Fu Chunjiang J, Jez Joseph M, Kerley Monty S, Allee Gary L, Krishnan Hari B
Division of Animal Science, and Plant Genetics Research Unit, Agricultural Research Service, U.S. Department of Agriculture, University of Missouri, Columbia, Missouri 65211, USA.
J Agric Food Chem. 2007 May 16;55(10):4014-20. doi: 10.1021/jf070211o. Epub 2007 Apr 17.
Soybean meal (SBM), the major byproduct of soybean oil extraction, is the main protein source for swine diets globally. In the United States, 8.6 million metric tons of SBM was used in swine rations in 2004. The pathological effect and immunological response of SBM feeding have been demonstrated in swine. In this study, we have utilized plasma collected from piglet feed with SBM in immunoblot analysis to detect proteins that elicited antigenic responses. We have identified soybean beta-conglycinin alpha-subunit as being a potential allergen for young piglets. Characterization of this protein indicated that deglycosylation and pepsin digestion did not eliminate immunoreactivity of this protein. Epitope mapping utilizing planar cellulose supports technology (SPOT) showed that three peptides spanning amino acids S185-R231 were critical for the allergenicity. A computer-generated three-dimensional structure model of the alpha-subunit of beta-conglycinin indicated that the antigenic epitopes were located on the surface of the protein. Information from this study may assist in the construction of recombinant nonallergenic soybean protein useable for both immunotherapy and the potential production of hypoallergenic soybean plants.
豆粕(SBM)是大豆油提取的主要副产品,是全球猪饲料的主要蛋白质来源。在美国,2004年有860万吨豆粕用于猪日粮。豆粕喂养的病理效应和免疫反应已在猪身上得到证实。在本研究中,我们利用从含豆粕的仔猪饲料中采集的血浆进行免疫印迹分析,以检测引发抗原反应的蛋白质。我们已确定大豆β-伴大豆球蛋白α亚基是幼龄仔猪的潜在过敏原。对该蛋白质的表征表明,去糖基化和胃蛋白酶消化并未消除该蛋白质的免疫反应性。利用平面纤维素支持技术(SPOT)进行的表位作图表明,跨越氨基酸S185-R231的三个肽段对致敏性至关重要。计算机生成的β-伴大豆球蛋白α亚基三维结构模型表明,抗原表位位于该蛋白质的表面。本研究的信息可能有助于构建可用于免疫治疗和潜在生产低过敏性大豆植株的重组无过敏原大豆蛋白。