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Nuclear IRS-1 and cancer
Krzysztof Reiss1, Luis Del Valle, Adam Lassak
1Neurological Cancer Research, Stanley S. Scott Cancer Center, School of Medicine, LSU Health Sciences Center, New Orleans, LA 70112, USA. kreiss@lsuhsc.edu
Abstract:
The family of insulin receptor substrates (IRS) consists of four proteins (IRS-1-IRS-4), which were initially characterized as typical cytosolic adaptor proteins involved in insulin receptor (IR) and insulin-like growth factor I receptor (IGF-IR) signaling. The first cloned and characterized member of the IRS family, IRS-1, has a predicted molecular weight of 132 kDa, however, as a result of its extensive serine phosphorylation it separates on a SDS gel as a band of approximately 160-185 kDa. In addition to its metabolic and growth-promoting functions, IRS-1 is also suspected to play a role in malignant transformation. The mechanism by which IRS-1 supports tumor growth is not fully understood, and the argument that IRS-1 merely amplifies the signal from the IGF-1R and/or IR requires further investigation. Almost a decade ago, we reported the presence of nuclear IRS-1 in medulloblastoma clinical samples, which express viral oncoprotein, large T-antigen of human polyomavirus JC (JCV T-antigen). This first demonstration of nuclear IRS-1 was confirmed by several other laboratories. Nuclear IRS-1 was also detected by cells expressing the SV40 T-antigen, v-Src, in immortalized fibroblasts stimulated with IGF-I, in hepatocytes, 32D cells, and in an osteosarcoma cell line. More recently, nuclear IRS-1 was detected in breast cancer cells in association with estrogen receptor alpha (ERα), and in JC virus negative medulloblastoma cells expressing estrogen receptor beta (ERβ), further implicating nuclear IRS-1 in cellular transformation. Here, we discuss how nuclear IRS-1 acting on DNA repair fidelity, transcriptional activity, and cell growth can support tumor development and progression.
Insights
Insulin receptor substrate-1 (IRS-1) is found in the nucleus, not just the cytoplasm. Nuclear IRS-1 may promote tumor growth by affecting DNA repair, gene activity, and cell proliferation.
Area of Science:
- Molecular Biology
- Cellular Biology
- Oncology
Background:
- Insulin receptor substrates (IRS) are key signaling proteins for insulin and IGF-1 receptors.
- IRS-1, a primary member, is known for its role in cell metabolism and growth.
- Emerging evidence suggests IRS-1 may also contribute to malignant transformation.
Purpose of the Study:
- To investigate the role of nuclear IRS-1 in cellular transformation and tumor development.
- To explore the mechanisms by which nuclear IRS-1 influences DNA repair, transcription, and cell growth.
- To consolidate evidence for nuclear IRS-1 presence in various cancer types.
Main Methods:
- Review of existing literature and previous experimental findings.
- Analysis of IRS-1 localization in various cell types and clinical samples.
- Discussion of IRS-1's interaction with oncogenic proteins and receptors.
Main Results:
- Nuclear localization of IRS-1 has been confirmed in multiple cell types, including medulloblastoma, breast cancer, and immortalized fibroblasts.
- Nuclear IRS-1 has been detected in association with viral oncoproteins (JCV T-antigen, SV40 T-antigen) and hormone receptors (ERα, ERβ).
- IRS-1's nuclear function is implicated in modulating DNA repair fidelity, transcriptional activity, and cell growth.
Conclusions:
- Nuclear IRS-1 is a significant factor in cellular transformation and tumor progression.
- The presence and function of nuclear IRS-1 offer potential therapeutic targets for cancer treatment.
- Further research is warranted to fully elucidate the oncogenic mechanisms involving nuclear IRS-1.
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