Kopf Aglaja, Kiermaier Eva
CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences, Vienna, Austria.
Department of Dermatology, Medical University of Vienna, Vienna, Austria.
Front Cell Dev Biol. 2021 Feb 9;9:635511. doi: 10.3389/fcell.2021.635511. eCollection 2021.
The organization of microtubule arrays in immune cells is critically important for a properly operating immune system. Leukocytes are white blood cells of hematopoietic origin, which exert effector functions of innate and adaptive immune responses. During these processes the microtubule cytoskeleton plays a crucial role for establishing cell polarization and directed migration, targeted secretion of vesicles for T cell activation and cellular cytotoxicity as well as the maintenance of cell integrity. Considering this large spectrum of distinct effector functions, leukocytes require flexible microtubule arrays, which timely and spatially reorganize allowing the cells to accommodate their specific tasks. In contrast to other specialized cell types, which typically nucleate microtubule filaments from non-centrosomal microtubule organizing centers (MTOCs), leukocytes mainly utilize centrosomes for sites of microtubule nucleation. Yet, MTOC localization as well as microtubule organization and dynamics are highly plastic in leukocytes thus allowing the cells to adapt to different environmental constraints. Here we summarize our current knowledge on microtubule organization and dynamics during immune processes and how these microtubule arrays affect immune cell effector functions. We particularly highlight emerging concepts of microtubule involvement during maintenance of cell shape and physical coherence.
免疫细胞中微管阵列的组织对于正常运作的免疫系统至关重要。白细胞是造血来源的白细胞,发挥先天性和适应性免疫反应的效应功能。在这些过程中,微管细胞骨架对于建立细胞极化和定向迁移、T细胞活化和细胞毒性的囊泡靶向分泌以及维持细胞完整性起着关键作用。考虑到如此广泛的不同效应功能,白细胞需要灵活的微管阵列,这些阵列能及时且在空间上重新组织,使细胞能够适应其特定任务。与其他通常从非中心体微管组织中心(MTOC)形成微管丝的特殊细胞类型不同,白细胞主要利用中心体作为微管成核的位点。然而,MTOC定位以及微管组织和动力学在白细胞中具有高度可塑性,从而使细胞能够适应不同的环境限制。在这里,我们总结了我们目前对免疫过程中微管组织和动力学的认识,以及这些微管阵列如何影响免疫细胞效应功能。我们特别强调了微管在维持细胞形状和物理连贯性过程中涉及的新兴概念。