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鉴定小鼠18号染色体上与实验诱导性睾丸畸胎瘤1(ett1)相关的基因组位点。

Identification of genomic locus responsible for experimentally induced testicular teratoma 1 (ett1) on mouse Chr 18.

作者信息

Miyazaki Takehiro, Ikeda Yoshie, Kubo Ikue, Suganuma Saeri, Fujita Nastumi, Itakura Makiko, Hayashi Tae, Takabayashi Shuji, Katoh Hideki, Ohira Yukio, Sato Masahiro, Noguchi Motoko, Tokumoto Toshinobu

机构信息

Biological Science Course, Graduate School of Science, National University Corporation Shizuoka University, Ohya 836, Suruga-ku, Shizuoka, 422-8529, Japan.

出版信息

Mamm Genome. 2014 Aug;25(7-8):317-26. doi: 10.1007/s00335-014-9529-8. Epub 2014 Jul 5.

Abstract

Spontaneous testicular teratomas (STTs) composed by various kinds of tissues are derived from primordial germ cells (PGCs) in the fetal testes of the mouse. In contrast, intra-testicular grafts of the mouse strain (129/Sv-Ter (+/+)) fetal testes possessed the ability to develop the experimental testicular teratomas (ETTs), indistinguishable from the STTs at a morphological level. In this study, linkage analysis was performed for exploration of possible candidate genes involving in ETT development using F2 intercross fetuses derived from [LTXBJ × 129/Sv-Ter (+/+)] F1 hybrids. Linkage analysis with selected simple sequence length polymorphisms along chromosomes 18 and 19, which have been expected to contain ETT-susceptibility loci, demonstrated that a novel recessive candidate gene responsible for ETT development is located in 1.1 Mb region between the SSLP markers D18Mit81 and D18Mit184 on chromosome 18 in the 129/Sv-Ter (+/+) genetic background. Since this locus is different from the previously known loci (including Ter, pgct1, and Tgct1) for STT development, we named this novel gene "experimental testicular teratoma 1 (ett1)". To resolve the location of ett1 independently from other susceptibility loci, ett1 loci was introduced in a congenic strain in which the distal segment of chromosome 18 in LTXBJ strain mice had been replaced by a 1.99 Mbp genomic segment of the 129/Sv-Ter (+/+) mice. Congenic males homozygous for the ett1 loci were confirmed to have the ability to form ETTs, indicating that this locus contain the gene responsible for ETTs. We listed candidate genes included in this region, and discussed about their possible involvement in induction of ETTs.

摘要

由各种组织构成的自发性睾丸畸胎瘤(STTs)源自小鼠胎儿睾丸中的原始生殖细胞(PGCs)。相比之下,小鼠品系(129/Sv-Ter(+/+))胎儿睾丸的睾丸内移植具有形成实验性睾丸畸胎瘤(ETTs)的能力,在形态学水平上与STTs无法区分。在本研究中,使用源自[LTXBJ×129/Sv-Ter(+/+)]F1杂种的F2代杂交胎儿进行连锁分析,以探索可能参与ETT发育的候选基因。对18号和19号染色体上选定的简单序列长度多态性进行连锁分析,预计这两条染色体包含ETT易感位点,结果表明,在129/Sv-Ter(+/+)遗传背景下,一个负责ETT发育的新的隐性候选基因位于18号染色体上的SSLP标记D18Mit81和D18Mit184之间1.1 Mb的区域。由于该位点与先前已知的STT发育位点(包括Ter、pgct1和Tgct1)不同,我们将这个新基因命名为“实验性睾丸畸胎瘤1(ett1)”。为了独立于其他易感位点确定ett1的位置,将ett1位点导入一个近交系,其中LTXBJ品系小鼠18号染色体的远端片段被129/Sv-Ter(+/+)小鼠的1.99 Mbp基因组片段所取代。确认ett1位点纯合的近交系雄性具有形成ETTs的能力,表明该位点包含负责ETTs的基因。我们列出了该区域包含的候选基因,并讨论了它们可能参与ETTs诱导的情况。

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