Roth-Walter Franziska, Pacios Luis F, Gomez-Casado Cristina, Hofstetter Gerlinde, Roth Georg A, Singer Josef, Diaz-Perales Araceli, Jensen-Jarolim Erika
Comparative Medicine, Messerli Research Institute of the University of Veterinary Medicine Vienna, Medical University Vienna and University Vienna, Vienna, Austria.
Biotechnology Department, Center for Plant Biotechnology and Genomics, Technical University of Madrid, Madrid, Spain.
PLoS One. 2014 Aug 12;9(8):e104803. doi: 10.1371/journal.pone.0104803. eCollection 2014.
The mechanisms of allergic sensitization to milk are still elusive. The major allergen Bos d 5 belongs to the lipocalin-family and thus is able to transport numerous ligands. In this study we investigated its ability to bind to iron-siderophore complexes and tested the immune-modulatory properties of Bos d 5 in either forms. Structural and in silico docking analysis of Bos d 5 revealed that Bos d 5 is able to bind to iron via catechol-based flavonoids (quercetin, myricetin, luteolin) that act as siderophores as confirmed by spectral-analysis and iron staining. Calculated dissociation constants of docking analyses were below 1 µM by virtual addition of iron. When incubated with human peripheral blood mononuclear cells (PBMCs), only the apo-form of Bos d 5 led to an increase of CD4+positive cells and significantly elevated IL13 and IFNγ-levels. In contrast, holo-Bos d 5 decreased numbers of CD4 expressing cells and induced apoptosis. Taken together, our data give evidence that Bos d 5 is capable of binding iron via siderophores. Moreover, our data support for the first time the notion that the form of application (apo- or holo-form) is decisive for the subsequent immune response. The apo-form promotes Th2 cells and inflammation, whereas the holo-form appears to be immunosuppressive.
对牛奶过敏致敏的机制仍不清楚。主要过敏原Bos d 5属于脂质运载蛋白家族,因此能够转运多种配体。在本研究中,我们研究了其与铁-铁载体复合物结合的能力,并测试了两种形式的Bos d 5的免疫调节特性。Bos d 5的结构和计算机对接分析表明,Bos d 5能够通过基于儿茶酚的类黄酮(槲皮素、杨梅素、木犀草素)与铁结合,这些类黄酮作为铁载体,光谱分析和铁染色证实了这一点。通过虚拟添加铁,对接分析计算出的解离常数低于1 μM。当与人外周血单核细胞(PBMC)一起孵育时,只有Bos d 5的脱辅基形式导致CD4 +阳性细胞增加,并显著提高IL13和IFNγ水平。相反,全蛋白形式的Bos d 5减少了表达CD4的细胞数量并诱导细胞凋亡。综上所述,我们的数据证明Bos d 5能够通过铁载体结合铁。此外,我们的数据首次支持了应用形式(脱辅基或全蛋白形式)对随后免疫反应起决定性作用的观点。脱辅基形式促进Th2细胞和炎症,而全蛋白形式似乎具有免疫抑制作用。