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补体遗传学、缺陷与疾病关联。

Complement genetics, deficiencies, and disease associations.

机构信息

Institute of Molecular Biology, Armenian National Academy Sciences, Yerevan 0014, Armenia.

出版信息

Protein Cell. 2012 Jul;3(7):487-96. doi: 10.1007/s13238-012-2924-6. Epub 2012 Jul 10.

Abstract

The complement system is a key component of innate immunity. More than 45 genes encoding the proteins of complement components or their isotypes and subunits, receptors, and regulators have been discovered. These genes are distributed throughout different chromosomes, with 19 genes comprising three significant complement gene clusters in the human genome. Genetic deficiency of any early component of the classical pathway (C1q, C1r/s, C2, C4, and C3) is associated with autoimmune diseases due to the failure of clearance of immune complexes (IC) and apoptotic materials, and the impairment of normal humoral response. Deficiencies of mannan-binding lectin (MBL) and the early components of the alternative (factor D, properdin) and terminal pathways (from C3 onward components: C5, C6, C7, C8, C9) increase susceptibility to infections and their recurrence. While the association of MBL deficiency with a number of autoimmune and infectious disorders has been well established, the effects of the deficiency of other lectin pathway components (ficolins, MASPs) have been less extensively investigated due to our incomplete knowledge of the genetic background of such deficiencies and the functional activity of those components. For complement regulators and receptors, the consequences of their genetic deficiency vary depending on their specific involvement in the regulatory or signalling steps within the complement cascade and beyond. This article reviews current knowledge and concepts about the genetic load of complement component deficiencies and their association with diseases. An integrative presentation of genetic data with the latest updates provides a background to further investigations of the disease association investigations of the complement system from the perspective of systems biology and systems genetics.

摘要

补体系统是先天免疫系统的关键组成部分。已经发现了超过 45 个基因,这些基因编码补体成分或其同种型和亚基、受体和调节剂的蛋白质。这些基因分布在不同的染色体上,人类基因组中有 19 个基因组成三个重要的补体基因簇。经典途径的任何早期成分(C1q、C1r/s、C2、C4 和 C3)的遗传缺陷与自身免疫性疾病有关,原因是免疫复合物(IC)和凋亡物质的清除失败,以及正常体液反应受损。甘露聚糖结合凝集素(MBL)和替代途径(因子 D、备解素)以及末端途径(从 C3 开始的成分:C5、C6、C7、C8、C9)的早期成分的缺乏增加了感染及其复发的易感性。虽然 MBL 缺乏与许多自身免疫性和感染性疾病的关联已经得到很好的确立,但由于我们对这些缺乏症的遗传背景和这些成分的功能活性了解不完整,其他凝集素途径成分(ficolins、MASPs)缺乏的影响研究得较少。对于补体调节剂和受体,其遗传缺陷的后果取决于它们在补体级联反应中的调节或信号步骤中的具体参与及其以外的步骤。本文综述了补体成分缺陷的遗传负荷及其与疾病的关联的最新知识和概念。将遗传数据与最新更新进行综合呈现,为从系统生物学和系统遗传学的角度进一步研究补体系统的疾病关联提供了背景。

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