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以干狗粮饲养的腐食酪螨粪便衍生过敏原以及螨与产生蛋白酶芽孢杆菌溶菌素和外切几丁质酶的蜡样芽孢杆菌之间强烈营养相互作用的证据。

Feces Derived Allergens of Tyrophagus putrescentiae Reared on Dried Dog Food and Evidence of the Strong Nutritional Interaction between the Mite and Bacillus cereus Producing Protease Bacillolysins and Exo-chitinases.

作者信息

Erban Tomas, Rybanska Dagmar, Harant Karel, Hortova Bronislava, Hubert Jan

机构信息

Laboratory of Proteomics, Biologically Active Substances in Crop Protection, Crop Research Institute Prague, Czech Republic.

Laboratory of Proteomics, Biologically Active Substances in Crop Protection, Crop Research InstitutePrague, Czech Republic; Department of Plant Protection, Faculty of Agrobiology, Food and Natural Resources, Czech University of Life Sciences PraguePrague, Czech Republic.

出版信息

Front Physiol. 2016 Feb 24;7:53. doi: 10.3389/fphys.2016.00053. eCollection 2016.

Abstract

Tyrophagus putrescentiae (Schrank, 1781) is an emerging source of allergens in stored products and homes. Feces proteases are the major allergens of astigmatid mites (Acari: Acaridida). In addition, the mites are carriers of microorganisms and microbial adjuvant compounds that stimulate innate signaling pathways. We sought to analyze the mite feces proteome, proteolytic activities, and mite-bacterial interaction in dry dog food (DDF). Proteomic methods comprising enzymatic and zymographic analysis of proteases and 2D-E-MS/MS were performed. The highest protease activity was assigned to trypsin-like proteases; lower activity was assigned to chymotrypsin-like proteases, and the cysteine protease cathepsin B-like had very low activity. The 2D-E-MS/MS proteomic analysis identified mite trypsin allergen Tyr p3, fatty acid-binding protein Tyr p13 and putative mite allergens ferritin (Grp 30) and (poly)ubiquitins. Tyr p3 was detected at different positions of the 2D-E. It indicates presence of zymogen at basic pI, and mature-enzyme form and enzyme fragment at acidic pI. Bacillolysins (neutral and alkaline proteases) of Bacillus cereus symbiont can contribute to the protease activity of the mite extract. The bacterial exo-chitinases likely contribute to degradation of mite exuviae, mite bodies or food boluses consisting of chitin, including the peritrophic membrane. Thus, the chitinases disrupt the feces and facilitate release of the allergens. B. cereus was isolated and identified based on amplification and sequencing of 16S rRNA and motB genes. B. cereus was added into high-fat, high-protein (DDF) and low-fat, low-protein (flour) diets to 1 and 5% (w/w), and the diets palatability was evaluated in 21-day population growth test. The supplementation of diet with B. cereus significantly suppressed population growth and the suppressive effect was higher in the high-fat, high-protein diet than in the low-fat, low-protein food. Thus, B. cereus has to coexist with the mite in balance to be beneficial for the mite. The mite-B. cereus symbiosis can be beneficial-suppressive at some level. The results increase the veterinary and medical importance of the allergens detected in feces. The B. cereus enzymes/toxins are important components of mite allergens. The strong symbiotic association of T. putrescentiae with B. cereus in DDF was indicated.

摘要

腐食酪螨(Tyrophagus putrescentiae,施兰克,1781年)是储存产品和家庭中一种新出现的过敏原来源。粪便蛋白酶是粉螨(蜱螨亚纲:粉螨目)的主要过敏原。此外,这些螨虫还是刺激先天性信号通路的微生物和微生物佐剂化合物的载体。我们试图分析干狗粮(DDF)中螨虫粪便蛋白质组、蛋白水解活性以及螨虫与细菌的相互作用。采用了包括蛋白酶的酶促分析和酶谱分析以及二维电泳-串联质谱(2D-E-MS/MS)在内的蛋白质组学方法。最高的蛋白酶活性归因于类胰蛋白酶;较低的活性归因于类糜蛋白酶,而半胱氨酸蛋白酶组织蛋白酶B样的活性非常低。二维电泳-串联质谱蛋白质组学分析鉴定出螨虫胰蛋白酶过敏原Tyr p3、脂肪酸结合蛋白Tyr p13以及推定的螨虫过敏原铁蛋白(Grp 30)和(多)泛素。在二维电泳的不同位置检测到了Tyr p3。这表明在碱性pH值下存在酶原,在酸性pH值下存在成熟酶形式和酶片段。蜡样芽孢杆菌共生菌的芽孢溶素(中性和碱性蛋白酶)可能有助于螨虫提取物的蛋白酶活性。细菌外切几丁质酶可能有助于降解螨虫蜕皮、螨虫体或由几丁质组成的食物团块,包括围食膜。因此,几丁质酶破坏粪便并促进过敏原的释放。基于16S rRNA和motB基因的扩增和测序分离并鉴定了蜡样芽孢杆菌。将蜡样芽孢杆菌添加到高脂肪、高蛋白(DDF)和低脂肪、低蛋白(面粉)日粮中,添加量分别为1%和5%(w/w),并在为期21天的种群生长试验中评估日粮的适口性。用蜡样芽孢杆菌补充日粮显著抑制了种群生长,并且在高脂肪、高蛋白日粮中的抑制作用高于低脂肪、低蛋白食物。因此,蜡样芽孢杆菌必须与螨虫保持平衡共存才对螨虫有益。螨虫与蜡样芽孢杆菌的共生在某种程度上可能是有益-抑制性的。这些结果增加了在粪便中检测到的过敏原在兽医和医学上的重要性。蜡样芽孢杆菌的酶/毒素是螨虫过敏原的重要组成部分。表明了腐食酪螨与蜡样芽孢杆菌在干狗粮中存在强烈的共生关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1cb4/4764834/63f460e28c65/fphys-07-00053-g0001.jpg

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