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LncRNA SNHG6/miR-125b-5p/BMPR1B Axis: A New Therapeutic Target for Triple-Negative Breast Cancer
Yufei Lv1, Xiaohong Lv1, Huike Yang1
1Department of Anatomy, Harbin Medical University, Harbin, China.
Background:
Triple-negative breast cancer (TNBC) is a significant cause of patient morbidity. The exactly pathobiological features of this condition has yet to be completely elucidated.
Methods:
Breast cancer data obtained from The Cancer Genome Atlas (TCGA) database were evaluated for lncRNA SNHG6 expression. Normal human breast epithelial cell line (MCF-10A) and other breast cancer cell lines (BT-549, MDA-MB-231, Hs 578t, ZR-75-30, SK-BR-3, MCF-7) were also assessed for lncRNA SNHG6 expressions. Cellular proliferative ability was evaluated with colony formation and CCK-8 assays. The ability of cells to migrate was scrutinized with the wound healing and Boyden chamber cell migration assays. qRT-PCR enabled for detection of lncRNA SNHG6, miR-125b-5p and BMPR1B mRNA expressions. Protein BMPR1B expressions were further assessed using Western Blotting. Direct binding sites between transcripts were determined using dual-luciferase reporter assays. We also constructed a xenograft mouse model to further dissect the vivo implications of lncRNA SNHG6. Ki-67 and c-Caspase-3 expressions were detected using immunohistochemistry staining.
Results:
Breast cancer cell lines demonstrated higher lncRNA SNHG6 expressions, particularly TNBC cell lines, in contrast to normal breast epithelial cell lines. This finding coincided with those noted on analysis of TCGA breast cancer data. lncRNA SNHG6 knockdown inhibited TNBC cell proliferation, migration, while promoted cell apoptosis. Furthermore, suppressed lncRNA SNHG6 expressions resulted in lower tumor weights and volumes in a xenograft mouse model, as evidenced by Ki-67 and c-Caspase-3 expression profiles in tumor tissues. miR-125b-5p and lncRNA SNHG6/BMPR1B both possessed direct binding sites for each other which was validated utilizing a dual-luciferase reporter assay. Decreasing lncRNA SNHG6 expression in TNBC cells upregulated miR-125b-5p expression. Another side, inhibiting miR-125b-5p upregulated BMPR1B expression in these cells. Moreover, knocking down lncRNA SNHG6 downregulated BMPR1B expression in TNBC cells, and the finding was rescued in cells which were exposed to miR-125b-5p inhibitor. Downregulating miR-125b-5p mitigated the effect of suppressing lncRNA SNHG6 on TNBC cell proliferation, migration, and apoptosis.
Conclusion:
Downregulation of lncRNA SNHG6 could inhibit TNBC cell proliferative, migratory capabilities and promote apoptosis capability, likely through modulation of the miR-125b-5p/BMPR1B axis. This axis may be targeted in formulating new therapies for TNBC.
Insights
Downregulating long non-coding RNA SNHG6 inhibits triple-negative breast cancer (TNBC) progression by affecting the miR-125b-5p/BMPR1B pathway. This suggests SNHG6 as a potential therapeutic target for TNBC.
Area of Science:
- Molecular Biology
- Oncology
- Genetics
Background:
- Triple-negative breast cancer (TNBC) presents a significant clinical challenge due to incompletely understood pathobiology.
- Identifying novel molecular targets is crucial for developing effective TNBC therapies.
Purpose of the Study:
- To investigate the role of long non-coding RNA SNHG6 (lncRNA SNHG6) in TNBC.
- To elucidate the molecular mechanisms underlying lncRNA SNHG6 function in TNBC progression.
- To evaluate the therapeutic potential of targeting lncRNA SNHG6.
Main Methods:
- Analysis of lncRNA SNHG6 expression in The Cancer Genome Atlas (TCGA) database and breast cancer cell lines.
- In vitro assays (colony formation, CCK-8, wound healing, Boyden chamber) to assess proliferation and migration.
- qRT-PCR and Western Blotting to quantify gene and protein expression.
- Dual-luciferase reporter assays to validate direct binding interactions.
- In vivo studies using a xenograft mouse model.
Main Results:
- lncRNA SNHG6 expression was significantly higher in TNBC cell lines and tumors compared to normal breast tissues.
- Knockdown of lncRNA SNHG6 suppressed TNBC cell proliferation and migration, and induced apoptosis.
- In vivo studies showed reduced tumor growth and volume upon lncRNA SNHG6 suppression.
- lncRNA SNHG6 directly binds to miR-125b-5p, and this interaction influences BMPR1B expression, modulating TNBC cell behavior.
Conclusions:
- lncRNA SNHG6 downregulation inhibits TNBC cell proliferation and migration while promoting apoptosis.
- The miR-125b-5p/BMPR1B axis is a key mediator of lncRNA SNHG6's effects in TNBC.
- Targeting the lncRNA SNHG6/miR-125b-5p/BMPR1B pathway offers a promising therapeutic strategy for TNBC.
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