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Transfer of Manipulated Tumor-associated Neutrophils into Tumor-Bearing Mice to Study their Angiogenic Potential In Vivo
Published on: July 20, 2019
Neutrophil-intrinsic Vgll4 constrains tumorigenesis by preventing a STAT3/STAT5-driven immunosuppressive switch
Lin Shao1, Jingwu Yue1, Shilong Wang1
1State Key Laboratory of Genetics and Development of Complex Phenotypes, School of Life Sciences, Zhongshan Hospital, Fudan University, Shanghai 200438, China.
None:
Neutrophils display profound functional plasticity within the tumor microenvironment (TME), a key determinant of cancer progression; however, the intrinsic mechanisms safeguarding their antitumor identity remain elusive. Here, we identify the Hippo pathway component Vgll4 as a pivotal guardian of neutrophil functional fate in the TME. While dispensable for homeostatic granulopoiesis, Vgll4 in neutrophils is crucial for restraining tumor growth. Neutrophil-specific ablation of Vgll4 triggers a phenotypic shift toward an immunosuppressive state, accelerating tumor progression. Mechanistically, Vgll4 binds STAT3 and STAT5 in a JAK-dependent manner; loss of Vgll4 reduces SOCS3 expression, a negative regulator of STAT3, thereby unleashing STAT3 hyperactivation while suppressing STAT5, leading to transcriptional reprogramming that establishes an immunosuppressive profile. This regulatory axis operates specifically in tumor-associated neutrophils, as Vgll4 is dispensable for steady-state development but essential within the TME. Consequently, Vgll4-deficient neutrophils remodel the TME by promoting regulatory T cell (Treg) differentiation and impairing CD8+ T cell effector function. Our findings unveil a noncanonical role for Vgll4 in innate immune regulation and establish the Vgll4-STAT3/STAT5 axis as a crucial checkpoint in neutrophil polarization, presenting a therapeutic target for cancer immunotherapy.
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