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Published on: June 9, 2023
Role of "oncogenic nexus" of CIP2A in breast oncogenesis: how does it work?
Pradip De1, Jennifer H Carlson2, Brian Leyland-Jones1
1Department of Molecular & Experimental Medicine, Avera Research Institute Sioux Falls, SD, USA ; Department of Internal Medicine, SSOM, USD Sioux Falls, SD, USA.
Abstract:
The CIP2A gene is an oncogene associated with solid and hematologic malignancies [1]. CIP2A protein is an oncoprotein and a potential cancer therapy target [2]. Literature shows that CIP2A inhibits the tumor suppressor protein PP2A [3] which downregulates phophorylation of AKT, a hallmark of cancers [4] and stabilizes the proto-oncogene, c-MYC in tumor cells [5], the comprehensive action of CIP2A and its functional interaction(s) with other oncoproteins and tumor suppressors is not clearly established. Recently we tried to put forward a contextual mode-of-action of CIP2A protein in a review which proposed that CIP2A influences oncogenesis via an "oncogenic nexus" [1]. In this review we critically evaluated the potential relevance of the mode-of-action of the "oncogenic nexus" of CIP2A in breast carcinogenesis and appraised the role of this nexus in different PAM50 luminal A, PAM50 luminal B, PAM50 HER2-enriched and PAM50 basal BC. This review has a novel approach. Here we have not only compiled and discussed the latest developments in this field but also presented data obtained from c-BioPortal and STRING10 in order to substantiate our view regarding the mode-of-action of the "oncogenic nexus" of CIP2A. We functionally correlated alterations of genes pertaining to the "oncogenic nexus" of CIP2A with protein-protein interactions between the different components of the nexus including (1) subunits of PP2A, (2) multiple transcription factors including MYC oncogene and (3) components of the PI3K-mTOR and the MAPK-ERK oncogenic pathways. Using these proteins as "input" to STRING10 we studied the association, Action view, at the highest Confidence level. OncoPrints (c-BioPortal) showed alterations (%) of regulatory subunits genes of PP2A (PPP2R1A and PPP2R1B) along with alterations of CIP2A in breast invasive carcinoma (TCGA, Nature 2012 & TCGA, Provisional). Similar genetic alterations of PP2A were also observed in samples of breast tumors at our Avera Research Institute, SD. In an attempt to critically evaluate the role of "oncogenic nexus" of CIP2A in subtypes of BC, we used PPP2R1A and PPP2R1B as "inputs" into the STRING10 and obtained their predicted association (Action view) in respect to CIP2A. The outcome of this exercise has been discussed in the light of the literature in the BC research in the context of "oncogenic nexus" of CIP2A. In summary, herein we review the progress in our understanding of how CIP2A regulates oncogenic transformations of breast cells via PP2A-CIP2A "oncogenic nexus" and how we can prospect the clinical relevance of CIP2A in the context of BC.
Insights
The CIP2A oncogene drives breast cancer by inhibiting the tumor suppressor PP2A, creating an "oncogenic nexus." This nexus impacts key cancer pathways and offers potential therapeutic targets for breast cancer treatment.
Area of Science:
- Oncology
- Molecular Biology
- Genetics
Background:
- CIP2A is an oncogene implicated in various cancers.
- CIP2A inhibits the tumor suppressor PP2A, affecting AKT phosphorylation and c-MYC stability.
- The full role of CIP2A and its interactions in oncogenesis are not fully understood.
Purpose of the Study:
- To critically evaluate the relevance of CIP2A's "oncogenic nexus" in breast carcinogenesis.
- To appraise the role of this nexus in different subtypes of breast cancer (BC).
- To present data substantiating the proposed mode-of-action of CIP2A's "oncogenic nexus".
Main Methods:
- Literature review and critical evaluation.
- Analysis of data from c-BioPortal and STRING10.
- Functional correlation of gene alterations with protein-protein interactions within the CIP2A nexus.
Main Results:
- CIP2A forms an "oncogenic nexus" influencing breast cancer development.
- Genetic alterations in PP2A subunits (PPP2R1A, PPP2R1B) and CIP2A are observed in breast cancer.
- CIP2A's interaction with PP2A, transcription factors, and oncogenic pathways (PI3K-mTOR, MAPK-ERK) is functionally correlated.
Conclusions:
- CIP2A regulates oncogenic transformations in breast cells through the PP2A-CIP2A "oncogenic nexus".
- This nexus plays a role in various breast cancer subtypes.
- CIP2A holds potential clinical relevance as a therapeutic target in breast cancer.
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