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Tspan18 是血栓炎症的一个新型调节因子。

Tspan18 is a novel regulator of thrombo-inflammation.

机构信息

School of Biosciences, University of Birmingham, Birmingham, UK.

出版信息

Med Microbiol Immunol. 2020 Aug;209(4):553-564. doi: 10.1007/s00430-020-00678-y. Epub 2020 May 23.

Abstract

The interplay between thrombosis and inflammation, termed thrombo-inflammation, causes acute organ damage in diseases such as ischaemic stroke and venous thrombosis. We have recently identified tetraspanin Tspan18 as a novel regulator of thrombo-inflammation. The tetraspanins are a family of 33 membrane proteins in humans that regulate the trafficking, clustering, and membrane diffusion of specific partner proteins. Tspan18 partners with the store-operated Ca entry channel Orai1 on endothelial cells. Orai1 appears to be expressed in all cells and is critical in health and disease. Orai1 mutations cause human immunodeficiency, resulting in chronic and often lethal infections, while Orai1-knockout mice die at around the time of birth. Orai1 is a promising drug target in autoimmune and inflammatory diseases, and Orai1 inhibitors are in clinical trials. The focus of this review is our work on Tspan18 and Orai1 in Tspan18-knockout mice and Tspan18-knockdown primary human endothelial cells. Orai1 trafficking to the cell surface is partially impaired in the absence of Tspan18, resulting in impaired Ca signaling and impaired release of the thrombo-inflammatory mediator von Willebrand factor following endothelial stimulation. As a consequence, Tspan18-knockout mice are protected in ischemia-reperfusion and deep vein thrombosis models. We provide new evidence that Tspan18 is relatively highly expressed in endothelial cells, through the analysis of publicly available single-cell transcriptomic data. We also present new data, showing that Tspan18 is required for normal Ca signaling in platelets, but the functional consequences are subtle and restricted to mildly defective platelet aggregation and spreading induced by the platelet collagen receptor GPVI. Finally, we generate structural models of human Tspan18 and Orai1 and hypothesize that Tspan18 regulates Orai1 Ca channel function at the cell surface by promoting its clustering.

摘要

血栓形成和炎症的相互作用,称为血栓炎症,导致缺血性中风和静脉血栓形成等疾病的急性器官损伤。我们最近发现四跨膜蛋白 Tspan18 是血栓炎症的一种新的调节剂。四跨膜蛋白是人类 33 种膜蛋白家族,调节特定伴侣蛋白的运输、聚集和膜扩散。Tspan18 与内皮细胞上的储存操作钙进入通道 Orai1 伙伴。Orai1 似乎在所有细胞中表达,在健康和疾病中至关重要。Orai1 突变导致人类免疫缺陷,导致慢性且往往致命的感染,而 Orai1 敲除小鼠在出生时左右死亡。Orai1 是自身免疫和炎症性疾病的有前途的药物靶点,Orai1 抑制剂正在临床试验中。本综述的重点是我们在 Tspan18 敲除小鼠和 Tspan18 敲低原代人内皮细胞中关于 Tspan18 和 Orai1 的工作。在缺乏 Tspan18 的情况下,Orai1 向细胞表面的转运部分受损,导致 Ca 信号受损,内皮刺激后血栓炎症介质 von Willebrand 因子的释放受损。因此,Tspan18 敲除小鼠在缺血再灌注和深静脉血栓形成模型中受到保护。我们通过分析公开的单细胞转录组数据提供了新的证据,表明 Tspan18 在内皮细胞中相对高表达。我们还提供了新的数据,表明 Tspan18 是血小板中正常 Ca 信号所必需的,但功能后果是微妙的,仅限于轻度缺陷的血小板聚集和由血小板胶原受体 GPVI 诱导的血小板扩展。最后,我们生成了人 Tspan18 和 Orai1 的结构模型,并假设 Tspan18 通过促进其聚集来调节 Orai1 钙通道在细胞表面的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/af45/7395042/f15a1fad1587/430_2020_678_Fig1_HTML.jpg

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