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Expanding the repertoire of the eukaryotic selenoproteome

机译:扩大真核硒蛋白组库

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摘要

Selenium, an essential trace element known primarily for its antioxidant properties, exerts a diversity of functions through its presence in selenoproteins, proteins in which selenium is incorporated into the nascent polypeptide cotranslation-ally by means of the amino acid sel-enocysteine (Sec). Although the function of many selenoprotein families is unknown, the importance of selenoprotein synthesis has been clearly demonstrated in animals, in which mutations that render the cell unable to incorporate selenium into proteins result in embryonic lethality (1). With few exceptions, characterized selenoprotein families are known to function enzymatically and are typically involved in redox reactions. In these selenoprotein families, the Sec residue is found in the active site of the enzyme. Because nearly all eukaryotic selenoproteins are represented within mammalian genomes, mammals have been thought to recapitulate the eukaryotic selenoproteome, the set of all selenoproteins. However, by using bioinfor-matic approaches, Castellano et al. (2) have identified and characterized a fish selenoprotein family, SelJ, that challenges these paradigms. Their findings, published in this issue of PNAS, reinforce the seemingly universal importance of selenium by showing the vast and diverse phylogenetic distributions of selenoproteins across taxa.
机译:硒是一种主要因其抗氧化特性而闻名的必需微量元素,它通过存在于硒蛋白中而发挥多种功能,硒蛋白是通过氨基酸sel-enocysteine(Sec)共同翻译成硒的新生多肽。尽管许多硒蛋白家族的功能尚不清楚,但动物中硒蛋白合成的重要性已得到明确证明,其中使细胞无法将硒掺入蛋白质的突变会导致胚胎致死(1)。除少数例外,已知特征化的硒蛋白家族具有酶促功能,通常参与氧化还原反应。在这些硒蛋白家族中,Sec残基位于酶的活性位点。因为几乎所有的真核硒蛋白都存在于哺乳动物基因组中,所以哺乳动物被认为可以概括真核硒蛋白组,即所有硒蛋白的集合。但是,通过使用生物信息学方法,Castellano等人。 (2)已经鉴定并鉴定了挑战这些范例的鱼类硒蛋白家族SelJ。他们的发现发表在《 PNAS》上,通过显示整个分类群中硒蛋白的广泛多样的系统发育分布,增强了硒的普遍意义。

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