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MC4R 突变小鼠会发展出卵巢畸胎瘤。

MC4R mutant mice develop ovarian teratomas.

机构信息

Integrated Bioscience Section, Graduate School of Science and Technology, National University Corporation Shizuoka University, Ohya 836, Suruga-ku, Shizuoka, 422-8529, Japan.

Department of Molecular Genetics, Graduate School of Medicine, Kyoto University, Yoshida Konoe, Sakyo, Kyoto, 606-8501, Japan.

出版信息

Sci Rep. 2021 Feb 10;11(1):3483. doi: 10.1038/s41598-021-83001-w.

Abstract

Teratomas in mice, composed of different tissue types, are derived from primordial germ cells (PGCs) in the foetal gonads. The strongest candidate gene in the testicular teratoma locus (Ter) responsible for testicular teratoma formation was identified as mutation in Dnd1, Dnd1R178*. However, the phenotype of mice with a mutated Dnd1 gene was germ cell loss. This suggests that other genes are involved in teratoma formation. Testicular teratomas can also be induced experimentally (experimentally testicular teratomas: ETTs) in 129/Sv mice by transplanting E12.5 foetal testes into adult testes. Previously, we mapped the ett1 locus, which is the locus responsible for ETT formation on chromosome 18. By exome sequence analysis of the 129 and LTXBJ (LT) strains, we identified a missense mutation in the melanocortin 4 receptor (MC4R) gene among 8 genes in the ett1 region. The missense mutation causes a substitution of glycine 25 by serine. Thus, this gene is a candidate for ETT formation. We established the LT-ett1 congenic strain, which introduced the locus responsible for ETT formation genetically into the genomes of a testicular teratoma non-susceptible strain. In this study, we crossed LT-ett1 and a previously established LT-Ter strain to establish the double congenic strain LT-Ter-ett1. Also, we established a strain with a point mutation in the MC4R gene of the LT strain by genome editing, LT-MC4R. Furthermore, double genetically modified strain LT-Ter-MC4R was established to address the relation between Ter and MC4R. Surprisingly, highly developed ovarian teratomas (OTs), instead of testicular teratomas, appeared not only in the LT-Ter-MC4R and LT-MC4R strains but also in the LT-ett1 and LT-Ter-ett1 strains. The incidence of OT formation was high in double genetically modified strains. The results demonstrated that MC4R is one of the genes responsible for OT formation. It was suggested that the effect of the missense mutation in MC4R on teratoma formation was promoted by abnormal germ cell formation by the mutation in DND1.

摘要

小鼠的畸胎瘤由原始生殖细胞(PGC)在胎儿性腺中衍生而来。在睾丸畸胎瘤(Ter)的最强候选基因在睾丸畸胎瘤形成中被鉴定为突变的 Dnd1,Dnd1R178*。然而,突变 Dnd1 基因的小鼠表型是生殖细胞丢失。这表明其他基因也参与了畸胎瘤的形成。在 129/Sv 小鼠中,通过将 E12.5 胎儿睾丸移植到成年睾丸中,也可以实验性地诱导睾丸畸胎瘤(实验性睾丸畸胎瘤:ETTs)。以前,我们定位了 ett1 基因座,该基因座负责染色体 18 上的 ETT 形成。通过对 129 和 LTXBJ(LT)株的外显子组序列分析,我们在 ett1 区域的 8 个基因中发现了黑素皮质素 4 受体(MC4R)基因的错义突变。错义突变导致甘氨酸 25 被丝氨酸取代。因此,该基因是 ETT 形成的候选基因。我们建立了 LT-ett1 近交系,该近交系将 ETT 形成的基因座遗传引入到睾丸畸胎瘤非易感株的基因组中。在这项研究中,我们将 LT-ett1 和先前建立的 LT-Ter 株杂交,建立了 LT-Ter-ett1 双近交系。此外,我们通过基因组编辑建立了 LT 株中 MC4R 基因的点突变株 LT-MC4R。此外,建立了 LT-Ter-MC4R 双基因修饰株来解决 Ter 和 MC4R 之间的关系。令人惊讶的是,不仅在 LT-Ter-MC4R 和 LT-MC4R 株中,而且在 LT-ett1 和 LT-Ter-ett1 株中,也出现了高度发达的卵巢畸胎瘤(OTs),而不是睾丸畸胎瘤。OT 形成的发生率在双基因修饰株中很高。结果表明,MC4R 是 OT 形成的基因之一。这表明 DND1 突变引起的生殖细胞异常形成促进了 MC4R 错义突变对畸胎瘤形成的影响。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/729e/7876032/091e7164ea93/41598_2021_83001_Fig1_HTML.jpg

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