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蛋白质羟化酶活性受损导致人类复制应激和发育异常。

Impaired protein hydroxylase activity causes replication stress and developmental abnormalities in humans.

机构信息

Institute of Cancer and Genomic Sciences, University of Birmingham, Birmingham, United Kingdom.

Department of Clinical Genetics, Genetics and Personalized Medicine Clinic, Tartu University Hospital, Tartu, Estonia.

出版信息

J Clin Invest. 2023 Apr 3;133(7):e152784. doi: 10.1172/JCI152784.

Abstract

Although protein hydroxylation is a relatively poorly characterized posttranslational modification, it has received significant recent attention following seminal work uncovering its role in oxygen sensing and hypoxia biology. Although the fundamental importance of protein hydroxylases in biology is becoming clear, the biochemical targets and cellular functions often remain enigmatic. JMJD5 is a "JmjC-only" protein hydroxylase that is essential for murine embryonic development and viability. However, no germline variants in JmjC-only hydroxylases, including JMJD5, have yet been described that are associated with any human pathology. Here we demonstrate that biallelic germline JMJD5 pathogenic variants are deleterious to JMJD5 mRNA splicing, protein stability, and hydroxylase activity, resulting in a human developmental disorder characterized by severe failure to thrive, intellectual disability, and facial dysmorphism. We show that the underlying cellular phenotype is associated with increased DNA replication stress and that this is critically dependent on the protein hydroxylase activity of JMJD5. This work contributes to our growing understanding of the role and importance of protein hydroxylases in human development and disease.

摘要

尽管蛋白质羟化作用是一种相对特征不明显的翻译后修饰,但在揭示其在氧感应和低氧生物学中的作用的开创性工作之后,它受到了极大的关注。尽管蛋白质羟化酶在生物学中的基本重要性变得越来越明显,但生化靶标和细胞功能往往仍然神秘莫测。JMJD5 是一种“仅 JmjC”的蛋白质羟化酶,对于鼠类胚胎发育和存活是必不可少的。然而,尚未描述任何与任何人类病理学相关的种系突变体,包括 JMJD5。在这里,我们证明双等位基因种系 JMJD5 致病性变体对 JMJD5 mRNA 剪接、蛋白质稳定性和羟化酶活性有害,导致一种以严重生长不良、智力残疾和面部畸形为特征的人类发育障碍。我们表明,潜在的细胞表型与增加的 DNA 复制应激有关,这严重依赖于 JMJD5 的蛋白质羟化酶活性。这项工作有助于我们越来越了解蛋白质羟化酶在人类发育和疾病中的作用和重要性。

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