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Using genes to triangulate the pathophysiology of granulomatous autoinflammatory disease: NOD2 PLCG2 and LACC1

机译:使用基因三角化肉芽肿性自身炎性疾病的病理生理学:NOD2PLCG2和LACC1

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摘要

The intersection of granulomatosis and autoinflammatory disease is a rare occurrence that can be generally subdivided into purely granulomatous phenotypes and disease spectra that are inclusive of granulomatous features. NOD2 (nucleotide-binding oligomerization domain-containing protein 2)-related disease, which includes Blau syndrome and early-onset sarcoidosis, is the prototypic example of granulomatous inflammation in the context of monogenic autoinflammation. Granulomatous inflammation has also been observed in two related autoinflammatory diseases caused by mutations in PLCG2 (phospholipase Cγ2). More recently, mutations in LACC1 (laccase domain-containing protein 1) have been identified as the cause of a monogenic form of systemic juvenile idiopathic arthritis, which does not itself manifest granulomatous inflammation, but the same LACC1 mutations have also been shown to cause an early-onset, familial form of a well-known granulomatous condition, Crohn’s disease (CD). Rare genetic variants of PLCG2 have also been shown to cause a monogenic form of CD, and moreover common variants of all three of these genes have been implicated in polygenic forms of CD. Additionally, common variants of NOD2 and LACC1 have been implicated in susceptibility to leprosy, a granulomatous infection. Although no specific mechanistic link exists between these three genes, they form an intriguing web of susceptibility to both monogenic and polygenic autoinflammatory and granulomatous phenotypes.
机译:肉芽肿病和自身炎性疾病的交集很少见,通常可以细分为包括肉芽肿特征的纯肉芽肿表型和疾病谱。在单基因自发性炎症的背景下,肉芽肿性炎症的原型实例包括与Blau综合征和早发结节病有关的NOD2(含核苷酸结合寡聚域的蛋白质2)相关疾病。在由PLCG2(磷脂酶Cγ2)突变引起的两种相关的自体炎症中也观察到肉芽肿性炎症。最近,LACC1(含漆酶结构域的蛋白质1)中的突变已被确定为系统性幼年特发性关节炎的单基因形式,其本身并不表现为肉芽肿性炎症,但同样的LACC1突变也已显示出引起肉芽肿性疾病克罗恩病(CD)的早期发病,家族形式。还已经显示出PLCG2的罕见遗传变异会引起CD的单基因形式,此外,所有这三个基因的常见变异都与CD的多基因形式有关。此外,NOD2和LACC1的常见变体也涉及麻风病(肉芽肿性感染)的易感性。尽管这三个基因之间没有特定的机理联系,但它们对单基因和多基因自体炎症和肉芽肿表型都形成了有趣的易感性网。

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