Telomeric damage in early stage of chronic lymphocytic leukemia correlates with shelterin dysregulation

Author:

Augereau Adeline12,T'kint de Roodenbeke Claire1,Simonet Thomas1,Bauwens Serge1,Horard Béatrice1,Callanan Mary34,Leroux Dominique34,Jallades Laurent5,Salles Gilles6,Gilson Eric1278,Poncet Delphine12345

Affiliation:

1. Epigenetic and Telomeric Regulations, Lyon Sud Medicine Faculty, Lyon-1 University, Centre National de la Recherche Scientifique (CNRS) Unité Mixte de Recherche (UMR) 5239, Pierre Bénite, France;

2. Laboratory of Biology and Pathology of Genomes, University of Nice, Medicine Faculty, UMR 6267 CNRS U998 Inserm, Nice, France;

3. Inserm, U823, Institut Albert Bonniot, Grenoble, France;

4. Université Joseph Fourier-Grenoble I, Grenoble, France;

5. Laboratoire d'Hématologie, Hospices Civils de Lyon, Centre Hospitalier Lyon Sud, Pierre Bénite, France;

6. Hospices Civils de Lyon, Lyon-1 University, CNRS UMR 5239, Pierre Bénite, France;

7. Hospices Civils de Lyon, Centre Hospitalier Lyon Sud, Unité Médicale d'Oncologie Moléculaire et Transfert, Service de Biochimie, Pierre Bénite, France; and

8. Department of Medical Genetics, Centre Hospitalier Universitaire (CHU) de Nice, Archet 2 Hospital, Nice, France

Abstract

Abstract Cells of B-cell chronic lymphocytic leukemia (B-CLL) are characterized by short telomeres despite a low proliferative index. Because telomere length has been reported to be a valuable prognosis criteria, there is a great interest in a deep understanding of the origin and consequences of telomere dysfunction in this pathology. Cases of chromosome fusion involving extremely short telomeres have been reported at advanced stage. In the present study, we address the question of the existence of early telomere dysfunction during the B-CLL time course. In a series restricted to 23 newly diagnosed Binet stage A CLL patients compared with 12 healthy donors, we found a significant increase in recruitment of DNA-damage factors to telomeres showing telomere dysfunction in the early stage of the disease. Remarkably, the presence of dysfunctional telomeres did not correlate with telomere shortening or chromatin marks deregulation but with a down-regulation of 2 shelterin genes: ACD (coding for TPP1; P = .0464) and TINF2 (coding for TIN2; P = .0177). We propose that telomeric deprotection in the early step of CLL is not merely the consequence of telomere shortening but also of shelterin alteration.

Publisher

American Society of Hematology

Subject

Cell Biology,Hematology,Immunology,Biochemistry

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