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Preclinical characterization of pirtobrutinib, a highly selective, noncovalent (reversible) BTK inhibitor.
Gomez, Eliana B; Ebata, Kevin; Randeria, Hetal S; Rosendahl, Mary S; Cedervall, E Peder; Morales, Tony H; Hanson, Lauren M; Brown, Nicholas E; Gong, Xueqian; Stephens, Jennifer; Wu, Wenjuan; Lippincott, Isabel; Ku, Karin S; Walgren, Richard A; Abada, Paolo B; Ballard, Joshua A; Allerston, Charles K; Brandhuber, Barbara J.
Afiliação
  • Gomez EB; Loxo@Lilly, Louisville, CO.
  • Ebata K; Loxo@Lilly, South San Francisco, CA.
  • Randeria HS; Loxo@Lilly, South San Francisco, CA.
  • Rosendahl MS; Loxo@Lilly, Louisville, CO.
  • Cedervall EP; Loxo@Lilly, Louisville, CO.
  • Morales TH; Loxo@Lilly, Louisville, CO.
  • Hanson LM; Loxo@Lilly, Louisville, CO.
  • Brown NE; Loxo@Lilly, Indianapolis, IN.
  • Gong X; Loxo@Lilly, Indianapolis, IN.
  • Stephens J; Loxo@Lilly, Indianapolis, IN.
  • Wu W; Loxo@Lilly, Indianapolis, IN.
  • Lippincott I; Loxo@Lilly, Louisville, CO.
  • Ku KS; Loxo@Lilly, South San Francisco, CA.
  • Walgren RA; Loxo@Lilly, Indianapolis, IN.
  • Abada PB; Loxo@Lilly, Indianapolis, IN.
  • Ballard JA; Loxo@Lilly, Louisville, CO.
  • Allerston CK; Loxo@Lilly, Louisville, CO.
  • Brandhuber BJ; Loxo@Lilly, Louisville, CO.
Blood ; 142(1): 62-72, 2023 07 06.
Article em En | MEDLINE | ID: mdl-36796019
ABSTRACT
Bruton tyrosine kinase (BTK), a nonreceptor tyrosine kinase, is a major therapeutic target for B-cell-driven malignancies. However, approved covalent BTK inhibitors (cBTKis) are associated with treatment limitations because of off-target side effects, suboptimal oral pharmacology, and development of resistance mutations (eg, C481) that prevent inhibitor binding. Here, we describe the preclinical profile of pirtobrutinib, a potent, highly selective, noncovalent (reversible) BTK inhibitor. Pirtobrutinib binds BTK with an extensive network of interactions to BTK and water molecules in the adenosine triphosphate binding region and shows no direct interaction with C481. Consequently, pirtobrutinib inhibits both BTK and BTK C481 substitution mutants in enzymatic and cell-based assays with similar potencies. In differential scanning fluorimetry studies, BTK bound to pirtobrutinib exhibited a higher melting temperature than cBTKi-bound BTK. Pirtobrutinib, but not cBTKis, prevented Y551 phosphorylation in the activation loop. These data suggest that pirtobrutinib uniquely stabilizes BTK in a closed, inactive conformation. Pirtobrutinib inhibits BTK signaling and cell proliferation in multiple B-cell lymphoma cell lines, and significantly inhibits tumor growth in human lymphoma xenografts in vivo. Enzymatic profiling showed that pirtobrutinib was highly selective for BTK in >98% of the human kinome, and in follow-up cellular studies pirtobrutinib retained >100-fold selectivity over other tested kinases. Collectively, these findings suggest that pirtobrutinib represents a novel BTK inhibitor with improved selectivity and unique pharmacologic, biophysical, and structural attributes with the potential to treat B-cell-driven cancers with improved precision and tolerability. Pirtobrutinib is being tested in phase 3 clinical studies for a variety of B-cell malignancies.
Assuntos

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Tirosina Quinase da Agamaglobulinemia / Linfoma Tipo de estudo: Prognostic_studies Limite: Animals / Humans / Male Idioma: En Revista: Blood Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Colômbia

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Assunto principal: Tirosina Quinase da Agamaglobulinemia / Linfoma Tipo de estudo: Prognostic_studies Limite: Animals / Humans / Male Idioma: En Revista: Blood Ano de publicação: 2023 Tipo de documento: Article País de afiliação: Colômbia