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Selective Inhibition of Selenocysteine tRNA Maturation and Selenoprotein Synthesis in Transgenic Mice Expressing Isopentenyladenosine-Deficient Selenocysteine tRNA

机译:选择性抑制硒代半胱氨酸tRNA成熟和硒蛋白合成表达异戊烯丙基腺苷缺陷型硒代半胱氨酸tRNA的转基因小鼠。

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Selenocysteine (Sec) tRNA (tRNA[Ser]Sec) serves as both the site of Sec biosynthesis and the adapter molecule for donation of this amino acid to protein. The consequences on selenoprotein biosynthesis of overexpressing either the wild type or a mutant tRNA[Ser]Sec lacking the modified base, isopentenyladenosine, in its anticodon loop were examined by introducing multiple copies of the corresponding tRNA[Ser]Sec genes into the mouse genome. Overexpression of wild-type tRNA[Ser]Sec did not affect selenoprotein synthesis. In contrast, the levels of numerous selenoproteins decreased in mice expressing isopentenyladenosine-deficient (i6A?) tRNA[Ser]Sec in a protein- and tissue-specific manner. Cytosolic glutathione peroxidase and mitochondrial thioredoxin reductase 3 were the most and least affected selenoproteins, while selenoprotein expression was most and least affected in the liver and testes, respectively. The defect in selenoprotein expression occurred at translation, since selenoprotein mRNA levels were largely unaffected. Analysis of the tRNA[Ser]Sec population showed that expression of i6A? tRNA[Ser]Sec altered the distribution of the two major isoforms, whereby the maturation of tRNA[Ser]Sec by methylation of the nucleoside in the wobble position was repressed. The data suggest that the levels of i6A? tRNA[Ser]Sec and wild-type tRNA[Ser]Sec are regulated independently and that the amount of wild-type tRNA[Ser]Sec is determined, at least in part, by a feedback mechanism governed by the level of the tRNA[Ser]Sec population. This study marks the first example of transgenic mice engineered to contain functional tRNA transgenes and suggests that i6A?tRNA[Ser]Sec transgenic mice will be useful in assessing the biological roles of selenoproteins.
机译:硒代半胱氨酸(Sec)tRNA(tRNA [Ser] Sec )既是Sec生物合成的位点,又是将该氨基酸提供给蛋白质的衔接子分子。通过引入相应的tRNA 的多个拷贝,研究了在其反密码子环中过表达野生型或缺少修饰碱基异戊烯基腺苷的突变tRNA [Ser] Sec 对硒蛋白生物合成的影响。 [Ser] Sec 基因进入小鼠基因组。野生型tRNA [Ser] Sec 的过表达并不影响硒蛋白的合成。相反,在蛋白质中表达异戊烯基腺苷缺陷(i 6 A ?)tRNA [Ser] Sec 的小鼠中,许多硒蛋白水平降低-和组织特定的方式。胞浆型谷胱甘肽过氧化物酶和线粒体硫氧还蛋白还原酶3是受影响最弱的硒蛋白,而硒蛋白的表达在肝脏和睾丸中受影响最大和最少。硒蛋白表达的缺陷发生在翻译时,因为硒蛋白mRNA的水平在很大程度上不受影响。对tRNA [Ser] Sec 群体的分析表明,i 6 A ? tRNA [Ser] Sec 的表达改变了两个主要同工型的分布,从而抑制了摆动位置核苷甲基化的tRNA [Ser] Sec 的成熟。数据表明i 6 A ? tRNA [Ser] Sec 和野生型tRNA [Ser] Sec < / sup>受到独立调节,并且野生型tRNA [Ser] Sec 的量至少部分由受tRNA [Ser]水平控制的反馈机制确定]秒人口。这项研究标志着第一个工程改造为包含功能性tRNA转基因的转基因小鼠,并暗示了i 6 A ? tRNA [Ser] Sec 转基因小鼠将有助于评估硒蛋白的生物学作用。

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