1 (MACC1) expression in colorectal cancer. This discovery offers new therapeutic targets for reducing cancer spread.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- Metastasis is a complex process responsible for over 90% of cancer patient mortality.
- Understanding metastasis-inducing molecules is crucial for developing effective cancer therapies.
- Metastasis associated in colon cancer 1 (MACC1) is a key molecule in cancer progression.
Purpose of the Study:
- To investigate the post-transcriptional regulation of MACC1 by microRNA-218 (miR-218) in colorectal cancer (CRC).
- To explore the therapeutic potential of targeting the miR-218/MACC1 axis in cancer treatment.
Main Methods:
- In silico analysis to predict MACC1 as a miR-218 target.
- Luciferase reporter assays to confirm direct targeting of MACC1 by miR-218.
- Expression analysis of miR-218 and MACC1 in CRC cell lines and patient tissues.
- Methylation-specific PCR to assess promoter methylation of miR-218 encoding genes (SLIT2/SLIT3).
- Functional assays (migration, invasion, colony formation) to evaluate the impact of miR-218 and MACC1.
Main Results:
- MACC1 was identified as a direct target of the tumor suppressor miR-218.
- Inverse correlation between miR-218 and MACC1 expression in CRC cell lines and patient tissues.
- miR-218 significantly inhibited MACC1 protein expression and MACC1-mediated cancer cell migration, invasion, and colony formation.
- Hypermethylation of SLIT2 and SLIT3 promoters (encoding miR-218) was observed in CRC.
- 5-Azacytidine treatment induced miR-218 expression and suppressed MACC1 levels.
Conclusions:
- miR-218 acts as a tumor suppressor by post-transcriptionally inhibiting MACC1 expression and its metastasis-promoting functions in colorectal cancer.
- The miR-218/MACC1 pathway represents a potential therapeutic target for combating colorectal cancer metastasis.
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