4.7 Article

Unmutated IGHV1-69 CLL Clone Displays a Distinct Gene Expression Profile by a Comparative qRT-PCR Assay

期刊

BIOMEDICINES
卷 10, 期 3, 页码 -

出版社

MDPI
DOI: 10.3390/biomedicines10030604

关键词

B-cells; chronic lymphocytic leukemia; gene expression analysis; CLL heterogeneity; B-lymphoproliferative disorders; phage display; cell sorting

资金

  1. POR FES/FESR 2014-20-ATS ALCMEONE [cup J18C17000610006]
  2. MIUR-PRIN [2017MHJJ55_002]
  3. GILEAD Fellowship 2018
  4. EU [PON- AIM1897004-1]
  5. EU project FSE-FESR PON-RI2014-2020

向作者/读者索取更多资源

Chronic Lymphocytic Leukemia (CLL) is a heterogeneous disease with variable clinical courses among different patients. This study discovered the possible existence of multiple independent CLL clones within the same patient. By selecting a peptide binder that binds to specific clone cells using phage display libraries and performing flow cytometry, it was found that the specific clone cells expressed more genes involved in survival and apoptosis escape processes compared to other clone cells, and they did not carry characteristic genetic lesions.
Chronic Lymphocytic Leukemia (CLL) is a heterogeneous disease characterized by variable clinical courses among different patients. This notion was supported by the possible coexistence of two or more independent CLL clones within the same patients, identified by the characterization of the B cell receptor immunoglobulin (BcR IG) idiotypic sequence. By using the antigen-binding site of the BcR IG as bait, the identification and isolation of aggressive and drug-resistance leukemic B-cell clones could allow a deeper biological and molecular investigation. Indeed, by the screening of phage display libraries, we previously selected a peptide binder of the idiotypic region of CLL BCR IGs expressing the unmutated rearrangement IGHV1-69 and used it as a probe to perform a peptide-based cell sorting by flow cytometry in peripheral blood samples from patients with CLL. Since the IGHV1-69 clones persisted during the follow-up time in both patients, we explored the possibility of these clones having acquired an evolutive advantage compared to the other coexisting clones in terms of a higher expression of genes involved in the survival and apoptosis escape processes. To this end, we studied the expression patterns of a panel of genes involved in apoptosis regulation and in NF-kB-dependent pro-survival signals by comparative qRT-PCR assays. According to the results, IGHV1-69 clones showed a higher expression of pro-survival and anti-apoptotic genes as compared to the other CLL clones with different immunogenetic characteristics. Moreover, these IGHV1-69 clones did not carry any characteristic genetic lesions, indicating the relevance of our approach in performing a comprehensive molecular characterization of single tumor clones, as well as for designing new personalized therapeutic approaches for the most aggressive and persistent tumor clones.

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