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特应性皮炎中的丝聚合蛋白

Filaggrin in atopic dermatitis.

作者信息

O'Regan Grainne M, Sandilands Aileen, McLean W H Irwin, Irvine Alan D

机构信息

Department of Paediatric Dermatology, Our Lady's Children's Hospital, Dublin, Ireland.

出版信息

J Allergy Clin Immunol. 2009 Sep;124(3 Suppl 2):R2-6. doi: 10.1016/j.jaci.2009.07.013.

Abstract

The recent identification of loss-of-function mutations in the structural protein filaggrin as a widely replicated major risk factor for eczema sheds new light on disease mechanisms in eczema, a disease that had heretofore largely been considered to have a primarily immunologic etiopathogenesis. The filaggrin gene (FLG) mutation findings are consistent with a recently proposed unifying hypothesis that offers a mechanistic understanding of eczema pathogenesis synthesizing a heritable epithelial barrier defect and resultant diminished epidermal defense mechanisms to allergens and microbes, followed by polarized T(H)2 lymphocyte responses with resultant chronic inflammation, including autoimmune mechanisms. Although compelling evidence from genetic studies on FLG implicates perturbed barrier function as a key player in the pathogenesis of eczema in many patients, much is still unknown about the sequence of biologic, physicochemical, and aberrant regulatory events that constitute the transition from an inherited barrier defect to clinical manifestations of inflammatory eczematous lesions and susceptibility to related atopic disorders. The exact contribution of FLG to the wider atopic story, factors modifying FLG expression, and the role of other barrier proteins remain to be delineated. In this review we highlight recent advances in our understanding of the FLG genetics in the cause of eczema and related complex diseases.

摘要

近期研究发现,结构蛋白丝聚合蛋白中的功能丧失突变是一种广泛存在且经反复验证的湿疹主要危险因素,这为湿疹的发病机制带来了新的认识。此前,湿疹在很大程度上被认为主要具有免疫性病因发病机制。丝聚合蛋白基因(FLG)突变的研究结果与最近提出的一个统一假说相符,该假说为湿疹发病机制提供了一种机制性理解,即综合了遗传性上皮屏障缺陷以及由此导致的表皮对过敏原和微生物防御机制的减弱,随后出现极化的辅助性T细胞2(TH2)淋巴细胞反应,进而引发包括自身免疫机制在内的慢性炎症。尽管关于FLG的遗传学研究提供了令人信服的证据,表明屏障功能紊乱在许多患者湿疹发病机制中起着关键作用,但对于从遗传性屏障缺陷到炎症性湿疹病变的临床表现以及对相关特应性疾病易感性的转变过程中所涉及的生物学、物理化学和异常调节事件的顺序,仍有许多未知之处。FLG在更广泛的特应性疾病中的具体作用、影响FLG表达的因素以及其他屏障蛋白的作用仍有待阐明。在这篇综述中,我们重点介绍了在理解FLG遗传学在湿疹及相关复杂疾病病因方面的最新进展。

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