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An ELISA Based Binding and Competition Method to Rapidly Determine Ligand-receptor Interactions
Published on: March 14, 2016
Identification of a novel low-affinity receptor for human interleukin-7
R J Armitage1, S F Ziegler, D J Friend
1Immunex Research and Development Corporation, Seattle, WA 98101.
Insights
This study reveals a novel, low-affinity interleukin-7 receptor (IL-7R) on human hematopoietic cells, distinct from the previously identified high-affinity IL-7R. This low-affinity IL-7R can mediate biological signals, expanding our understanding of IL-7 signaling pathways.
Area of Science:
- Immunology
- Cell Biology
Background:
- Interleukin-7 (IL-7) is crucial for lymphocyte development.
- The high-affinity IL-7 receptor (IL-7R) has been cloned and characterized.
- The expression and regulation of IL-7R on various human hematopoietic cells require further investigation.
Purpose of the Study:
- To investigate the expression and regulation of IL-7R on human primary hematopoietic cells and cell lines.
- To identify potential distinct forms of IL-7R with different affinities.
- To determine if low-affinity IL-7 binding can elicit a biological response.
Main Methods:
- Biotinylation of human recombinant IL-7 for flow cytometry analysis.
- Competition assays with unlabeled IL-7 to assess binding specificity.
- Analysis of IL-7R mRNA levels and [125I]IL-7 binding.
- Cross-linking studies to identify IL-7-associated proteins.
- Cell proliferation assays to evaluate IL-7 signaling.
Main Results:
- A high-intensity staining with biotinylated IL-7 was observed on various hematopoietic cells, indicating a high number of binding sites.
- This reactivity was mediated by a low-affinity IL-7R (Ka 10^6-10^7 M^-1), distinct from the cloned high-affinity IL-7R.
- Monoclonal antibodies specific for the cloned IL-7R did not correlate with the distribution of biotinylated IL-7 binding.
- [125I]IL-7 associated with different molecular weight proteins (62/70 kDa) compared to the cloned receptor (75-80 kDa).
- IL-7 induced proliferation in THP1 cells expressing only the low-affinity IL-7R, demonstrating its functional capacity.
Conclusions:
- The data demonstrate the existence of a distinct low-affinity IL-7R.
- This low-affinity IL-7R is expressed in high numbers on diverse hematopoietic cell lineages.
- The low-affinity IL-7R is a product of a gene separate from that encoding the cloned high-affinity IL-7R.
- Binding to the low-affinity IL-7R can transduce a biological signal, suggesting a broader role for IL-7 in hematopoiesis.
Abstract:
Human recombinant interleukin-7 (IL-7) was labeled with biotin and used to examine IL-7 receptor (IL-7R) expression and regulation on human primary hematopoietic cells, the monocytoid line THP1, and a range of B- and pre-B-celi lines by flow cytometry. A strong intensity of staining was observed using relatively high (greater than 1 x 10(-7) mol/L) concentrations of biotinylated IL-7 on the majority of cell types examined. This reactivity, which could be effectively competed with excess unlabeled IL-7, did not correlate with either mRNA levels for the cloned receptor or with estimates of IL-7R expression determined by [125I]IL-7 binding. Staining of cells with a titration of biotinylated IL-7 showed, at concentrations greater than 1 x 10(-7) mol/L binding with a Ka in the range of 1 x 10(6) mol/L-1, to 1 x 10(7) mol/L-1, an affinity 100 to 1,000 times lower than that reported for the cloned IL-7 receptor. Further data suggesting the existence of a distinct low- affinity IL-7R were provided by two antibodies specific for the cloned IL-7R. Staining with these monoclonal antibodies (MoAbs) correlated with both IL-7R mRNA levels and receptor expression determined by [125I]IL-7 binding, but was not compatible with the distribution of reactivity seen with biotinylated IL-7. Using tritiated biotin to label IL-7, it was estimated that the total number of IL-7 binding sites on the cell lines examined ranged from 1 x 10(4) to at least 5 x 10(5)/cell. Cross-linking studies showed that [125I]IL-7 associated with two major proteins of approximately 62 Kd and 70 Kd on the surface of RPMI 1788 and THP1 cells, in contrast to the 75- to 80 Kd molecule characteristic of the previously cloned receptor, expressed on the surface of Daudi cells. Proliferation of THP1 cells, expressing only the low-affinity form of IL-7R and lacking detectable IL-7R mRNA, could be inhibited by the addition of IL-7 in a concentration-dependent fashion, indicating that, at least on this cell line, binding of IL-7 with a Ka of 1 x 10(6) mol/L-1 to 1 x 10(7) mol/L-1 can transduce a biological signal. Taken together, the data contained in this report demonstrate the existence of a low-affinity IL-7R, expressed in high numbers on hematopoietic cells of different lineages, which is the product of a gene distinct from that encoding the cloned IL-7R.
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