The lymph node microenvironment promotes B-cell receptor signaling, NF-κB activation, and tumor proliferation in chronic lymphocytic leukemia

Author:

Herishanu Yair1,Pérez-Galán Patricia1,Liu Delong2,Biancotto Angélique3,Pittaluga Stefania4,Vire Berengere1,Gibellini Federica1,Njuguna Ndegwa1,Lee Elinor1,Stennett Lawrence1,Raghavachari Nalini5,Liu Poching5,McCoy J. Philip3,Raffeld Mark4,Stetler-Stevenson Maryalice4,Yuan Constance4,Sherry Richard6,Arthur Diane C.4,Maric Irina7,White Therese8,Marti Gerald E.9,Munson Peter2,Wilson Wyndham H.9,Wiestner Adrian1

Affiliation:

1. Hematology Branch, National Heart, Lung and Blood Institute (NHLBI), National Institutes of Health (NIH), Bethesda, MD;

2. Mathematical and Statistical Computing Laboratory, Division of Computational Biosciences, Center for Information Technology, NIH, Bethesda, MD;

3. Center for Human Immunology, NIH, Bethesda, MD;

4. Laboratory of Pathology, National Cancer Institute (NCI), Bethesda, MD;

5. Bioinformatics Core, NHLBI, NIH, Bethesda, MD;

6. Surgery Branch, NCI, Bethesda, MD;

7. Department of Laboratory Medicine, Clinical Center, NIH, Bethesda, MD;

8. Center for Cancer Research, NCI, Bethesda, MD; and

9. Center for Biologics Evaluation and Research, US Food and Drug Administration, Bethesda, MD

Abstract

AbstractChronic lymphocytic leukemia (CLL), an incurable malignancy of mature B lymphocytes, involves blood, bone marrow, and secondary lymphoid organs such as the lymph nodes (LN). A role of the tissue microenvironment in the pathogenesis of CLL is hypothesized based on in vitro observations, but its contribution in vivo remains ill-defined. To elucidate the effects of tumor-host interactions in vivo, we purified tumor cells from 24 treatment-naive patients. Samples were obtained concurrently from blood, bone marrow, and/or LN and analyzed by gene expression profiling. We identified the LN as a key site in CLL pathogenesis. CLL cells in the LN showed up-regulation of gene signatures, indicating B-cell receptor (BCR) and nuclear factor-κB activation. Consistent with antigen-dependent BCR signaling and canonical nuclear factor-κB activation, we detected phosphorylation of SYK and IκBα, respectively. Expression of BCR target genes was stronger in clinically more aggressive CLL, indicating more effective BCR signaling in this subtype in vivo. Tumor proliferation, quantified by the expression of the E2F and c-MYC target genes and verified with Ki67 staining by flow cytometry, was highest in the LN and was correlated with clinical disease progression. These data identify the disruption of tumor microenvironment interactions and the inhibition of BCR signaling as promising therapeutic strategies in CLL. This study is registered at http://clinicaltrials.gov as NCT00019370.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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