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OVERVIEW OF PEPTIDES CAUSING CELIAC DISEASE AND STRATEGIES FOR THEIR ELIMINATION

机译:肽概述导致腹菌疾病的消除策略

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The discovery of specific T-cell binding epitopes in gluten has formed a major breakthrough in both understanding the etiology of celiac disease (CD) and identifying so-called toxic peptides in gluten. Initially, only reports pointing at the toxicityof alpha-gliadin protein or peptides were published. Then, the discovery was made that T-cells cloned from CD intestinal biopsies could be activated by specific gliadin sequences (Arentz-Hansen et al., 2000). This technology helped identify numerous sequences, even in previously unsuspected proteins like low molecular weight (LMW) and high molecular weight (HMW) glutenin subunits (Jensen et al., 1995; Vader et al., 2002b). Today's count is over 30 identified sequences and it is expected that more will follow in time. The discovery that deamidation by tissue-type transglutaminase (TG2) strongly increases binding to T-cells led Vader et al. to develop a search algorithm that was based on both T-cell recognition and tissue-transglutaminase specificity (Vader et al., 2002a). The number of so-called CD-toxic sequences and the fact that they are found in the majority of wheat storage proteins impacts the possibility of developing a non-CD-toxic or low CD-toxic wheat. This will be discussed in this paper.
机译:在麸质中发现特异性T细胞结合表位在理解乳糜泻(CD)的病因和鉴定谷蛋白中的所谓有毒肽的情况下形成了重大突破。最初,只公布了指向毒性毒性毒性或肽的报告。然后,发现从CD肠活中克隆的T细胞可以通过特定的胶质蛋白序列激活(Arentz-Hansen等,2000)。该技术有助于鉴定许多序列,即使在以前未缺点的蛋白质,如低分子量(LMW)和高分子量(HMW)谷蛋白亚基(Jensen等,1995; Vader等,2002b)。今天的计数超过30个鉴定的序列,预计将更加持续时间。通过组织型转谷氨酰胺酶(TG2)脱酰胺的发现强烈增加与T细胞LED VADER等人的结合。开发基于T细胞识别和组织 - 转谷氨酰胺酶特异性的搜索算法(Vader等,2002A)。所谓的CD毒性序列的数量以及它们在大多数小麦储存蛋白中发现它们的事实会影响开发非CD-毒性或低CD毒性小麦的可能性。这将在本文中讨论。

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