College of Pharmaceutical Sciences, Zhejiang University, Hangzhou 310058, Zhejiang, China.
The Drug Research Center of Immunological Diseases, Shanghai Institute of Materia Medica, Chinese Academy of Sciences, Shanghai 201203, China.
Nucleic Acids Res. 2022 Jun 10;50(10):5850-5863. doi: 10.1093/nar/gkac361.
DDX58 encodes RIG-I, a cytosolic RNA sensor that ensures immune surveillance of nonself RNAs. Individuals with RIG-IE510V and RIG-IQ517H mutations have increased susceptibility to Singleton-Merten syndrome (SMS) defects, resulting in tissue-specific (mild) and classic (severe) phenotypes. The coupling between RNA recognition and conformational changes is central to RIG-I RNA proofreading, but the molecular determinants leading to dissociated disease phenotypes remain unknown. Herein, we employed hydrogen/deuterium exchange mass spectrometry (HDX-MS) and single molecule magnetic tweezers (MT) to precisely examine how subtle conformational changes in the helicase insertion domain (HEL2i) promote impaired ATPase and erroneous RNA proofreading activities. We showed that the mutations cause a loosened latch-gate engagement in apo RIG-I, which in turn gradually dampens its self RNA (Cap2 moiety:m7G cap and N1-2-2'-O-methylation RNA) proofreading ability, leading to increased immunopathy. These results reveal HEL2i as a unique checkpoint directing two specialized functions, i.e. stabilizing the CARD2-HEL2i interface and gating the helicase from incoming self RNAs; thus, these findings add new insights into the role of HEL2i in the control of antiviral innate immunity and autoimmunity diseases.
DDX58 编码 RIG-I,一种细胞质 RNA 传感器,可确保对非自身 RNA 的免疫监测。具有 RIG-IE510V 和 RIG-IQ517H 突变的个体易患Singleton-Merten 综合征 (SMS) 缺陷,导致组织特异性(轻度)和经典(重度)表型。RNA 识别与构象变化的偶联是 RIG-I RNA 校对的核心,但导致分离疾病表型的分子决定因素仍不清楚。在此,我们采用氢/氘交换质谱(HDX-MS)和单分子磁镊(MT)精确检查螺旋酶插入结构域(HEL2i)中的细微构象变化如何促进 ATP 酶活性受损和错误的 RNA 校对活性。我们表明,突变导致 apo RIG-I 中的闩锁门松弛结合,这反过来又逐渐削弱其自身 RNA(Cap2 部分:m7G 帽和 N1-2-2'-O-甲基化 RNA)的校对能力,导致免疫病理学增加。这些结果表明 HEL2i 作为一个独特的检查点,指导两种特殊功能,即稳定 CARD2-HEL2i 界面和阻止螺旋酶进入自身 RNA;因此,这些发现为 HEL2i 在控制抗病毒先天免疫和自身免疫疾病中的作用提供了新的见解。