Related Experiment Video
Updated: Jan 19, 2026
Alternative RNA Splicing: Regulated Splicing of Exons and Introns
Overexpression and alternative splicing of NF-YA in breast cancer
Diletta Dolfini1, Valentina Andrioletti1,2, Roberto Mantovani3
1Dipartimento di Bioscienze, Università degli Studi di Milano, Via Celoria 26, 20133, Milano, Italy.
Abstract:
NF-Y is a CCAAT-binding trimeric transcription factor, whose regulome, interactome and oncogenic potential point to direct involvement in cellular transformation. Yet little is known about the levels of NF-Y subunits in tumors. We focused on breast carcinomas, and analyzed RNA-Seq datasets of TCGA and 54 BRCA cell lines at gene and isoforms level. We partitioned all tumors in the four major subclasses. NF-YA, but not histone-fold subunits NF-YB/NF-YC, is globally overexpressed, correlating with the proliferative Ki67 marker and a common set of 840 genes, with cell-cycle, metabolism GO terms. Their promoters are enriched in NF-Y, GC-rich and E2F sites. Surprisingly, there is an isoform switch, with the "short" isoform -NF-YAs- becoming predominant in tumors. E2F genes are also overexpressed in BRCA, but no switch in isoforms is observed. In Basal-like Claudinlow cell lines and tumors, expression of NF-YAl -long- isoform is high, together with 11 typical EMT markers and low levels of basal Keratins. Analysis of Progression-Free-Intervals indicates that tumors with unbalance of NF-YA isoforms ratios have worst clinical outcomes. The data suggest that NF-YA overexpression increases CCAAT-dependent, pro-growth genes in BRCA. NF-YAs is associated with a proliferative signature, but high levels of NF-YAl signal loss of epithelial features, EMT and acquisition of a more aggressive behavior in a subset of Claudinlow Basal-like tumors.
Insights
NF-YA subunit overexpression drives breast cancer growth by activating proliferation and cell-cycle genes. An isoform switch to NF-YAs correlates with proliferation, while NF-YAl indicates aggressive behavior in specific tumor types.
Area of Science:
- Molecular Biology
- Oncology
- Genomics
Background:
- Nuclear Factor Y (NF-Y) is a transcription factor implicated in cancer.
- Little is known about NF-Y subunit levels in breast tumors.
- NF-Y's role in cellular transformation warrants investigation in breast carcinoma.
Purpose of the Study:
- To investigate NF-Y subunit expression and isoform usage in breast cancer.
- To correlate NF-Y expression with tumor subclasses and clinical outcomes.
- To understand the functional implications of NF-YA isoform switching in breast cancer.
Main Methods:
- Analysis of TCGA and breast cancer cell line RNA-Seq datasets.
- Stratification of tumors into four major subclasses.
- Gene and isoform-level expression analysis, including correlation with proliferation markers and gene ontology terms.
Main Results:
- NF-YA is globally overexpressed in breast carcinomas, unlike NF-YB/NF-YC.
- NF-YA overexpression correlates with proliferation (Ki67) and cell-cycle/metabolism genes.
- A switch to the short NF-YAs isoform is observed in tumors, while the long NF-YAl isoform is linked to EMT and aggressive behavior in Claudin-low basal-like tumors.
Conclusions:
- NF-YA overexpression promotes growth-promoting genes in breast cancer.
- The NF-YA isoform switch (NF-YAs vs. NF-YAl) has distinct clinical implications.
- Unbalanced NF-YA isoform ratios are associated with poorer progression-free survival in breast cancer patients.
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