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The Yin and Yang of YY1 in tumor growth and suppression
1Vascular Biology and Translational Research, School of Medical Sciences, The University of New South Wales, Sydney, New South Wales, 2052, Australia.
Abstract:
Yin Yang-1 (YY1) is a zinc finger protein and member of the GLI-Kruppel family that can activate or inactivate gene expression depending on interacting partners, promoter context and chromatin structure, and may be involved in the transcriptional control of ∼10% of the total mammalian gene set. A growing body of literature indicates that YY1 is overexpressed in multiple cancer types and that increased YY1 levels correlate with poor clinical outcomes in many cancers. However, the role of YY1 in the promotion or suppression of tumor growth remains controversial and its regulatory effects may be tumor cell type dependent at least in experimental systems. The molecular mechanisms responsible for the apparently conflicting roles of YY1 are not yet fully elucidated. This review highlights recent advances in our understanding of regulatory insights involving YY1 function in a range of cancer types. For example, YY1's roles in tumor growth involve stabilization of hypoxia-inducible factor HIF-1α in a p53 independent manner, negative regulation of miR-9 transcription, control of MYCT1 transcription, a novel miR-193a-5p-YY1-APC axis, intracellular ROS and mitochondrial superoxide generation, p53 reduction and EGFR activation, control of genes associated with mitochondrial energy metabolism and miRNA regulatory networks involving miR-7, miR-9, miR-34a, miR-186, miR-381, miR-584-3p and miR-635. On the other hand, tumor suppressor roles of YY1 appear to involve YY1 stimulation of tumor suppressor BRCA1, increased Bax transcription and apoptosis involving cytochrome c release and caspase-3/-7 cleavage, induction of heme oxygenase-1, inhibition of pRb phosphorylation and p21 binding to cyclin D1 and cdk4, reduced expression of long noncoding RNA of SOX2 overlapping transcript, and MUC4/ErbB2/p38/MEF2C-dependent downregulation of MMP-10. YY1 expression is associated with that of cancer stem cell markers SOX2, BMI1 and OCT4 across many cancers suggesting multidynamic regulatory control and groups of cancers with distinct molecular signatures. Greater understanding of the mechanistic roles of YY1 will in turn lead to the development of more specific approaches to modulate YY1 expression and activity with therapeutic potential.
Insights
Yin Yang-1 (YY1) is a key transcription factor implicated in cancer, with dual roles in tumor promotion and suppression. Understanding its complex mechanisms is crucial for developing targeted cancer therapies.
Area of Science:
- Molecular Biology
- Cancer Research
- Genetics
Background:
- Yin Yang-1 (YY1) is a GLI-Kruppel family zinc finger protein regulating gene expression.
- YY1 overexpression correlates with poor outcomes in many cancers, but its precise role is debated.
- Mechanisms underlying YY1's contradictory functions in tumorigenesis are not fully understood.
Purpose of the Study:
- To review recent advances in understanding YY1's regulatory roles in various cancer types.
- To elucidate the molecular mechanisms behind YY1's dual functions in cancer.
- To highlight the therapeutic potential of modulating YY1 activity.
Main Methods:
- Literature review of recent studies on YY1 function in cancer.
- Analysis of YY1's involvement in gene transcription, miRNA regulation, and signaling pathways.
- Examination of YY1's association with cancer stem cell markers.
Main Results:
- YY1 promotes tumor growth via HIF-1α stabilization, miR-9 repression, and ROS generation.
- YY1 suppresses tumors by inducing BRCA1, promoting apoptosis, and inhibiting cell cycle progression.
- YY1 is linked to cancer stem cell markers (SOX2, BMI1, OCT4), indicating complex regulatory control.
Conclusions:
- YY1 exhibits context-dependent oncogenic and tumor-suppressive functions.
- Elucidating YY1's intricate molecular roles is vital for targeted cancer therapeutic strategies.
- Targeting YY1 offers potential for novel cancer treatment approaches.
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