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Repression of miR-29 via MYC leads to increased CD40 signaling in transformed follicular lymphoma

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FILIP Daniel MUSILOVÁ Kateřina MICHAELOU Androniki KLEDUS Filip DEVÁN Ján BOUDNÝ Miroslav HOFERKOVÁ Eva SHARMA Sonali ŠEDA Václav ZENI Pedro Faria BORSKÝ Marek MATULOVÁ Květoslava KŘEN Leoš OPPELT Jan BLAVET Nicolas HEJRET Václav URÍK Milan MAREČKOVÁ Andrea RIMSZA Lisa M. KAMARADOVA Katerina BELADA David SYKOROVA Alice MOCIKOVA Heidi TRNENY Marek PROUZOVA Zuzana EVANS Andrew G. DANILOV Alexey HORN Heike OTT German STABER Philipp MAYER Jiří FRIEDBERG Jonathan W. JANÍKOVÁ Andrea MRÁZ Marek

Rok publikování 2026
Druh Článek v odborném periodiku
Časopis / Zdroj Leukemia
Fakulta / Pracoviště MU

Středoevropský technologický institut

Citace
www https://www.nature.com/articles/s41375-026-02868-8#Abs1
Doi https://doi.org/10.1038/s41375-026-02868-8
Přiložené soubory
Popis Follicular lymphoma (FL) patients are at risk of disease transformation to aggressive high-grade lymphoma (tFL). While several genetic alterations have been implicated in tFL, the role of microenvironmental interactions and post-transcriptional regulation by non-coding RNAs remains poorly understood. We performed the first matched profiling of mRNAs and short non-coding RNAs (miRNAs) in paired FL and tFL samples (n = 11 pairs). This revealed differential expression of 1,075 mRNAs and 19 miRNAs, including repression of miR-29 family in tFL (miR-29a/b/c). Further analysis uncovered that MYC directly transcriptionally represses miR-29 in tFL, resulting in the upregulation of its target TRAF4. TRAF4 upregulation contributes to CD40 signaling being strongly activated in tFL and supports malignant B-cell proliferation. Notably, this increased CD40 pathway activity in 90% of tFL and contrasted with the reduced T-cell numbers in tFL niches. Thus, the MYC-miR-29-TRAF4 axis and increased CD40 signaling propensity may serve as tFL cells’ adaptation to reduced numbers of CD40L+ T-cells. Moreover, lower levels of all miR-29s(a/b/c) were associated with shorter overall survival (OS) and progression-free survival in FL (n = 185), including in a multivariate analysis. Low miR-29c was also associated with shorter OS in a validation cohort (n = 92) from the first-line R-CHOP therapy clinical trial (SWOG S0016, NCT00006721)
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