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A digenic human immunodeficiency characterized by IFNAR1 and IFNGR2 mutations

机译:一种以IFNAR1和IFNGR2突变为特征的双基因人免疫缺陷

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Primary immunodeficiencies are often monogenic disorders characterized by vulnerability to specific infectious pathogens. Here, we performed whole-exome sequencing of a patient with disseminated Mycobacterium abscessus, Streptococcus viridians bacteremia, and cytomegalovirus (CMV) viremia and identified mutations in 2 genes that regulate distinct IFN pathways. The patient had a homozygous frameshift deletion in IFNGR2, which encodes the signal transducing chain of the IFN-γ receptor, that resulted in minimal protein expression and abolished downstream signaling. The patient also harbored a homozygous deletion in IFNAR1 (IFNAR1*557Gluext*46), which encodes the IFN-α receptor signaling subunit. The IFNAR1*557Gluext*46 resulted in replacement of the stop codon with 46 additional codons at the C-terminus. The level of IFNAR1*557Gluext*46 mutant protein expressed in patient fibroblasts was comparable to levels of WT IFNAR1 in control fibroblasts. IFN-α–induced signaling was impaired in the patient fibroblasts, as evidenced by decreased STAT1/STAT2 phosphorylation, nuclear translocation of STAT1, and expression of IFN-α–stimulated genes critical for CMV immunity. Pretreatment with IFN-α failed to suppress CMV protein expression in patient fibroblasts, whereas expression of WT IFNAR1 restored IFN-α–mediated suppression of CMV. This study identifies a human IFNAR1 mutation and describes a digenic immunodeficiency specific to type I and type II IFNs.
机译:原发性免疫缺陷通常是单基因疾病,其特征是对特定感染性病原体的脆弱性。在这里,我们对弥漫性脓肿分枝杆菌,绿色链球菌菌血症和巨细胞病毒(CMV)病毒血症的患者进行了全外显子测序,并鉴定了两个调节不同IFN途径的基因中的突变。该患者在IFNGR2中有一个纯合的移码缺失,它编码IFN-γ受体的信号转导链,从而导致最小的蛋白质表达并消除了下游信号传导。该患者还携带了编码IFN-α受体信号亚基的IFNAR1(IFNAR1 * 557Gluext * 46)纯合缺失。 IFNAR1 * 557Gluext * 46导致终止密码子在C端被46个额外的密码子取代。患者成纤维细胞中表达的IFNAR1 * 557Gluext * 46突变蛋白的水平与对照成纤维细胞中WT IFNAR1的水平相当。 STAT1 / STAT2磷酸化降低,STAT1的核易位以及对CMV免疫至关重要的IFN-α刺激基因的表达证明,患者成纤维细胞中IFN-α诱导的信号转导受损。 IFN-α预处理无法抑制患者成纤维细胞中CMV蛋白的表达,而WT IFNAR1的表达恢复了IFN-α介导的CMV抑制。这项研究鉴定了人IFNAR1突变,并描述了I型和II型IFN特有的双基因免疫缺陷。

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