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Mutant cell line demonstrating a block in insulin and insulin-like growth factor type 1 (IGF-1) induced mitogenesis
B Leckett1, A Spurmanis, C Allen
1Department of Medicine, McGill University, Quebec, Canada.
Abstract:
Recently, we have isolated a Chinese hamster cell variant (IV-A1-j) resistant to an insulin-diphtheria-A chain toxic conjugate (Leckett and Germinario: Cytotechnology [in press]. This cell line exhibited a decreased level of insulin binding, but normal growth in serum-containing medium when compared to the parental cell line (V-79). In this paper we further demonstrate that while IV-A1-j cells are capable of growing in serum-containing medium, they are insensitive to the mitogenic actions of either insulin or IGF-1. In contrast, epidermal growth factor (EGF) and/or alpha-thrombin (THR) generate a mitogenic effect in IV-A1-j cells comparable to that observed in the parental V-79 cells. The combination of EGF and/or THR with either insulin or IGF-1 results in an increase in V-79 cell growth above EGF and/or THR alone. On the other hand, insulin or IGF-1 in the presence of other mitogens did not stimulate further growth in IV-A1-j cells. While insulin binding was lower in IV-A1-j cells, internalization of 125I-insulin was not different in the two cell types. Additionally, insulin-stimulated glycogen synthesis and protein synthesis were not different in the two cell types. These observations are consistent with insulin and IGF-1 sharing a mitogenic signalling pathway in Chinese hamster fibroblasts and that this pathway is distinct from other growth factor signalling pathways. The fact that this pathway is defective in the IV-A1-j cell line indicates the potential usefulness of these cells in identifying a key step(s) in the insulin (IGF-1) mitogenic pathway.
Insights
A new Chinese hamster cell variant (IV-A1-j) is resistant to insulin but not other growth factors, revealing a distinct insulin/IGF-1 mitogenic pathway defect useful for research.
Area of Science:
- Cell Biology
- Molecular Endocrinology
- Cancer Research
Background:
- Insulin and Insulin-like Growth Factor 1 (IGF-1) are key mitogens.
- Chinese hamster fibroblasts (V-79) are a model for studying growth factor signaling.
- A cell variant (IV-A1-j) resistant to an insulin conjugate was isolated.
Purpose of the Study:
- To characterize the mitogenic response of the IV-A1-j cell line to insulin, IGF-1, and other growth factors.
- To investigate the insulin/IGF-1 signaling pathway in Chinese hamster fibroblasts.
- To assess the utility of the IV-A1-j cell line in dissecting growth factor signaling.
Main Methods:
- Cell culture of V-79 and IV-A1-j lines.
- Assessment of cell proliferation in response to insulin, IGF-1, epidermal growth factor (EGF), and alpha-thrombin (THR).
- Measurement of 125I-insulin binding, internalization, and insulin-stimulated glycogen/protein synthesis.
Main Results:
- IV-A1-j cells showed reduced insulin binding but normal growth.
- IV-A1-j cells were insensitive to insulin/IGF-1 mitogenesis but responded to EGF/THR.
- Insulin/IGF-1 did not enhance EGF/THR-stimulated growth in IV-A1-j cells, unlike in V-79 cells.
- Insulin internalization and stimulated synthesis pathways were unaffected in IV-A1-j cells.
Conclusions:
- Insulin and IGF-1 share a distinct mitogenic signaling pathway in Chinese hamster fibroblasts.
- This pathway is separate from EGF and THR signaling pathways.
- The IV-A1-j cell line possesses a defect in this shared insulin/IGF-1 mitogenic pathway, making it a valuable tool for identifying key signaling components.