Abstract

Epstein–Barr virus (EBV)-encoded latent membrane protein 1 (LMP1) is expressed in germinal-center-derived, mononuclear Hodgkin (H) and multinuclear, diagnostic Reed–Sternberg (RS) cells in classical EBV-positive Hodgkin’s lymphoma (cHL). LMP1 expression in EBV-negative H-cell lines results in a significantly increased number of RS cells. In a conditional, germinal-center-derived B-cell in vitro system, LMP1 reversibly down-regulates the shelterin proteins, telomeric repeat binding factor (TRF)1, TRF2, and protection of telomeres (POT)1. This down-regulation is associated with progressive 3D shelterin disruption, resulting in telomere dysfunction, progression of complex chromosomal rearrangements, and multinuclearity. TRF2 appears to be the key player. Thus, we hypothesize that the 3D interaction of telomeres and TRF2 is disrupted in H cells, and directly associated with the formation of H and RS cells. Using quantitative 3D co-immuno-TRF2-telomere fluorescent in situ hybridization (3D TRF2/Telo-Q-FISH) applied to monolayers of primary H and RS cells, we demonstrate TRF2-telomere dysfunction in EBV-positive cHL. However, in EBV-negative cHL a second molecular mechanism characterized by massive up-regulation of TRF2, but attrition of telomere signals, is also identified. These facts point towards a shelterin-related pathogenesis of cHL, where two molecularly disparate mechanisms converge at the level of 3D Telomere–TRF2 interactions, leading to the formation of RS cells.

Highlights

  • latent membrane protein 1 (LMP1) is an Epstein–Barr virus (EBV) encoded multifunctional oncoprotein, discovered more than 30 years ago [1,2]

  • It is noteworthy to mention that the number of RS cells in H-cell lines (EBV-negative) is generally

  • LMP1 expression induces multinucleated RS-like cells with abundant very and short telomeres already at day 9 when compared to LMP1-suppressed cells

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Summary

Introduction

LMP1 (latent membrane protein 1) is an Epstein–Barr virus (EBV) encoded multifunctional oncoprotein, discovered more than 30 years ago [1,2]. We focus on a recently developed experimental system for EBV-associated cHL and the dynamic three-dimensional (3D) LMP1–TRF2 interaction identified in the mononuclear Hodgkin (H) and diagnostic, multinuclear Reed–Sternberg (RS) cells—the malignant tumor cells of classical cHL [22]. It is noteworthy to mention that the number of RS cells in H-cell lines (EBV-negative) is generally

Assessment of 3D Telomere Dynamics
In Vitro Model for EBV-Associated Classical Hodgkin’s Lymphoma
Latent
LMP1-induced
Results are based onanalysis
Summary
Full Text
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