Mutations Associated with Acquired Resistance to PD-1 Blockade in Melanoma

Мутации, ассоциированные с приобретённой устойчивостью к блокаде PD-1 при меланоме
Paul C. Tumeh, Bartosz Chmielowski, Antoni Ribas, Riccardo Mezzadra, Ton N. Schumacher, Ángel García-Díaz, Cristina Puig-Saus, Justin D. Saco, Willy Hugo, Xiangju Kong, Roger S. Lo, Siwen Hu‐Lieskovan, Thomas G. Graeber, I. Peter Shintaku, Elizabeth Seja, Grace Cherry, Begoña Comı́n-Anduix, Jesse M. Zaretsky, Blanca Homet Moreno, Beata Berent-Maoz, Jia Pang, Daniel Sanghoon Shin, Helena Escuin-Ordinas, Davis Y. Torrejon, Gabriel Abril-Rodríguez, Salemiz Sandoval, Lucas Barthly, Kathleen Ruchalski, Phillip J. Sanchez
2016-07-13

B2M truncating mutationJAK1/JAK2 loss-of-function mutationsPD-1 blockadeacquired resistancemelanoma
BACKGROUND: Approximately 75% of objective responses to anti-programmed death 1 (PD-1) therapy in patients with melanoma are durable, lasting for years, but delayed relapses have been noted long after initial objective tumor regression despite continuous therapy. Mechanisms of immune escape in this context are unknown. METHODS: We analyzed biopsy samples from paired baseline and relapsing lesions in four patients with metastatic melanoma who had had an initial objective tumor regression in response to anti-PD-1 therapy (pembrolizumab) followed by disease progression months to years later. RESULTS: Whole-exome sequencing detected clonal selection and outgrowth of the acquired resistant tumors and, in two of the four patients, revealed resistance-associated loss-of-function mutations in the genes encoding interferon-receptor-associated Janus kinase 1 (JAK1) or Janus kinase 2 (JAK2), concurrent with deletion of the wild-type allele. A truncating mutation in the gene encoding the antigen-presenting protein beta-2-microglobulin (B2M) was identified in a third patient. JAK1 and JAK2 truncating mutations resulted in a lack of response to interferon gamma, including insensitivity to its antiproliferative effects on cancer cells. The B2M truncating mutation led to loss of surface expression of major histocompatibility complex class I. CONCLUSIONS: In this study, acquired resistance to PD-1 blockade immunotherapy in patients with melanoma was associated with defects in the pathways involved in interferon-receptor signaling and in antigen presentation. (Funded by the National Institutes of Health and others.).
1
A truncating B2M mutation in a third patient eliminated surface expression of major histocompatibility complex class I.
2
Acquired resistance to PD-1 blockade was linked to defects in interferon-receptor signaling and antigen presentation pathways.
3
Delayed melanoma relapses after initially effective pembrolizumab treatment were associated with clonal selection and outgrowth of resistant tumor cells.
4
JAK1 and JAK2 truncating mutations caused resistance to interferon gamma, including loss of its antiproliferative effects on melanoma cells.
5
JAK1 or JAK2 loss-of-function mutations, accompanied by deletion of the wild-type allele, were identified in two of four patients with acquired resistance.

Acquired-resistant metastatic melanoma tumors and paired baseline and relapsing lesions from patients treated with anti-PD-1 therapy

Genetic mechanisms of acquired resistance to PD-1 blockade, specifically defects in interferon-receptor signaling and antigen presentation

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2016-07-13
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Authors
Paul C. Tumeh
Bartosz Chmielowski
Antoni Ribas
Riccardo Mezzadra
Ton N. Schumacher
Ángel García-Díaz
Cristina Puig-Saus
Justin D. Saco
Willy Hugo
Xiangju Kong
Roger S. Lo
Siwen Hu‐Lieskovan
Thomas G. Graeber
I. Peter Shintaku
Elizabeth Seja
Grace Cherry
Begoña Comı́n-Anduix
Jesse M. Zaretsky
Blanca Homet Moreno
Beata Berent-Maoz
Jia Pang
Daniel Sanghoon Shin
Helena Escuin-Ordinas
Davis Y. Torrejon
Gabriel Abril-Rodríguez
Salemiz Sandoval
Lucas Barthly
Kathleen Ruchalski
Phillip J. Sanchez
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