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由一个功能减弱等位基因阐明的 FBXO7 表型特征敏感性。

FBXO7 sensitivity of phenotypic traits elucidated by a hypomorphic allele.

机构信息

Wellcome Sanger Institute, Wellcome Genome Campus, Hinxton, Cambridgeshire, United Kingdom.

University of Edinburgh Division of Pathology, Centre for Comparative Pathology, Cancer Research UK Edinburgh Centre, Institute of Genetics & Molecular Medicine, Western General Hospital, Edinburgh, United Kingdom.

出版信息

PLoS One. 2019 Mar 6;14(3):e0212481. doi: 10.1371/journal.pone.0212481. eCollection 2019.

Abstract

FBXO7 encodes an F box containing protein that interacts with multiple partners to facilitate numerous cellular processes and has a canonical role as part of an SCF E3 ubiquitin ligase complex. Mutation of FBXO7 is responsible for an early onset Parkinsonian pyramidal syndrome and genome-wide association studies have linked variants in FBXO7 to erythroid traits. A putative orthologue in Drosophila, nutcracker, has been shown to regulate the proteasome, and deficiency of nutcracker results in male infertility. Therefore, we reasoned that modulating Fbxo7 levels in a murine model could provide insights into the role of this protein in mammals. We used a targeted gene trap model which retained 4-16% residual gene expression and assessed the sensitivity of phenotypic traits to gene dosage. Fbxo7 hypomorphs showed regenerative anaemia associated with a shorter erythrocyte half-life, and male mice were infertile. Alterations to T cell phenotypes were also observed, which intriguingly were both T cell intrinsic and extrinsic. Hypomorphic mice were also sensitive to infection with Salmonella, succumbing to a normally sublethal challenge. Despite these phenotypes, Fbxo7 hypomorphs were produced at a normal Mendelian ratio with a normal lifespan and no evidence of neurological symptoms. These data suggest that erythrocyte survival, T cell development and spermatogenesis are particularly sensitive to Fbxo7 gene dosage.

摘要

FBXO7 编码一种含有 F 盒的蛋白质,与多个合作伙伴相互作用,促进许多细胞过程,并且作为 SCF E3 泛素连接酶复合物的一部分具有典型作用。FBXO7 的突变负责早发性帕金森氏锥体综合征,全基因组关联研究将 FBXO7 中的变体与红细胞特征联系起来。果蝇中的假定同源物 nutcracker 已被证明可以调节蛋白酶体,nutcracker 的缺乏导致男性不育。因此,我们推断在小鼠模型中调节 Fbxo7 水平可以深入了解该蛋白在哺乳动物中的作用。我们使用了一种靶向基因陷阱模型,该模型保留了 4-16%的残留基因表达,并评估了表型特征对基因剂量的敏感性。Fbxo7 功能低下型表现出与红细胞半衰期缩短相关的再生性贫血,并且雄性小鼠不育。还观察到 T 细胞表型的改变,这些改变既存在于 T 细胞内在,也存在于 T 细胞外在。低功能型小鼠对沙门氏菌感染也很敏感,无法承受通常的亚致死性挑战。尽管存在这些表型,但 Fbxo7 功能低下型仍以正常孟德尔比率产生,寿命正常,没有神经症状的证据。这些数据表明,红细胞存活、T 细胞发育和精子发生对 Fbxo7 基因剂量特别敏感。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e25d/6402633/3fe27dcd17c3/pone.0212481.g001.jpg

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