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Updated: Aug 8, 2025

Dual CRISPR-Interference Strategy for Targeting Synthetic Lethal Interactions Between Non-Coding RNAs in Cancer Cells
Published on: May 30, 2025
OBSCN restoration via OBSCN-AS1 long-noncoding RNA CRISPR-targeting suppresses metastasis in triple-negative breast
Talia Guardia1,2, Yuqi Zhang3,4, Keyata N Thompson2,5
1Department of Biochemistry and Molecular Biology, University of Maryland School of Medicine, Baltimore, MD 21201.
Abstract:
Mounting evidence implicates the giant, cytoskeletal protein obscurin (720 to 870 kDa), encoded by the OBSCN gene, in the predisposition and development of breast cancer. Accordingly, prior work has shown that the sole loss of OBSCN from normal breast epithelial cells increases survival and chemoresistance, induces cytoskeletal alterations, enhances cell migration and invasion, and promotes metastasis in the presence of oncogenic KRAS. Consistent with these observations, analysis of Kaplan-Meier Plotter datasets reveals that low OBSCN levels correlate with significantly reduced overall and relapse-free survival in breast cancer patients. Despite the compelling evidence implicating OBSCN loss in breast tumorigenesis and progression, its regulation remains elusive, limiting any efforts to restore its expression, a major challenge given its molecular complexity and gigantic size (~170 kb). Herein, we show that OBSCN-Antisense RNA 1 (OBSCN-AS1), a novel nuclear long-noncoding RNA (lncRNA) gene originating from the minus strand of OBSCN, and OBSCN display positively correlated expression and are downregulated in breast cancer biopsies. OBSCN-AS1 regulates OBSCN expression through chromatin remodeling involving H3 lysine 4 trimethylation enrichment, associated with open chromatin conformation, and RNA polymerase II recruitment. CRISPR-activation of OBSCN-AS1 in triple-negative breast cancer cells effectively and specifically restores OBSCN expression and markedly suppresses cell migration, invasion, and dissemination from three-dimensional spheroids in vitro and metastasis in vivo. Collectively, these results reveal the previously unknown regulation of OBSCN by an antisense lncRNA and the metastasis suppressor function of the OBSCN-AS1/OBSCN gene pair, which may be used as prognostic biomarkers and/or therapeutic targets for metastatic breast cancer.
Insights
Loss of obscurin (OBSCN) and its antisense RNA (OBSCN-AS1) promotes breast cancer metastasis. Restoring OBSCN-AS1 expression suppresses tumor cell invasion and metastasis, suggesting potential therapeutic targets for breast cancer.
Area of Science:
- Molecular Biology
- Genetics
- Cancer Research
Background:
- The giant cytoskeletal protein obscurin (OBSCN) is implicated in breast cancer development.
- Loss of OBSCN in breast cancer cells enhances survival, chemoresistance, migration, invasion, and metastasis.
- The regulation of OBSCN expression in breast cancer remains largely unknown.
Purpose of the Study:
- To investigate the regulation of OBSCN expression in breast cancer.
- To identify novel regulatory elements involved in OBSCN expression.
- To explore the therapeutic potential of targeting OBSCN regulation in breast cancer.
Main Methods:
- Analysis of Kaplan-Meier Plotter datasets for OBSCN expression and patient survival.
- Identification and characterization of OBSCN-Antisense RNA 1 (OBSCN-AS1).
- CRISPR-activation of OBSCN-AS1 in triple-negative breast cancer cells.
- In vitro and in vivo assessment of cell migration, invasion, and metastasis.
Main Results:
- OBSCN and OBSCN-AS1 expression are positively correlated and downregulated in breast cancer biopsies.
- OBSCN-AS1 regulates OBSCN expression via chromatin remodeling (H3K4me3 enrichment) and RNA polymerase II recruitment.
- CRISPR-activation of OBSCN-AS1 restores OBSCN expression and suppresses breast cancer cell migration, invasion, and metastasis in vitro and in vivo.
Conclusions:
- A novel antisense long noncoding RNA, OBSCN-AS1, regulates OBSCN expression.
- The OBSCN-AS1/OBSCN gene pair functions as a metastasis suppressor in breast cancer.
- OBSCN-AS1 and OBSCN represent potential prognostic biomarkers and therapeutic targets for metastatic breast cancer.
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