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Published on: January 25, 2017
Functional interleukin-2 receptors on intestinal epithelial cells
C Ciacci1, Y R Mahida, A Dignass
1Department of Medicine, Massachusetts General Hospital, Boston 02114.
Insights
Interleukin-2 (IL-2) receptors are present on intestinal epithelial cells, influencing their proliferation and gene expression. This suggests IL-2 integrates immune and epithelial responses in the gut.
Area of Science:
- Immunology
- Gastroenterology
- Cell Biology
Background:
- The cytokine Interleukin-2 (IL-2) is primarily known for its role in lymphocyte activation and immune responses.
- Its potential functions in non-immune cells, particularly in the intestinal epithelium, are less understood.
Purpose of the Study:
- To investigate the presence, characteristics, and functionality of IL-2 receptors on intestinal epithelial cells.
- To explore the impact of IL-2 on epithelial cell proliferation and gene expression.
Main Methods:
- Utilized the IEC-6 cell line and primary rat intestinal epithelial cells.
- Performed radioligand binding assays with 125I-IL-2.
- Conducted Western blot and Northern blot analyses for IL-2 receptor beta chain.
- Assessed cell proliferation and gene expression (TGF-beta, mac-2) following IL-2 treatment.
Main Results:
- Specific binding of IL-2 to IEC-6 cells was demonstrated, indicating the presence of intermediate and low affinity receptors.
- IL-2 binding and signaling were confirmed via Western blot for the IL-2 receptor beta chain.
- IL-2 modulated IEC-6 cell proliferation, initially stimulating then inhibiting it.
- IL-2 treatment significantly enhanced the expression of TGF-beta and mac-2 in IEC-6 cells.
- IL-2 receptor expression was confirmed in primary intestinal epithelial cells, independent of lymphocytes.
Conclusions:
- Intestinal epithelial cells express functional IL-2 receptors.
- IL-2 influences intestinal epithelial cell proliferation and gene expression, suggesting a broader role beyond lymphocyte regulation.
- IL-2 may act as a mediator integrating immune and epithelial cell functions within the intestinal mucosa.
Abstract:
The presence of receptors for the cytokine IL-2 was assessed in the IEC-6 cell line established from normal rat crypt epithelium and primary intestinal epithelial cells. 125I-IL-2 was found to specifically bind to subconfluent IEC-6 cells. Maximal binding was observed within 30 min after addition of the ligand; binding could be inhibited by excess unlabeled IL-2 or addition of antibody to the IL-2 receptor. Both intermediate and low affinity receptors with approximate Kd of 10 and 100 pM, respectively were present. Kinetic analysis were consistent with the results of Western blot analysis using an antisera to the 75-kD IL-2 receptor beta chain. IL-2 receptors appeared to be functional; addition of IL-2 led to modulation of proliferation with initial stimulation at 24 h followed by inhibition at 48 h. This effect could be blocked by addition of antibody to the IL-2 receptor beta chain. IL-2 treatment could be shown to enhance expression (range = 4- to 50-fold stimulation) of TGF-beta, as well as the lectin protein mac-2, in IEC-6 cells. The relevance of observations in the IEC-6 cell line to intestinal mucosa in vivo was supported by the demonstration of a gradient of expression of the IL-2 receptor in primary rat intestinal epithelial cells by Western blot analysis. In addition, mRNA for the IL-2 receptor-beta chain was demonstrated by Northern blot analysis using mRNA from primary rat intestinal epithelial cells depleted of detectable contaminating intraepithelial lymphocytes by two cycles of fractionation on Percoll gradients. Collectively, these observations suggest that the range of cellular targets of the putative lymphokine IL-2 is broader than appreciated, and IL-2 may serve to integrate epithelial and lymphocyte responses in the intestinal mucosa.
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