Mammalian diaphanous-related formin 1 (mDia1) coordinates mast cell migration and secretion through its actin-nucleating activity
JOURNAL OF ALLERGY AND CLINICAL IMMUNOLOGY
Authors: Klein, Ofir; Krier-Burris, Rebecca A.; Lazki-Hagenbach, Pia; Gorzalczany, Yaara; Mei, Yang; Ji, Peng; Bochner, Bruce S.; Sagi-Eisenberg, Ronit
Abstract
Background: Actin remodeling is a key regulator of mast cell ( MC) migration and secretion. However, the precise mechanism underlying the coordination of these processes has remained obscure. Objective: We sought to characterize the actin rearrangements that occur during MC secretion or chemotactic migration and identify the underlying mechanism of their coordination. Methods: Using high-resolution microscopy, we analyzed the dynamics of actin rearrangements in MCs triggered to migration by IL-8 or prostaglandin E-2 or to Fc epsilon URI-stimulated secretion. Results: We show that a major feature of the actin skeleton in MCs stimulated to migration is the buildup of pericentral actin clusters that prevent cell flattening and converge the secretory granules (SGs) in the cell center. This migratory phenotype is replaced on encounter of an IgE cross-linking antigen that stimulates secretion through a secretory phenotype characterized by cell flattening, reduction of actin mesh density, ruffling of cortical actin, and mobilization of SGs. Furthermore, we show that knockdown of mammalian diaphanous-related formin 1 (mDia1) inhibits chemotactic migration and its typical actin rearrangements, whereas expression of an active mDia1 mutant recapitulates the migratory actin phenotype and enhances cell migration while inhibiting Fc epsilon RI-triggered secretion. However, mice deficient in mDia1 appear to have normal numbers of MCs in various organs at baseline. Conclusion: Our results demonstrate a unique role of actin rearrangements in clustering the SGs and inhibiting their secretion during MC migration. We identify mDia1 as a novel regulator of MC response that coordinates MC chemotaxis and secretion through its actin-nucleating activity.
Comprehensive analysis of the prognostic value and immune function of chemokine-CXC receptor family members in breast cancer
INTERNATIONAL IMMUNOPHARMACOLOGY
Authors: Lyu, Lijuan; Zheng, Yi; Hong, Yun; Wang, Meng; Deng, Yujiao; Wu, Ying; Xu, Peng; Yang, Si; Wang, Shuqian; Yao, Jia; Zhang, Dai; Guo, Yan; Lyu, Jun; Dai, Zhijun
Abstract
Recently, immune checkpoint inhibitors (ICIs) have been successfully used for treating melanoma. Unfortunately, many breast cancer (BC) patients show low response to ICIs due to the lack of infiltrating immune cells. Previous studies revealed that chemokine-CXC receptors (CXCRs) play a crucial role in leukocyte infiltration and promote cancer cell proliferation, migration, metastasis, and angiogenesis. However, the underlying functions of CXCRs in cancer-immunity cycle remain unclear. In this study, we firstly found that in comparison to normal tissues, BC tissues, especially basal-like BC, showed increased mRNA levels of CXCR3/4/5/6/8, but decreased CXCR1/2/7 expression using UALCAN and TIMER database. Interestingly, it's was found that the mRNA levels of CXCR3/4/5/6 were decreased in lymphocyte depleted of the BC immune subtype. Subsequently, functional enrichment analysis of distinct CXCRs indicated that CXCR3/4/5/6 were strongly associated to immune-related biological functions. Therefore, further analysis using TIMER and TISIDB database suggested that CXCR3/4/5/6 expression were strongly correlated with tumor-infiltrating lymphocytes (TILs) and immune checkpoints in BC. Finally, Kaplan-Meier Plotter analysis indicated that high mRNA expression of CXCR4 predicted worse relapse-free survival (RFS), whereas CXCR3/5/6 indicated better RFS in BC patients. These findings suggest a therapeutic value for CXCR3/4/5/6 in combination with ICIs for the treatment of BC.