CD10(+) GPR77(+) Cancer-Associated Fibroblasts Promote Cancer Formation and Chemoresistance by Sustaining Cancer Stemness
CELL
Authors: Su, Shicheng; Chen, Jianing; Yao, Herui; Liu, Jiang; Yu, Shubin; Lao, Liyan; Wang, Minghui; Luo, Manli; Xing, Yue; Chen, Fei; Huang, Di; Zhao, Jinghua; Yang, Linbin; Liao, Dan; Su, Fengxi; Li, Mengfeng; Liu, Qiang; Song, Erwei
Abstract
Carcinoma-associated fibroblasts (CAFs) are abundant and heterogeneous stromal cells in tumor microenvironment that are critically involved in cancer progression. Here, we demonstrate that two cell-surface molecules, CD10 and GPR77, specifically define a CAF subset correlated with chemoresistance and poor survival in multiple cohorts of breast and lung cancer patients. CD10(+) GPR77(+) CAFs promote tumor formation and chemoresistance by providing a survival niche for cancer stem cells (CSCs). Mechanistically, CD10(+) GPR77(+) CAFs are driven by persistent NF-kappa B activation via p65 phosphorylation and acetylation, which is maintained by complement signaling via GPR77, a C5a receptor. Furthermore, CD10(+) GPR77(+) CAFs promote successful engraftment of patient-derived xenografts (PDXs), and targeting these CAFs with a neutralizing anti-GPR77 antibody abolishes tumor formation and restores tumor chemosensitivity. Our study reveals a functional CAF subset that can be defined and isolated by specific cell-surface markers and suggests that targeting the CD10(+) GPR77(+) CAF subset could be an effective therapeutic strategy against CSC-driven solid tumors.
The Complement Receptor C5aR2: A Powerful Modulator of Innate and Adaptive Immunity
JOURNAL OF IMMUNOLOGY
Authors: Li, Xaria X.; Lee, John D.; Kemper, Claudia; Woodruff, Trent M.
Abstract
Complement activation generates the core effector protein C5a, a potent immune molecule that is linked to multiple inflammatory diseases. Two C5a receptors, C5aR1 (C5aR, CD88) and C5aR2 (C5L2, GPR77), mediate the biological activities of C5a. Although C5aR1 has broadly acknowledged proinflammatory roles, C5aR2 remains at the center of controversy, with existing findings supporting both immune-activating and immune-dampening functions. Recent progress has been made toward resolving these issues. Instead of being a pure recycler and sequester of C5a, C5aR2 is capable of mediating its own set of signaling events and through these events exerting significant immunomodulatory effects not only toward C5aR1 but also other pattern recognition receptors and innate immune systems, such as NLRP3 inflammasomes. This review highlights the existing knowns and unknowns concerning C5aR2 and provides a timely update on recent breakthroughs which are expected to have a substantial impact on future fundamental and translational C5aR2 research.