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Confocal Microscopy Reveals Cell Surface Receptor Aggregation Through Image Correlation Spectroscopy
Published on: August 2, 2018
Cellular distribution of the IGF-1R in corneal epithelial cells
Danielle M Robertson1, Meifang Zhu, Yu-Chieh Wu
1Department of Ophthalmology, The University of Texas Southwestern Medical Center, 5323 Harry Hines Blvd., Dallas, TX 75390-9057, USA. Danielle.Robertson@utsouthwestern.edu
Insights
Insulin-like growth factor 1 receptor (IGF-1R) is found in the nucleus of human corneal epithelial cells, complexed with E-cadherin. This nuclear localization is independent of IGF-1 stimulation and suggests novel functions.
Area of Science:
- Ophthalmology
- Cell Biology
- Molecular Biology
Background:
- The insulin-like growth factor 1 receptor (IGF-1R) is crucial for cell growth and survival.
- Its role in corneal epithelial cells, particularly its subcellular localization and interactions, is not fully understood.
Purpose of the Study:
- To characterize the expression and subcellular localization of IGF-1R in human corneal epithelial cells.
- To investigate IGF-1R interactions with E-cadherin and its nuclear trafficking.
Main Methods:
- Immunofluorescence microscopy
- Subcellular fractionation
- Western blotting
- Co-immunoprecipitation
- Primary and immortalized human corneal epithelial cell lines
Main Results:
- IGF-1R was predominantly localized to the nucleus in a perinuclear cap pattern, co-localizing with the Golgi complex.
- Nuclear IGF-1R was found in soluble and chromatin-bound fractions and was not altered by IGF-1 stimulation or growth factor withdrawal.
- IGF-1R formed a complex with E-cadherin at points of cell-cell contact.
Conclusions:
- This study is the first to report nuclear localization of IGF-1R and its complexation with E-cadherin in corneal epithelial cells.
- Nuclear IGF-1R trafficking appears independent of canonical ligand-induced signaling.
- These findings suggest novel, non-canonical functions of IGF-1R within the nucleus of corneal epithelial cells.
Abstract:
This study characterized the expression and subcellular localization of the IGF-1R in human corneal epithelial cells. Using a human telomerase-immortalized corneal epithelial cell line, IGF-1R expression and localization was assayed by immunofluorescence and subcellular fractionation followed by western blot. IGF-1R expression was confirmed in primary cultured human corneal epithelial cells. Nuclear localization was assessed under basal and IGF-1 stimulated culture conditions; phosphorylation status of the receptor in response to IGF-1 was demonstrated by western blot. IGF-1R:E-cadherin interactions were detected by immunofluorescence and co-immunoprecipitation of whole cell lysates. The results of this study demonstrated that IGF-1R localized predominantly to the nucleus and in a perinuclear cap pattern which co-localized with the Golgi complex in proliferating corneal epithelial cells. There was no difference in nuclear localization between primary or telomerized cell lines. Subcellular fractionation confirmed IGF-1Rα- and β-subunit localization in soluble and chromatin-bound nuclear fractions. Neither growth factor withdrawal nor IGF-1 stimulation altered nuclear IGF-1R. At points of cell-cell contact, IGF-1R co-localized with E-cadherin; co- immunoprecipitation assays confirmed the presence of an IGF-1R:E-cadherin complex. Importantly, this is the first report to identify IGF-1R in the nucleus and complexed with E-cadherin at points of cell-cell contact in corneal epithelial cells. Nuclear trafficking appeared to be independent of ligand-mediated events at the plasma membrane. The identification of IGF-1R in the nucleus and complexed with E-cadherin suggests novel regulatory functions outside the canonical ligand-induced endocytosis signaling pathway.
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