Molecular aspects of hereditary complement component C5 deficiency in humans

Q4 Medicine Polish Annals of Medicine Pub Date : 2024-07-15 DOI:10.29089/paom/188059
Hanna Szymańska
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Abstract

The complement system plays a key role in the host defense against pathogens. The deficiency of complement components predisposes the system to recurrent infections and autoimmune diseases. In particular, serum C5 deficiency (C5D) may be serious for human health, because this protein plays a key role in controlling infections, mainly with Neisseria spp.The aim of this article is to present the structure and function of the human C5 gene encoding complement component C5, with particular regard to the molecular characteristics of the mutations causing hereditary complement C5 deficiency.This article is based on the available literature. A total of 35 articles were included in the study.Based on the literature review, it was shown that C5 mediates inflammatory processes and bacterial cytolysis. The cause of hereditary C5 deficiency in humans is inefficient or reduced serum C5 biosynthesis, due to mutations in the C5 gene. This quantitative and functional C5 deficiency is associated with recurrent Neisseria spp. infections, the lack of bactericidal activity and an impaired ability of serum to induce chemotaxis. The molecular characterization of previously described C5D-related mutations in the human C5 gene has been performed, and the clinical presentation of some molecularly examined C5D probands has also been discussed.The deficiency of C5 protein, which bridges innate and adaptive immunity, is related with 18 different mutations in the C5 gene found in over 30 families of various origins. Screening for complement defects seems particularly important, especially in asymptomatic relatives of probands.
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人类遗传性补体成分 C5 缺乏症的分子问题
补体系统在宿主抵御病原体的过程中发挥着关键作用。缺乏补体成分会导致系统易受反复感染和患自身免疫性疾病。本文旨在介绍编码补体成分 C5 的人类 C5 基因的结构和功能,尤其是引起遗传性补体 C5 缺乏症的突变的分子特征。根据文献综述,C5介导炎症过程和细菌细胞溶解。人类遗传性 C5 缺乏症的原因是 C5 基因突变导致血清 C5 生物合成效率低下或减少。这种定量和功能性 C5 缺乏症与奈瑟氏菌属反复感染、缺乏杀菌活性以及血清诱导趋化能力受损有关。我们对之前描述的人类 C5 基因中与 C5D 相关的突变进行了分子鉴定,并讨论了一些经分子鉴定的 C5D 阳性者的临床表现。C5 蛋白是先天性免疫和适应性免疫的桥梁,其缺乏与 30 多个不同起源的家族中发现的 18 种不同的 C5 基因突变有关。筛查补体缺陷似乎尤为重要,尤其是在无症状的疑似患者亲属中。
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来源期刊
Polish Annals of Medicine
Polish Annals of Medicine Medicine-Medicine (all)
CiteScore
0.40
自引率
0.00%
发文量
28
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