Inhibition of the NKp44-PCNA immune checkpoint using a MAb to PCNA

Kiran Kundu, Susmita Ghosh, Rhitajit Sarkar, Avishay Edri, Michael Brusilovsky, Orly Gershoni-Yahalom, Rami Yossef, Avishai Shemesh, Jean Charles Soria, Vladimir Lazar, Ben Zion Joshua, Kerry S. Campbell, Moshe Elkabets, Angel Porgador

Research output: Contribution to journalArticlepeer-review

25 Scopus citations

Abstract

mAb-based blocking of the immune checkpoints involving the CTLA4-B7 and PD1-PDL1 inhibitory axes enhance T-cell–based adaptive immune responses in patients with cancer. We show here that antitumor responses by natural killer (NK) cells can be enhanced by a checkpoint-blocking mAb, 14-25-9, which we developed against proliferating cell nuclear antigen (PCNA). PCNA is expressed on the surface of cancer cells and acts as an inhibitory ligand for the NK-cell receptor, NKp44-isoform1. We tested for cytoplasmic- and membrane-associated PCNA by FACS- and ImageStream-based staining of cell lines and IHC of human cancer formalin fixed, paraffin embedded tissues. The mAb, 14-25-9, inhibited binding of chimeric NKp44 receptor to PCNA and mostly stained the cytoplasm and membrane of tumor cells, whereas commercial antibody (clone PC10) stained nuclear PCNA. NK functions were measured using ELISA-based IFNg secretion assays and FACS-based killing assays. The NK92-NKp44-1 cell line and primary human NK cells showed increased IFNg release upon coincubation with mAb 14-25-9 and various solid tumor cell lines and leuke-mias. Treatment with 14-25-9 also increased NK cytotoxic activity. In vivo efficacy was evaluated on patient-derived xenografts (PDX)-bearing NSG mice. In PDX-bearing mice, intravenous administration of mAb 14-25-9 increased degranulation (CD107a expression) of intratumorally injected patient autologous or allogeneic NK cells, as well as inhibited tumor growth when treated long term. Our study describes a mAb against the NKp44-PCNA innate immune checkpoint that can enhance NK-cell antitumor activity both in vitro and in vivo.

Original languageEnglish
Pages (from-to)1120-1134
Number of pages15
JournalCancer Immunology Research
Volume7
Issue number7
DOIs
StatePublished - 1 Jan 2019

ASJC Scopus subject areas

  • Immunology
  • Cancer Research

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