IL-7R expression and IL-7 signaling confer a distinct phenotype on developing human B-lineage cells

Author:

Nodland Sonja E.1,Berkowska Magdalena A.2,Bajer Anna A.1,Shah Nisha1,de Ridder Dick3,van Dongen Jacques J. M.2,LeBien Tucker W.1,van Zelm Menno C.2

Affiliation:

1. Masonic Cancer Center, University of Minnesota, Minneapolis, MN;

2. Department of Immunology, Erasmus MC, University Medical Center, Rotterdam, The Netherlands; and

3. The Delft Bioinformatics Lab, Faculty of Electrical Engineering, Mathematics and Computer Science, Delft University of Technology, Delft, The Netherlands

Abstract

Abstract IL-7 is an important cytokine for lymphocyte differentiation. Similar to what occurs in vivo, human CD19+ cells developing in human/murine xenogeneic cultures show differential expression of the IL-7 receptor α (IL-7Rα) chain (CD127). We now describe the relationship between CD127 expression/signaling and Ig gene rearrangement. In the present study, < 10% of CD19+CD127+ and CD19+CD127− populations had complete VDJH rearrangements. IGH locus conformation measurements by 3D FISH revealed that CD127+ and CD127− cells were less contracted than pediatric BM pro-B cells that actively rearrange the IGH locus. Complete IGH rearrangements in CD127+ and CD127− cells had smaller CDR3 lengths and fewer N-nucleotide insertions than pediatric BM B-lineage cells. Despite the paucity of VDJH rearrangements, microarray analysis indicated that CD127+ cells resembled large pre-B cells, which is consistent with their low level of Ig light-chain rearrangements. Unexpectedly, CD127− cells showed extensive Ig light-chain rearrangements in the absence of IGH rearrangements and resembled small pre-B cells. Neutralization of IL-7 in xenogeneic cultures led to an increase in Ig light-chain rearrangements in CD127+ cells, but no change in complete IGH rearrangements. We conclude that IL-7–mediated suppression of premature Ig light-chain rearrangement is the most definitive function yet described for IL-7 in human B-cell development.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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