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小麦淀粉酶胰蛋白酶抑制剂作为天然免疫的营养激活剂。

Wheat amylase trypsin inhibitors as nutritional activators of innate immunity.

作者信息

Schuppan Detlef, Zevallos Victor

出版信息

Dig Dis. 2015;33(2):260-263. doi: 10.1159/000371476. Epub 2015 Apr 22.

Abstract

While the central role of an adaptive, T cell-mediated immune response to certain gluten peptides in celiac disease is well established, the innate immune response to wheat proteins remains less well defined. We identified wheat amylase trypsin inhibitors (ATIs), but not gluten, as major stimulators of innate immune cells (dendritic cells>macrophages>monocytes), while intestinal epithelial cells were nonresponsive. ATIs bind to and activate the CD14-MD2 toll-like receptor 4 (TLR4) complex. This activation occurs both in vitro and in vivo after oral ingestion of purified ATIs or gluten, which is usually enriched in ATIs. Wheat ATIs represent a family of up to 17 proteins with molecular weights of around 15 kDa and a variable primary but conserved secondary structure characterized by 5 intrachain disulfide bonds and alpha helices. They mostly form di- and tetramers that appear to equally activate TLR4. Relevant biological activity is confined to ATIs in gluten-containing cereals, while gluten-free cereals display no or minimal activities. ATIs represent up to 4% of total wheat protein and are highly resistant to intestinal proteases. In line with their dose-dependent function as co-stimulatory molecules in adaptive immunity of celiac disease, they appear to play a role in promoting other immune-mediated diseases within and outside the GI tract. Thus, ATIs may be prime candidates of severe forms of non-celiac gluten (wheat) sensitivity.

摘要

虽然适应性T细胞介导的免疫反应在乳糜泻中对某些麸质肽起核心作用已得到充分证实,但对小麦蛋白的先天免疫反应仍不太明确。我们发现小麦淀粉酶胰蛋白酶抑制剂(ATIs)而非麸质是先天免疫细胞(树突状细胞>巨噬细胞>单核细胞)的主要刺激物,而肠上皮细胞无反应。ATIs与CD14-MD2 Toll样受体4(TLR4)复合物结合并激活它。口服纯化的ATIs或麸质(通常富含ATIs)后,这种激活在体外和体内均会发生。小麦ATIs是一个由多达17种蛋白质组成的家族,分子量约为15 kDa,一级结构可变但二级结构保守,其特征为5个链内二硫键和α螺旋。它们大多形成二聚体和四聚体,似乎能同等程度地激活TLR4。相关生物活性仅限于含麸质谷物中的ATIs,而无麸质谷物则无活性或活性极低。ATIs占小麦总蛋白的比例高达4%,且对肠道蛋白酶具有高度抗性。鉴于它们在乳糜泻适应性免疫中作为共刺激分子具有剂量依赖性功能,它们似乎在促进胃肠道内外的其他免疫介导疾病中发挥作用。因此,ATIs可能是严重形式的非乳糜泻性麸质(小麦)敏感的主要候选因素。

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