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C-Type Lectin Receptor MCL Facilitates Mincle Expression and Signaling through Complex Formation

机译:C型凝集素受体MCL通过复合物形成促进小分子表达和信号传导

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C-type lectin receptors expressed in APCs are recently defined pattern recognition receptors that play a crucial role in immune responses against pathogen-associated molecular patterns. Among pathogen-associated molecular patterns, cord factor (trehalose-6,6′-dimycolate [TDM]) is the most potent immunostimulatory component of the mycobacterial cell wall. Two C-type lectin receptors, macrophage-inducible C-type lectin (Mincle) and macrophage C-type lectin (MCL), are required for immune responses against TDM. Previous studies indicate that MCL is required for TDM-induced Mincle expression. However, the mechanism by which MCL induces Mincle expression has not been fully understood. In this study, we demonstrate that MCL interacts with Mincle to promote its surface expression. After LPS or zymosan stimulation, MCL-deficient bone marrow–derived dendritic cells (BMDCs) had a lower level of Mincle protein expression, although mRNA expression was comparable with wild-type BMDCs. Meanwhile, BMDCs from MCL transgenic mice showed an enhanced level of Mincle expression on the cell surface. MCL was associated with Mincle through the stalk region and this region was necessary and sufficient for the enhancement of Mincle expression. This interaction appeared to be mediated by the hydrophobic repeat of MCL, as substitution of four hydrophobic residues within the stalk region with serine (MCL4S) abolished the function to enhance the surface expression of Mincle. MCL4S mutant failed to restore the defective TDM responses in MCL-deficient BMDCs. These results suggest that MCL positively regulates Mincle expression through protein–protein interaction via its stalk region, thereby magnifying Mincle-mediated signaling.
机译:APC中表达的C型凝集素受体是最近定义的模式识别受体,在针对病原体相关分子模式的免疫应答中起着至关重要的作用。在与病原体相关的分子模式中,脐带因子(海藻糖-6,6'-二霉菌酸酯[TDM])是分枝杆菌细胞壁最有效的免疫刺激成分。对于TDM的免疫反应,需要两种C型凝集素受体,即巨噬细胞诱导型C型凝集素(Mincle)和巨噬细胞C型凝集素(MCL)。先前的研究表明,TCL诱导的Mincle表达需要MCL。但是,尚未完全了解MCL诱导Mincle表达的机制。在这项研究中,我们证明了MCL与Mincle相互作用以促进其表面表达。 LPS或酵母聚糖刺激后,MCL缺陷型骨髓源性树突状细胞(BMDC)的Mincle蛋白表达水平较低,尽管mRNA表达与野生型BMDC相当。同时,来自MCL转基因小鼠的BMDC在细胞表面显示出更高的Mincle表达水平。 MCL通过茎区域与Mincle相关联,该区域对于增强Mincle表达是必要和充分的。这种相互作用似乎是由MCL的疏水性重复介导的,因为用丝氨酸(MCL4S)取代了茎区域内的四个疏水残基,从而取消了增强Mincle表面表达的功能。 MCL4S突变体无法还原MCL缺陷BMDC中有缺陷的TDM响应。这些结果表明,MCL通过其茎区域中的蛋白质间相互作用来积极调节Mincle的表达,从而放大了Mincle介导的信号传导。

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