Discovery, InsideOutBio, Inc 42 8th Street, Unit 3412, Charlestown, MA, 02129, USA.
Eur J Hum Genet. 2020 Jan;28(1):114-117. doi: 10.1038/s41431-019-0458-6. Epub 2019 Jul 18.
Variants in the human double-stranded RNA editing enzyme ADAR produce three well-characterized rare Mendelian Diseases: Dyschromatosis Symmetrica Hereditaria (OMIM: 127400), Aicardi-Goutières syndrome (OMIM: 615010) and Bilateral Striatal Necrosis/Dystonia. ADAR encodes p150 and p110 protein isoforms. p150 incorporates the Zα domain that binds left-handed Z-DNA and Z-RNA with high affinity through contact of highly conserved residues with the DNA and RNA double helix. In certain individuals, frameshift variants on one parental chromosome in the second exon of ADAR produce haploinsufficiency of p150 while maintaining normal expression of p110. In other individuals, loss of p150 expression from one chromosome allows mapping of Zα p150 variants from the other parental chromosome directly to phenotype. The analysis reveals that loss of function Zα variants cause dysregulation of innate interferon responses to double-stranded RNA. This approach confirms a biological role for the left-handed conformation in human disease, further validating the power of Mendelian genetics to deliver unambiguous answers to difficult questions. The findings reveal that the human genome encodes genetic information using both shape and sequence.
人类双链 RNA 编辑酶 ADAR 的变异导致了三种明确的罕见孟德尔疾病:对称性色素失调症(OMIM:127400)、Aicardi-Goutières 综合征(OMIM:615010)和双侧纹状体坏死/肌张力障碍。ADAR 编码 p150 和 p110 蛋白同工型。p150 包含 Zα 结构域,该结构域通过与 DNA 和 RNA 双螺旋高度保守残基的接触,以高亲和力结合左手 Z-DNA 和 Z-RNA。在某些个体中,ADAR 第二外显子上一条亲代染色体上的移码变异导致 p150 的杂合不足,同时保持 p110 的正常表达。在其他个体中,来自一条染色体的 p150 表达缺失允许将来自另一条亲代染色体的 Zα p150 变异直接映射到表型。该分析表明,功能丧失的 Zα 变异导致对双链 RNA 的先天干扰素反应失调。这种方法证实了左手构象在人类疾病中的生物学作用,进一步验证了孟德尔遗传学为解决难题提供明确答案的能力。这些发现表明,人类基因组使用形状和序列来编码遗传信息。