首页> 美国卫生研究院文献>The Journal of Biological Chemistry >A 4-Selenocysteine 2-Selenocysteine Insertion Sequence (SECIS) Element Methionine Sulfoxide Reductase from Metridium senile Reveals a Non-catalytic Function of Selenocysteines
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A 4-Selenocysteine 2-Selenocysteine Insertion Sequence (SECIS) Element Methionine Sulfoxide Reductase from Metridium senile Reveals a Non-catalytic Function of Selenocysteines

机译:4-硒代半胱氨酸2-硒代半胱氨酸插入序列(SECIS)元素蛋氨酸亚砜还原酶从老年Me揭示了半胱氨酸的非催化功能。

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摘要

Selenocysteine (Sec) residues occur in thiol oxidoreductase families, and functionally characterized selenoenzymes typically have a single Sec residue used directly for redox catalysis. However, how new Sec residues evolve and whether non-catalytic Sec residues exist in proteins is not known. Here, we computationally identified several genes with multiple Sec insertion sequence (SECIS) elements, one of which was a methionine-R-sulfoxide reductase (MsrB) homolog from Metridium senile that has four in-frame UGA codons and two nearly identical SECIS elements. One of the UGA codons corresponded to the conserved catalytic Sec or Cys in MsrBs, whereas the three other UGA codons evolved recently and had no homologs with Sec or Cys in these positions. Metabolic 75Se labeling showed that all four in-frame UGA codons supported Sec insertion and that both SECIS elements were functional and collaborated in Sec insertion at each UGA codon. Interestingly, recombinant M. senile MsrB bound iron, and further analyses suggested the possibility of binding an iron-sulfur cluster by the protein. These data show that Sec residues may appear transiently in genes containing SECIS elements and be adapted for non-catalytic functions.
机译:硒代半胱氨酸(Sec)残基出现在硫醇氧化还原酶家族中,功能上表征的硒酶通常具有单个Sec残基,可直接用于氧化还原催化。然而,尚不清楚新的Sec残基如何进化以及蛋白质中是否存在非催化的Sec残基。在这里,我们通过计算确定了多个具有多个Sec插入序列(SECIS)元素的基因,其中一个是来自Metridium senile的甲硫氨酸R-亚砜还原酶(MsrB)同源物,具有四个读框内UGA密码子和两个几乎相同的SECIS元素。 UGA密码子之一对应于MsrBs中保守的催化Sec或Cys,而其他三个UGA密码子最近进化且在这些位置与Sec或Cys没有同源性。代谢 75 Se标记显示,所有四个框内UGA密码子均支持Sec插入,并且两个SECIS元件均起作用,并且在每个UGA密码子上均参与了Sec插入。有趣的是,重组的老年支原体MsrB结合了铁,进一步的分析表明该蛋白可以结合铁-硫簇。这些数据表明,Sec残基可能会短暂出现在含有SECIS元素的基因中,并适合于非催化功能。

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