Antitumor Activity of the Novel BTK Inhibitor TG-1701 Is Associated with Disruption of Ikaros Signaling in Patients with B-cell Non–Hodgkin Lymphoma — Marcelo Lima Ribeiro (2021) | RDL Network
Antitumor Activity of the Novel BTK Inhibitor TG-1701 Is Associated with Disruption of Ikaros Signaling in Patients with B-cell Non–Hodgkin Lymphoma
Article 2021 en
Authors
MR
Marcelo Lima Ribeiro
DR
Diana Reyes-Garau
MV
Meritxell Vinyoles
Abstract
1 min read
Abstract Purpose: Despite the remarkable activity of BTK inhibitors (BTKi) in relapsed B-cell non–Hodgkin lymphoma (B-NHL), no clinically-relevant biomarker has been associated to these agents so far. The relevance of phosphoproteomic profiling for the early identification of BTKi responders remains underexplored. Experimental Design: A set of six clinical samples from an ongoing phase I trial dosing patients with chronic lymphocytic leukemia (CLL) with TG-1701, a novel irreversible and highly specific BTKi, were characterized by phosphoproteomic and RNA sequencing (RNA-seq) analysis. The activity of TG-1701 was evaluated in a panel of 11 B-NHL cell lines and mouse xenografts, including two NF-κB- and BTKC481S-driven BTKi-resistant models. Biomarker validation and signal transduction analysis were conducted through real-time PCR, Western blot analysis, immunostaining, and gene knockout (KO) experiments. Results: A nonsupervised, phosphoproteomic-based clustering did match the early clinical outcomes of patients with CLL and separated a group of “early-responders” from a group of “late-responders.” This clustering was based on a selected list of 96 phosphosites with Ikaros-pSer442/445 as a potential biomarker for TG-1701 efficacy. TG-1701 treatment was further shown to blunt Ikaros gene signature, including YES1 and MYC, in early-responder patients as well as in BTKi-sensitive B-NHL cell lines and xenografts. In contrast, Ikaros nuclear activity and signaling remained unaffected by the drug in vitro and in vivo in late-responder patients and in BTKC481S, BTKKO, and noncanonical NF-κB models. Conclusions: These data validate phosphoproteomic as a valuable tool for the early detection of response to BTK inhibition in the clinic, and for the determination of drug mechanism of action.
Marcelo Lima Ribeiro, Diana Reyes-Garau, Meritxell Vinyoles, Núria Profitós-Pelejà, Juliana C. Santos, Marc Armengol, Miranda Fernández-Serrano, Alícia Sedó Mor, Joan Josep Bech‐Serra, Pedro Blecua, Eva Musulén, Carolina de la Torre, Hari P. Miskin, Manel Esteller, Francesc Bosch, Pablo Menéndez, Emmanuel Normant, Gaël Roué
Marcelo Lima Ribeiro, Diana Reyes-Garau, Meritxell Vinyoles, Núria Profitós-Pelejà, Juliana C. Santos, Marc Armengol, Miranda Fernández-Serrano, Joan Josep Bech‐Serra, Pedro Blecua, Eva Musulén, Carolina de la Torre, Hari P. Miskin, Manel Esteller, Francesc Bosch, Pablo Menéndez, Emmanuel Normant, Gaël Roué
Marcelo Lima Ribeiro, Diana Reyes-Garau, Meritxell Vinyoles, Núria Profitós-Pelejà, Juliana C. Santos, Marc Armengol, Miranda Fernández-Serrano, Alícia Sedó Mor, Joan Josep Bech‐Serra, Pedro Blecua, Eva Musulén, Carolina de la Torre, Hari P. Miskin, Manel Esteller, Francesc Bosch, Pablo Menéndez, Emmanuel Normant, Gaël Roué
Marcelo Lima Ribeiro, Núria Profitós-Pelejà, Juliana C. Santos, Pedro Blecua, Diana Reyes Garau, Marc Armengol, Miranda Fernández-Serrano, Hari P. Miskin, Francesc Bosch, Manel Esteller, Emmanuel Normant, Gaël Roué
Weizhou Zhang, Arnon P. Kater, George F. Widhopf, Han-Yu Chuang, Thomas Enzler, Danelle F. James, Maxim Poustovoitov, Ping‐Hui Tseng, Siegfried Janz, Carl K. Hoh, Harvey R. Herschman, Michael Karin, Thomas J. Kipps
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