Medical Scientist Training Program, Medical College of Wisconsin, Milwaukee, Wisconsin.
Department of Microbiology & Immunology, Medical College of Wisconsin, Milwaukee, Wisconsin.
Am J Physiol Cell Physiol. 2023 Jan 1;324(1):C167-C182. doi: 10.1152/ajpcell.00151.2022. Epub 2022 Nov 1.
Chemokines are chemotactic cytokines whose canonical functions govern movement of receptor-expressing cells along chemical gradients. Chemokines are a physiological system that is finely tuned by ligand and receptor expression, ligand or receptor oligomerization, redundancy, expression of atypical receptors, and non-GPCR binding partners that cumulatively influence discrete pharmacological signaling responses and cellular functions. In cancer, chemokines play paradoxical roles in both the directed emigration of metastatic, receptor-expressing cancer cells out of the tumor as well as immigration of tumor-infiltrating immune cells that culminate in a tumor-unique immune microenvironment. In the age of precision oncology, strategies to effectively harness the power of immunotherapy requires consideration of chemokine gradients within the unique spatial topography and temporal influences with heterogeneous tumors. In this article, we review current literature on the diversity of chemokine ligands and their cellular receptors that detect and process chemotactic gradients and illustrate how differences between ligand recognition and receptor activation influence the signaling machinery that drives cellular movement into and out of the tumor microenvironment. Facets of chemokine physiology across discrete cancer immune phenotypes are contrasted to existing chemokine-centered therapies in cancer.
趋化因子是趋化细胞因子,其典型功能是控制表达受体的细胞沿着化学梯度运动。趋化因子是一个生理系统,通过配体和受体表达、配体或受体寡聚化、冗余、非典型受体表达以及非 GPCR 结合伙伴的精细调节,共同影响离散的药理学信号转导反应和细胞功能。在癌症中,趋化因子在转移性、表达受体的癌细胞从肿瘤中定向迁出以及浸润肿瘤的免疫细胞的浸润中发挥着矛盾的作用,最终导致肿瘤独特的免疫微环境。在精准肿瘤学时代,有效地利用免疫疗法的力量的策略需要考虑独特的空间拓扑结构和异质肿瘤中的时空影响的趋化因子梯度。在本文中,我们回顾了关于趋化因子配体及其细胞受体的多样性的现有文献,这些受体可以检测和处理趋化梯度,并说明配体识别和受体激活之间的差异如何影响驱动细胞进入和离开肿瘤微环境的信号机制。不同的癌症免疫表型之间趋化因子生理学的各个方面与现有的以趋化因子为中心的癌症治疗方法进行了对比。