穿孔素
细胞生物学
免疫突触
细胞骨架
细胞毒性T细胞
肌动蛋白
生物
颗粒酶
突触
细胞
生物物理学
T细胞
免疫系统
神经科学
免疫学
生物化学
体外
T细胞受体
作者
Fella Tamzalit,Mitchell S. Wang,Weiyang Jin,María Tello‐Lafoz,Vitaly Boyko,John M. Heddleston,Charles T. Black,Lance C. Kam,Morgan Huse
出处
期刊:Science immunology
[American Association for the Advancement of Science]
日期:2019-03-22
卷期号:4 (33)
被引量:119
标识
DOI:10.1126/sciimmunol.aav5445
摘要
Cytotoxic T lymphocytes (CTLs) kill by forming immunological synapses with target cells and secreting toxic proteases and the pore-forming protein perforin into the intercellular space. Immunological synapses are highly dynamic structures that boost perforin activity by applying mechanical force against the target cell. Here, we used high-resolution imaging and microfabrication to investigate how CTLs exert synaptic forces and coordinate their mechanical output with perforin secretion. Using micropatterned stimulatory substrates that enable synapse growth in three dimensions, we found that perforin release occurs at the base of actin-rich protrusions that extend from central and intermediate locations within the synapse. These protrusions, which depended on the cytoskeletal regulator WASP and the Arp2/3 actin nucleation complex, were required for synaptic force exertion and efficient killing. They also mediated physical deformation of the target cell surface during CTL-target cell interactions. Our results reveal the mechanical basis of cellular cytotoxicity and highlight the functional importance of dynamic, three-dimensional architecture in immune cell-cell interfaces.
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