Aug 2026· Science Translational Medicine· Vol 18 864, pp.
eaeb2189
· 0 citations· 71 references
Medicine
TL;DR
This study positions LTBP4 as a key modulator of tumor progression and reveals a therapeutic strategy for LTBP4-deficient CRC.
Abstract
The tumor microenvironment is crucial for cancer progression, but the mechanisms underlying the tumor-immune cell interactions in it remain poorly understood. Here, we identified latent transforming growth factor-β (TGFβ) binding protein 4 (LTBP4) deficiency in colorectal cancer (CRC) as a critical driver that reprogrammed tumor-associated macrophages (TAMs) and induced a distinct subset, which promoted tumor progression by coordinating immune evasion and extracellular matrix (ECM) remodeling. Clinically, LTBP4 deficiency correlated with CRC progression and poor patient survival. Ltbp4 knockout markedly promoted tumor growth and metastasis in immunocompetent mice, an effect attenuated in immunodeficient hosts, establishing the essential role of host immunity in mediating the effects of LTBP4 deficiency. Single-cell RNA sequencing revealed that LTBP4 deficiency induced a mannose receptor C-type 1-positive (MRC1+)/CD44+ TAM subset and correlated with reduced CD8+ T cell infiltration. Mechanistically, LTBP4 deficiency increased active TGFβ1 levels, which acted in a paracrine manner to up-regulate MRC1 in TAMs, whereas autocrine signaling induced HAS2 (hyaluronan synthase 2) expression and hyaluronan production to increase CD44. CD44 signaling in TAMs up-regulated matrix metalloproteinases for collagen degradation, whereas MRC1 mediated collagen internalization, cooperatively remodeling the ECM to facilitate tumor invasion. The TGFβ1-driven MRC1+/CD44+ TAMs further suppressed CD8+ T cell function by diminishing the C-X-C motif chemokine ligand 16-C-X-C motif chemokine receptor 6 (CXCL16-CXCR6) axis. Therapeutically, targeted depleting MRC1+/CD44+ TAMs enhanced the efficacy of PD-1 (programmed cell death-1) blockade in LTBP4-deficient tumors. Our study positions LTBP4 as a key modulator of tumor progression and reveals a therapeutic strategy for LTBP4-deficient CRC.
Breast cancer remains one of the most prevalent and deadly malignancies worldwide. The tumor microenvironment (TME) critically shapes tumor progression and immune regulation through cytokine signaling. Among these, interleukin-1 alpha (IL1α) is a key mediator of breast cancer—associated immunosuppression. We init...
BACKGROUND
Epithelial ovarian cancer (EOC) is typically diagnosed at an advanced stage and is associated with high mortality due to metastasis and chemoresistance. Cancer stem cells (CSCs) are central to EOC progression, recurrence, and treatment resistance, with their functional behavior shaped by the tumor immune mic...
Rui Liu, Yi-Lin Fang, Ru-Xin Zheng et al.· Frontiers in Bioscience· 0 citations
By driving TGF-β- and SPP1-mediated interactions with tumor and immune compartments, MARCKS emerges as a key regulator of TAM-driven immunosuppression and a potential therapeutic target in lung cancer.
J. Berton, Johnny Vang, Anjolie Doan et al.· Journal of Immunology· 0 citations
gd T cells have been shown to both promote tumor growth/metastasis and to efficiently kill tumor cells. These contrasting roles have been attributed to their different functional subsets, with gdT1 cells being associated with anti-tumor immunity, while gdT17 cells are associated with tumor growth and metastasis....
Katherine J Horrigan, Joshua M. Ragusa, Somen K. Mistri et al.· Journal of Immunology· 0 citations
Colorectal cancer (CRC) is the second leading cause of cancer death in the U.S., with stage IV patients showing poor five-year survival. Immune checkpoint blockade shows limited efficacy in CRC, highlighting the need to better understand how CD8+ T cells are regulated by the tumor microenvironment (TME). In the T...
Alma Banuelos, Henrique Borges da Silva, C. Loureiro· Journal of Immunology· 0 citations
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