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发育迟缓伴萎缩与纯合功能相关 REV3L 变异相关。

Developmental delay with hypotrophy associated with homozygous functionally relevant REV3L variant.

机构信息

Institute of Biochemistry and Biophysics, Polish Academy of Sciences, 02-106, Warsaw, Poland.

Department of Medical Genetics, Jagiellonian University Medical College, 30-663, Krakow, Poland.

出版信息

J Mol Med (Berl). 2021 Mar;99(3):415-423. doi: 10.1007/s00109-020-02033-3. Epub 2021 Jan 20.

DOI:10.1007/s00109-020-02033-3
PMID:33474647
Abstract

REV3L encodes a catalytic subunit of DNA polymerase zeta (Pol zeta) which is essential for the tolerance of DNA damage by inducing translesion synthesis (TLS). So far, the only Mendelian disease associated with REV3L was Moebius syndrome (3 patients with dominant REV3L mutations causing monoallelic loss-of-function were reported). We describe a homozygous ultra-rare REV3L variant (T2753R) identified with whole exome sequencing in a child without Moebius syndrome but with developmental delay, hypotrophy, and dysmorphic features who was born to healthy parents (heterozygous carriers of the variant). The variant affects the amino acid adjacent to functionally important KKRY motif. By introducing an equivalent mutation (S1192R) into the REV3 gene in yeasts, we showed that, whereas it retained residual function, it caused clear dysfunction of TLS in the nucleus and instability of mitochondrial genetic information. In particular, the mutation increased UV sensitivity measured by cell survival, decreased both the spontaneous (P < 0.005) and UV-induced (P < 0.0001) mutagenesis rates of nuclear DNA and increased the UV-induced mutagenesis rates of mitochondrial DNA (P < 0.0005). We propose that our proband is the first reported case of a REV3L associated disease different from Moebius syndrome both in terms of clinical manifestations and inheritance (autosomal recessive rather than dominant). KEY MESSAGES: First description of a human recessive disorder associated with a REV3L variant. A study in yeast showed that the variant affected the enzymatic function of the protein. In particular, it caused increased UV sensitivity and abnormal mutagenesis rates.

摘要

REV3L 编码 DNA 聚合酶 zeta(Pol zeta)的催化亚基,该酶对于诱导跨损伤合成(TLS)来耐受 DNA 损伤至关重要。到目前为止,唯一与 REV3L 相关的孟德尔疾病是 Moebius 综合征(报道了 3 例具有显性 REV3L 突变导致单等位基因功能丧失的患者)。我们描述了一例由全外显子组测序鉴定的纯合超罕见 REV3L 变体(T2753R),该患儿无 Moebius 综合征,但存在发育迟缓、消瘦和畸形特征,其父母健康(为该变体的杂合携带者)。该变体影响到功能重要的 KKRY 基序附近的氨基酸。通过在酵母中引入等效突变(S1192R)到 REV3 基因中,我们表明尽管它保留了残余功能,但它导致核内 TLS 明显功能障碍和线粒体遗传信息不稳定。特别是,该突变增加了细胞存活率测量的 UV 敏感性,降低了核 DNA 的自发突变率(P < 0.005)和 UV 诱导突变率(P < 0.0001),并增加了线粒体 DNA 的 UV 诱导突变率(P < 0.0005)。我们提出,我们的先证者是首例报道的临床表现和遗传方式(常染色体隐性而非显性)均不同于 Moebius 综合征的 REV3L 相关疾病。

关键信息:首次描述与 REV3L 变体相关的人类隐性疾病。酵母研究表明该变体影响蛋白的酶学功能。特别是,它导致 UV 敏感性增加和异常突变率。

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Nucleic Acids Res. 2020 Apr 17;48(7):3619-3637. doi: 10.1093/nar/gkaa096.
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Nucleic Acids Res. 2019 Sep 19;47(16):8348-8361. doi: 10.1093/nar/gkz705.
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Novel diagnostic tool for prediction of variant spliceogenicity derived from a set of 395 combined in silico/in vitro studies: an international collaborative effort.
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Crystal structures of ternary complexes of archaeal B-family DNA polymerases.古菌 B 族 DNA 聚合酶三元复合物的晶体结构
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