SHP-2 and PD-1-SHP-2 signaling regulate myeloid cell differentiation and antitumor responses.
Anthos ChristofidesXanthi-Lida KatopodiCarol CaoDimitra KaragkouniKonstantinos AliazisSasitorn YenyuwadeeHalil-Ibrahim AksoylarRinku PalMohamed A A MahmoudLaura StraussNatalia M Tijaro-OvalleLouis BoonJohn AsaraIoannis S VlachosNikolaos PatsoukisVassiliki A BoussiotisPublished in: Nature immunology (2022)
The inhibitory receptor PD-1 suppresses T cell activation by recruiting the phosphatase SHP-2. However, mice with a T-cell-specific deletion of SHP-2 do not have improved antitumor immunity. Here we showed that mice with conditional targeting of SHP-2 in myeloid cells, but not in T cells, had diminished tumor growth. RNA sequencing (RNA-seq) followed by gene set enrichment analysis indicated the presence of polymorphonuclear myeloid-derived suppressor cells and tumor-associated macrophages (TAMs) with enriched gene expression profiles of enhanced differentiation, activation and expression of immunostimulatory molecules. In mice with conditional targeting of PD-1 in myeloid cells, which also displayed diminished tumor growth, TAMs had gene expression profiles enriched for myeloid differentiation, activation and leukocyte-mediated immunity displaying >50% overlap with enriched profiles of SHP-2-deficient TAMs. In bone marrow, GM-CSF induced the phosphorylation of PD-1 and recruitment of PD-1-SHP-2 to the GM-CSF receptor. Deletion of SHP-2 or PD-1 enhanced GM-CSF-mediated phosphorylation of the transcription factors HOXA10 and IRF8, which regulate myeloid differentiation and monocytic-moDC lineage commitment, respectively. Thus, SHP-2 and PD-1-SHP-2 signaling restrained myelocyte differentiation resulting in a myeloid landscape that suppressed antitumor immunity.
Keyphrases
- bone marrow
- dendritic cells
- induced apoptosis
- single cell
- rna seq
- acute myeloid leukemia
- cell cycle arrest
- transcription factor
- mesenchymal stem cells
- high fat diet induced
- poor prognosis
- endoplasmic reticulum stress
- protein kinase
- type diabetes
- cancer therapy
- gene expression
- metabolic syndrome
- insulin resistance
- cell death
- long non coding rna
- dna methylation
- endothelial cells
- genome wide identification
- drug delivery
- cell proliferation
- pi k akt
- peripheral blood
- wild type
- data analysis