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Resistance mechanisms for the Bruton's tyrosine kinase inhibitor ibrutinib.

Publication ,  Journal Article
Woyach, JA; Furman, RR; Liu, T-M; Ozer, HG; Zapatka, M; Ruppert, AS; Xue, L; Li, DH-H; Steggerda, SM; Versele, M; Dave, SS; Zhang, J ...
Published in: N Engl J Med
June 12, 2014

BACKGROUND: Ibrutinib is an irreversible inhibitor of Bruton's tyrosine kinase (BTK) and is effective in chronic lymphocytic leukemia (CLL). Resistance to irreversible kinase inhibitors and resistance associated with BTK inhibition have not been characterized. Although only a small proportion of patients have had a relapse during ibrutinib therapy, an understanding of resistance mechanisms is important. We evaluated patients with relapsed disease to identify mutations that may mediate ibrutinib resistance. METHODS: We performed whole-exome sequencing at baseline and the time of relapse on samples from six patients with acquired resistance to ibrutinib therapy. We then performed functional analysis of identified mutations. In addition, we performed Ion Torrent sequencing for identified resistance mutations on samples from nine patients with prolonged lymphocytosis. RESULTS: We identified a cysteine-to-serine mutation in BTK at the binding site of ibrutinib in five patients and identified three distinct mutations in PLCγ2 in two patients. Functional analysis showed that the C481S mutation of BTK results in a protein that is only reversibly inhibited by ibrutinib. The R665W and L845F mutations in PLCγ2 are both potentially gain-of-function mutations that lead to autonomous B-cell-receptor activity. These mutations were not found in any of the patients with prolonged lymphocytosis who were taking ibrutinib. CONCLUSIONS: Resistance to the irreversible BTK inhibitor ibrutinib often involves mutation of a cysteine residue where ibrutinib binding occurs. This finding, combined with two additional mutations in PLCγ2 that are immediately downstream of BTK, underscores the importance of the B-cell-receptor pathway in the mechanism of action of ibrutinib in CLL. (Funded by the National Cancer Institute and others.).

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Published In

N Engl J Med

DOI

EISSN

1533-4406

Publication Date

June 12, 2014

Volume

370

Issue

24

Start / End Page

2286 / 2294

Location

United States

Related Subject Headings

  • Sequence Analysis, DNA
  • Recurrence
  • Receptors, Antigen, B-Cell
  • Pyrimidines
  • Pyrazoles
  • Protein-Tyrosine Kinases
  • Point Mutation
  • Piperidines
  • Phospholipase C gamma
  • Middle Aged
 

Citation

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Woyach, J. A., Furman, R. R., Liu, T.-M., Ozer, H. G., Zapatka, M., Ruppert, A. S., … Byrd, J. C. (2014). Resistance mechanisms for the Bruton's tyrosine kinase inhibitor ibrutinib. N Engl J Med, 370(24), 2286–2294. https://doi.org/10.1056/NEJMoa1400029
Woyach, Jennifer A., Richard R. Furman, Ta-Ming Liu, Hatice Gulcin Ozer, Marc Zapatka, Amy S. Ruppert, Ling Xue, et al. “Resistance mechanisms for the Bruton's tyrosine kinase inhibitor ibrutinib.N Engl J Med 370, no. 24 (June 12, 2014): 2286–94. https://doi.org/10.1056/NEJMoa1400029.
Woyach JA, Furman RR, Liu T-M, Ozer HG, Zapatka M, Ruppert AS, et al. Resistance mechanisms for the Bruton's tyrosine kinase inhibitor ibrutinib. N Engl J Med. 2014 Jun 12;370(24):2286–94.
Woyach, Jennifer A., et al. “Resistance mechanisms for the Bruton's tyrosine kinase inhibitor ibrutinib.N Engl J Med, vol. 370, no. 24, June 2014, pp. 2286–94. Pubmed, doi:10.1056/NEJMoa1400029.
Woyach JA, Furman RR, Liu T-M, Ozer HG, Zapatka M, Ruppert AS, Xue L, Li DH-H, Steggerda SM, Versele M, Dave SS, Zhang J, Yilmaz AS, Jaglowski SM, Blum KA, Lozanski A, Lozanski G, James DF, Barrientos JC, Lichter P, Stilgenbauer S, Buggy JJ, Chang BY, Johnson AJ, Byrd JC. Resistance mechanisms for the Bruton's tyrosine kinase inhibitor ibrutinib. N Engl J Med. 2014 Jun 12;370(24):2286–2294.

Published In

N Engl J Med

DOI

EISSN

1533-4406

Publication Date

June 12, 2014

Volume

370

Issue

24

Start / End Page

2286 / 2294

Location

United States

Related Subject Headings

  • Sequence Analysis, DNA
  • Recurrence
  • Receptors, Antigen, B-Cell
  • Pyrimidines
  • Pyrazoles
  • Protein-Tyrosine Kinases
  • Point Mutation
  • Piperidines
  • Phospholipase C gamma
  • Middle Aged