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Role of insulin-like growth factor binding protein-3 in breast cancer cell growth
Lynette J Schedlich1, Lloyd D Graham
1Kolling Institute of Medical Research, University of Sydney, Royal North Shore Hospital, Sydney, Australia. lyns@med.usyd.edu.au
Abstract:
The mitogenic effects of insulin-like growth factors (IGFs) are regulated by a family of insulin-like growth factor binding proteins (IGFBPs). One member of this family, IGFBP-3, mediates the growth-inhibitory and apoptosis-inducing effects of a number of growth factors and hormones such as transforming growth factor-beta, retinoic acid, and 1,25-dihydroxyvitamin D3. IGFBP-3 may act in an IGF-dependent manner by attenuating the interaction of pericellular IGFs with the type-I IGF receptor. It may also act in an IGF-independent manner by initiating intracellular signaling from a cell surface receptor, or by direct nuclear action, or both. The possibility of a membrane-bound receptor is strengthened by recent studies which have identified members of the transforming growth factor-beta receptor family as having a role, either directly or indirectly, in signaling from the cell surface by IGFBP-3. A number of growth factors and hormones stimulate the expression and secretion of cellular IGFBP-3, which then signals from the cell surface to bring about some of the effects attributed to the primary agents. Within the cell, the apoptosis-inducing tumor suppressor, p53, can also induce IGFBP-3 expression and secretion. Since IGFBP-3 upregulates the cell cycle inhibitor, p21(Waf1), and increases the ratio of proapoptotic to antiapoptotic members of the Bcl family, it appears to exert the same effects on major downstream targets of cell signaling as p53 does. The nuclear localization of IGFBP-3 has been described in a number of cell types. IGFBP-3 may act to import IGFs or other nuclear localization signal-deficient signaling molecules into the nucleus. It may also act directly in the nucleus by enhancing the activity of retinoid X receptor-alpha and thereby promote apoptosis. All of the above phenomena will be discussed with particular emphasis on the growth of breast cancer cells.
Insights
Insulin-like growth factor-binding protein 3 (IGFBP-3) inhibits cell growth and induces apoptosis through both insulin-like growth factor (IGF)-dependent and -independent pathways. IGFBP-3 also impacts breast cancer cell growth.
Area of Science:
- Cell biology
- Molecular endocrinology
- Cancer research
Background:
- Insulin-like growth factors (IGFs) regulate cell proliferation.
- Insulin-like growth factor-binding proteins (IGFBPs) modulate IGF actions.
- IGFBP-3 is a key regulator of growth inhibition and apoptosis.
Purpose of the Study:
- To elucidate the multifaceted roles of IGFBP-3 in cellular regulation.
- To explore IGFBP-3's mechanisms of action, including IGF-dependent and -independent signaling.
- To emphasize IGFBP-3's impact on breast cancer cell growth.
Main Methods:
- Review of existing literature on IGFBP-3 signaling pathways.
- Analysis of IGFBP-3's interactions with growth factors, hormones, and cellular receptors.
- Examination of IGFBP-3's effects on cell cycle regulators and apoptosis pathways.
Main Results:
- IGFBP-3 mediates growth inhibition and apoptosis induced by various agents like TGF-β, retinoic acid, and vitamin D3.
- IGFBP-3 exerts effects via IGF-dependent mechanisms (attenuating IGF-I receptor interaction) and IGF-independent mechanisms (cell surface and nuclear signaling).
- IGFBP-3 signaling involves TGF-β receptor family members and influences downstream targets like p53, p21(Waf1), and Bcl family proteins.
Conclusions:
- IGFBP-3 functions as a critical regulator of cell growth and apoptosis through diverse signaling pathways.
- IGFBP-3's nuclear actions, including enhancing retinoid X receptor-alpha activity, contribute to its pro-apoptotic effects.
- Understanding IGFBP-3's complex roles is crucial for investigating breast cancer progression and developing therapeutic strategies.
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