Department of Biochemistry, School of Biomedical Sciences, University of Otago, Dunedin, New Zealand.
Department of Pediatrics, Boston Children's Hospital Harvard Medical School Boston, Boston, Massachusetts, USA.
Clin Genet. 2024 Mar;105(3):254-261. doi: 10.1111/cge.14457. Epub 2023 Nov 20.
A key signalling pathway required for clearance of viruses from host cells relies on the receptor protein, retinoic acid-inducible gene I (RIG-I). The activity of RIG-I is tightly controlled, and once bound to viral dsRNA, addition of lysine 63-linked ubiquitin chains activates signalling. Meanwhile, the addition of lysine 48-linked ubiquitin chains to RIG-I is required to terminate signalling when the infection has been resolved. Really interesting new gene (RING) finger protein 125 (RNF125) is the E3 ligase responsible for addition of the ubiquitin chains that terminate signalling, with disruption of its function associated with Tenorio syndrome. Here we describe a novel RNF125 gene variant in an individual with clinical symptoms including intellectual disability, macrocephaly and congenital heart disease, consistent with Tenorio syndrome. The newly identified Tenorio syndrome-associated variant [(NM_017831.4):c.670G>C p.Glu224Gln] is the first to be found in the ubiquitin interaction motif (UIM) of RNF125. While the E3 ligase activity of this RNF125 variant is retained, it has an impaired ability to interact with lysine 63-linked ubiquitin chains. The function of the UIM in RNF125 is uncertain; however, this study suggests that the UIM binds lysine 63-linked ubiquitin chains, and that this interaction is required for the normal function of RNF125.
一种从宿主细胞中清除病毒所必需的关键信号通路依赖于受体蛋白,视黄酸诱导基因 I(RIG-I)。RIG-I 的活性受到严格控制,一旦与病毒 dsRNA 结合,赖氨酸 63 连接的泛素链的添加就会激活信号转导。与此同时,当感染得到解决时,需要将赖氨酸 48 连接的泛素链添加到 RIG-I 上以终止信号转导。真正有趣的新基因(RING)指蛋白 125(RNF125)是负责添加终止信号转导的泛素链的 E3 连接酶,其功能的破坏与特诺里奥综合征有关。在这里,我们描述了一名个体中存在一种新的 RNF125 基因突变,该个体具有临床症状,包括智力残疾、大头畸形和先天性心脏病,与特诺里奥综合征一致。新发现的特诺里奥综合征相关变异 [(NM_017831.4):c.670G>C p.Glu224Gln] 是第一个在 RNF125 的泛素相互作用基序(UIM)中发现的变异。虽然这种 RNF125 变异体的 E3 连接酶活性得以保留,但它与赖氨酸 63 连接的泛素链的相互作用能力受损。UIM 在 RNF125 中的功能尚不清楚;然而,本研究表明,UIM 结合赖氨酸 63 连接的泛素链,并且这种相互作用是 RNF125 正常功能所必需的。