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A Versatile Toolkit for Semi-Automated Production of Fluorescent Chemokines to Study CCR7 Expression and Functions

机译:用于半自动生产荧光趋化因子的多功能工具包以研究CCR7表达和功能

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摘要

Chemokines guide leukocyte migration in different contexts, including homeostasis, immune surveillance and immunity. The chemokines CCL19 and CCL21 control lymphocyte and dendritic cell migration and homing to lymphoid organs. Thereby they orchestrate adaptive immunity in a chemokine receptor CCR7-dependent manner. Likewise, cancer cells that upregulate CCR7 expression are attracted by these chemokines and metastasize to lymphoid organs. In-depth investigation of CCR7 expression and chemokine-mediated signaling is pivotal to understand their role in health and disease. Appropriate fluorescent probes to track these events are increasingly in demand. Here, we present an approach to cost-effectively produce and fluorescently label CCL19 and CCL21 in a semi-automated process. We established a versatile protocol for the production of recombinant chemokines harboring a small C-terminal S6-tag for efficient and site-specific enzymatic labelling with an inorganic fluorescent dye of choice. We demonstrate that the fluorescently labeled chemokines CCL19-S6Dy649P1 and CCL21-S6Dy649P1 retain their full biological function as assessed by their abilities to mobilize intracellular calcium, to recruit β-arrestin to engaged receptors and to attract CCR7-expressing leukocytes. Moreover, we show that CCL19-S6Dy649P1 serves as powerful reagent to monitor CCR7 internalization by time-lapse confocal video microscopy and to stain CCR7-positive primary human and mouse T cell sub-populations.
机译:趋化因子指南在不同背景下的白细胞迁移,包括稳态,免疫监测和免疫。趋化因子CCL19和CCL21对照淋巴细胞和树突细胞迁移和归巢至淋巴器官。因此,它们以趋化因子受体CCR7依赖性方式协调适应性免疫。同样,上调CCR7表达的癌细胞被这些趋化因子吸引并转移到淋巴器官。深入调查CCR7表达和趋化因子介导的信号传导是衡量其在健康和疾病中的作用。追踪这些事件的适当荧光探针越来越多地有所要求。这里,我们提出了一种在半自动过程中成本有效地产生和荧光标记CCL19和CCL21的方法。我们建立了一种多功能方案,用于生产含有小C末端S6标签的重组趋化因子,用于有效和位点特异性酶标,具有无机荧光染料的选择。我们证明,荧光标记的趋化因子CCL19-S6DY649P1和CCL21-S6DDO649P1将其通过动员细胞内钙的能力评估来保留其全部生物学功能,以募集β-ARRESTIN对接合受体并吸引CCR7表达白细胞。此外,我们表明CCL19-S6DDO649P1用作通过延时共聚焦视频显微镜监测CCR7内化并染色CCR7阳性原发性人和小鼠T细胞群的强大试剂。

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