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一种新型AGR2变体导致异常的单体-二聚体平衡,引发严重的呼吸和消化症状。

A Novel AGR2 Variant Causing Aberrant Monomer-Dimer Equilibrium Leading to Severe Respiratory and Digestive Symptoms.

作者信息

Takada Sanami, Gallo Silvanna, Silva Sebastian, Tanaka Hiroki, Pincheira Oscar, Zúñiga Juan, Villarroel Marcela, Hidalgo Ximena, Melo-Tanner Joel, Suzuki Hidefumi, Machida Shinichi, Takahashi Hidehisa, Miyake Noriko

机构信息

Department of Human Genetics, Research Institute, National Center for Global Health and Medicine, Tokyo, 162-8655, Japan.

Department of Pediatrics, Immunology and Rheumatology Section, Hospital de Puerto Montt, Puerto Montt, Chile.

出版信息

J Clin Immunol. 2024 Dec 14;45(1):55. doi: 10.1007/s10875-024-01847-x.

Abstract

Anterior gradient 2 (AGR2) is a protein disulfide isomerase that is important for protein processing in the endoplasmic reticulum and is essential for mucin production in the digestive and respiratory tracts. Bi-allelic AGR2 variants were recently found to cause recurrent respiratory infections and failure to thrive with or without diarrhea (RIFTD; MIM # 620233), although the mechanisms behind this condition remain unclear. To date, at least 15 patients with homozygous AGR2 variants have been reported. Here, we report two affected siblings in a consanguineous family who had recurrent respiratory infections and digestive symptoms, one of whom needed lung transplantation. To identify the genetic cause of their symptoms, we performed exome sequencing and identified a novel homozygous missense variant in AGR2 (NM_006408.4, c.250A>C, p.(Ser84Arg)) in both affected siblings. Both parents had the identical variant in a heterozygous state. This variant is quite rare in the general population and is clinically compatible with RIFTD, substituting a highly conserved CXXS motif with CXXR. We performed structural modeling and functional studies to investigate the effect of this variant. Through transient overexpression, Ser84Arg AGR2 decreased protein stability, and promoted aberrant dimerization under non-reducing conditions. AGR2 functions in a monomer-dimer equilibrium. Size-exclusion chromatography showed that the Ser84Arg mutant had a larger molecular size than the wild-type protein under non-reducing, but not reducing conditions, indicating that Ser84Arg enhanced intermolecular disulfide bonds. In conclusion, we identified a novel pathogenic AGR2 variant and indicated its abnormal monomer-dimer equilibrium as a possible mechanism involved in the pathogenesis of RIFTD.

摘要

前梯度2(AGR2)是一种蛋白质二硫键异构酶,对内质网中的蛋白质加工很重要,对消化道和呼吸道中粘蛋白的产生必不可少。最近发现双等位基因AGR2变异会导致反复呼吸道感染以及无论有无腹泻均出现生长发育不良(RIFTD;MIM # 620233),尽管这种情况背后的机制尚不清楚。迄今为止,至少已报道了15例纯合AGR2变异患者。在此,我们报告了一个近亲家庭中的两名患病兄弟姐妹,他们有反复呼吸道感染和消化症状,其中一人需要进行肺移植。为了确定其症状的遗传原因,我们进行了外显子组测序,并在两名患病兄弟姐妹中均发现了AGR2基因的一个新的纯合错义变异(NM_006408.4,c.250A>C,p.(Ser84Arg))。父母双方均为该变异的杂合状态。该变异在普通人群中非常罕见,临床上与RIFTD相符,用CXXR取代了高度保守的CXXS基序。我们进行了结构建模和功能研究以探究该变异的影响。通过瞬时过表达,Ser84Arg AGR2降低了蛋白质稳定性,并在非还原条件下促进了异常二聚化。AGR2在单体 - 二聚体平衡中发挥作用。尺寸排阻色谱显示,在非还原而非还原条件下,Ser84Arg突变体的分子大小比野生型蛋白更大,表明Ser84Arg增强了分子间二硫键。总之,我们鉴定出一种新的致病性AGR2变异,并指出其异常的单体 - 二聚体平衡是RIFTD发病机制中可能涉及的一种机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/87fb/11646215/7d24f2edca97/10875_2024_1847_Fig1_HTML.jpg

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