This protocol describes methods to evaluate the role of MALAT1 in promoting epithelial-mesenchymal transition in epithelial ovarian cancer through its regulation of the miR-200c-3p/SNAI2 axis.
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Research Article
This protocol describes methods to evaluate the role of MALAT1 in promoting epithelial-mesenchymal transition in epithelial ovarian cancer through its regulation of the miR-200c-3p/SNAI2 axis.
Long non-coding RNA MALAT1 regulates epithelial-mesenchymal transition (EMT) and metastasis in epithelial ovarian cancer (EOC) through a competing endogenous RNA (ceRNA) mechanism involving miRNA modulation. This study aimed to elucidate the molecular pathway by which MALAT1 influences EMT and metastatic behavior via interaction with miR-200c-3p and SNAI2. MALAT1 expression was genetically manipulated in the EOC cell line SK-OV-3 by either overexpression or knockdown. Functional effects on EMT-related protein levels, cell migration, and invasion were assessed using Western blotting, wound healing, and Transwell assays, respectively. Bioinformatics analysis identified miR-200c-3p as a common target of MALAT1 and SNAI2. The MALAT1/miR-200c-3p/SNAI2 axis was further validated by dual-luciferase reporter assays and immunofluorescence staining to confirm direct molecular interactions. Overexpression of MALAT1 enhanced SK-OV-3 cell migration by 20% and invasion by 5%, accompanied by a significant increase in SNAI2 expression (P < 0.01). Conversely, MALAT1 knockdown suppressed these phenotypes. Dual-luciferase assays confirmed that miR-200c-3p directly binds to both MALAT1 and SNAI2 (P < 0.001). miR-200c-3p overexpression reduced MALAT1-driven EMT by downregulating SNAI2 (P < 0.05), whereas restoring SNAI2 reversed the inhibitory effects of MALAT1 silencing on metastasis. This protocol demonstrates that MALAT1 promotes EMT and metastasis in EOC by functioning as a ceRNA that sequesters miR-200c-3p, leading to derepression of SNAI2. The findings provide a novel mechanistic insight and identify the MALAT1/miR-200c-3p/SNAI2 axis as a potential therapeutic target to inhibit ovarian cancer metastasis.
Ovarian cancer (OvCa) is a highly insidious and late-diagnosed malignancy. It typically progresses asymptomatically until reaching later stages, characterized by aggressive growth primarily within the peritoneal cavity. This pathological process typically presents with ascites, reduced therapeutic responsiveness, and a poor prognosis1. Epidemiological statistics from 2018 revealed about 295,000 newly diagnosed cases worldwide, with 185,000 mortality events, reflecting a persistent upward trajectory in disease burden2. Although modern treatment protocols incorporate surgical intervention and pharmacological regimens, the ....
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Cell culture and transfection
The SK-OV-3 human OvCa cell line was cultured under standard conditions. Cells were maintained in a culture medium comprising 89% McCoy's 5A, 10% fetal bovine serum, and 1% penicillin-streptomycin solution, in a humidified incubator at 37 °C with 5% CO2. The medium was replaced every 2-3 days, and cells were passaged upon reaching 80-90% confluence using 0.25% trypsin-EDTA. Lentiviral constructs for MALAT1 overexpression and MALAT1 knockdown (shRNA), as well as miR-200c-3p mimic, inhibitor, and negative controls, along with SNAI2-targeting siRNA and i....
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Migratory and invasive capacities of SK-OV-3 cells modulated by MALAT1
The experimental workflow is outlined in Figure 1. To investigate the role of MALAT1 in OvCa cell migration and invasion, we modulated its expression in SK-OV-3 cells. Upon knockdown of MALAT1, qPCR confirmed significant suppression of MALAT1 levels (p
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OvCa, the fifth leading gynecologic cancer, remains a major concern for women's health2. However, most cases are identified in advanced stages, which significantly limits effective treatment options, resulting in minimal improvement in overall survival rates12. Cancer metastasis stands out as a major contributor to patient mortality in EOC13. Emerging evidence implicates lncRNAs and miRNAs as pivotal regulators of EOC pathogenesis
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The authors have no conflicts of interest to declare.
This work was supported by the Fujian Provincial Natural Science Foundation Project (2021J011378).
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| Name | Company | Catalog Number | Comments |
|---|---|---|---|
| 0.22 μm PVDF membranes | Beyotime | FFP32 | |
| All-in-One miRNA qRT-PCR Detection Kit | FulenGen | QP115 | |
| Bovine serum albumin | Beyotime | ST025 | |
| Chemiluminescence substrate | Suzhou Haixing Bioscience Co., Ltd. | TCH-C335 | |
| Chemiluminescence substrate | Millipore | WBKLS0100 | |
| Dual Luciferase Reporter Gene Assay Kit | beyotime | RG027 | |
| Foetal bovine serum | Suzhou Haixing Bioscience Co., Ltd. | FBP-C550 | |
| Goat Anti-Mouse IgG FITC | Affinity | S0007 | |
| Goat Anti-Rabbit IgG FITC | Affinity | S0008 | |
| Lipofectamine 2500 | Guangzhou Yingxin Biotechnology Co., Ltd. | sj-lip-2500 | |
| MALAT1 interference lentivirus | SHANGHAI GENECHEM Co., Ltd. | LV-MALAT1-sh | |
| MALAT1 overexpression lentivirus | SHANGHAI GENECHEM Co., Ltd. | LV-MALAT1-OE | |
| McCoy's 5A | Suzhou Haixing Bioscience Co., Ltd. | GUMD-B305 | |
| miR-200c-3p mimic | SHANGHAI GENECHEM Co., Ltd. | mic-hsa-200c-3p | |
| Multifunctional enzyme immunoassay analyzer | Perkin Elmer | Envision 2100 | |
| Penicillin-streptomycin solution | Suzhou Haixing Bioscience Co., Ltd. | GUSA-R002 | |
| Phosphatase inhibitor cocktail | GSbioth | GS1439A | |
| Primary antibody E-cadherin | Affinity | BF0219 | |
| Primary antibody N-cadherin | Affinity | AF5239 | |
| Primary antibody Vimentin | Affinity | AF7013 | |
| PrimeScript RT Master Mix | Takara | RR036A | |
| Real-Time PCR Detection System | Bio-Rad | CFX96 | |
| Refrigerated Centrifuge | eppendorf | 5810R | |
| RIPA lysis buffer | GSbioth | GS504A | |
| SDS-polyacrylamide gels | Beyotime | P0012A | |
| Secondary antibody Goat Anti-Mouse IgG FITC | Affinity | S0007 | |
| Secondary antibody Goat Anti-Rabbit IgG FITC | Affinity | S0008 | |
| SNAI2 siRNA | Guangzhou Yingxin Biotechnology Co., Ltd. | si-hsa-snail2 | |
| StarBase database | Sun Yat-sen University | http://starbase.sysu.edu.cn | |
| The BCA assay kit | Dingguo Biotech | BCA02 | |
| The Cell culture incubator | Heraeus | Hera cell 150 | |
| The imaging analysis system | Bio-Rad | GEL DOC 1000 | |
| The inverted microscope | Mshot | MI152-N | |
| The RNA extraction kit | ECOTOP | EK-1328-50T | |
| TRIzol reagent | Guangzhou Yingxin Biotechnology Co., Ltd. | T751379 | |
| Universal electrophoresis power supply | wixscientific | WIX-EP600 |
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