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IGHG3 铰链长度变异与西班牙 COVID-19 队列中危重症疾病和死亡的风险相关。

IGHG3 hinge length variation was associated with the risk of critical disease and death in a Spanish COVID-19 cohort.

机构信息

Inmunología, Hospital Universitario Central Asturias, Oviedo, Spain.

Unidad de Cuidados Intensivos Cardiológicos, Hospital Universitario Central Asturias, Oviedo, Spain.

出版信息

Genes Immun. 2022 Sep;23(6):205-208. doi: 10.1038/s41435-022-00179-3. Epub 2022 Sep 10.

Abstract

IgG3 would play an important role in the immune adaptive response against SARS-CoV-2, and low plasma levels might increase the risk of COVID-19 severity and mortality. The IgG3 hinge sequence has a variable repeat of a 15 amino acid exon with common 4-repeats (M) and 3-repeats (S). This length IGHG3 polymorphism might affect the IgG3 effector functions. The short hinge length would reduce the IgG3 flexibility and impairs the neutralization and phagocytosis compared to larger length-isoforms. We genotyped the IGHG3 length polymorphism in patients with critical COVID-19 (N = 516; 107 death) and 152 moderate-severe but no-critical cases. Carriers of the S allele had an increased risk of critical ICU and mortality (p < 0.001, OR = 2.79, 95% CI = 1.66-4.65). This adverse effect might be explained by a less flexibility and reduced ability to induce phagocytosis or viral neutralization for the short length allele. We concluded that the IgG3 hinge length polymorphism could be a predictor of critical COVID-19 and the risk of death. This study was based on a limited number of patients from a single population, and requires validation in larger cohorts.

摘要

IgG3 在针对 SARS-CoV-2 的免疫适应性反应中发挥重要作用,而血浆水平低可能会增加 COVID-19 严重程度和死亡率的风险。IgG3 铰链序列具有可变重复的 15 个氨基酸外显子,常见的是 4 重复(M)和 3 重复(S)。这种 IGHG3 多态性的长度可能会影响 IgG3 的效应功能。短铰链长度会降低 IgG3 的灵活性,并降低中和和吞噬作用,而与较长的长度异构体相比。我们对重症 COVID-19 患者(N=516;107 例死亡)和 152 例中度严重但非重症病例进行了 IGHG3 长度多态性的基因分型。S 等位基因携带者的重症 ICU 和死亡率风险增加(p<0.001,OR=2.79,95%CI=1.66-4.65)。这种不利影响可能是由于短长度等位基因的灵活性降低和减少诱导吞噬或病毒中和的能力所致。我们得出结论,IgG3 铰链长度多态性可能是重症 COVID-19 和死亡风险的预测因子。本研究基于来自单一人群的有限数量的患者,需要在更大的队列中进行验证。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/391a/9463670/d23f04493b30/41435_2022_179_Fig1_HTML.jpg

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