首页> 外文期刊>The Biochemical Journal >Nucleic-acid-binding properties of the C2-L1Tc nucleic acid chaperone encoded by L1Tc retrotransposon.
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Nucleic-acid-binding properties of the C2-L1Tc nucleic acid chaperone encoded by L1Tc retrotransposon.

机译:L1Tc反转录转座子编码的C2-L1Tc核酸分子伴侣的核酸结合特性。

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It has been reported previously that the C2-L1Tc protein located in the Trypanosoma cruzi LINE (long interspersed nuclear element) L1Tc 3' terminal end has NAC (nucleic acid chaperone) activity, an essential activity for retrotransposition of LINE-1. The C2-L1Tc protein contains two cysteine motifs of a C2H2 type, similar to those present in TFIIIA (transcription factor IIIA). The cysteine motifs are flanked by positively charged amino acid regions. The results of the present study show that the C2-L1Tc recombinant protein has at least a 16-fold higher affinity for single-stranded than for double-stranded nucleic acids, and that it exhibits a clear preference for RNA binding over DNA. The C2-L1Tc binding profile (to RNA and DNA) corresponds to a non-co-operative-binding model. The zinc fingers present in C2-L1Tc have a different binding affinity to nucleic acid molecules and also different NAC activity. The RRR and RRRKEK [NLS (nuclear localization sequence)] sequences, as well as the C2H2 zinc finger located immediately downstream of these basic stretches are the main motifs responsible for the strong affinity of C2-L1Tc to RNA. These domains also contribute to bind single- and double-stranded DNA and have a duplex-stabilizing effect. However, the peptide containing the zinc finger situated towards the C-terminal end of C2-L1Tc protein has a slight destabilization effect on a mismatched DNA duplex and shows a strong preference for single-stranded nucleic acids, such as C2-L1Tc. These results provide further insight into the essential properties of the C2-L1Tc protein as a NAC.
机译:以前有报道说,位于克鲁斯锥虫(LINES)线(长散布的核元素)L1Tc 3'末端的C2-L1Tc蛋白具有NAC(核酸伴侣)活性,这是CNP逆转座所必需的活性。 LINE-1。 C2-L1Tc蛋白包含两个C2H2型半胱氨酸基序,类似于TFIIIA(转录因子IIIA)中存在的那些。半胱氨酸基序的侧面是带正电荷的氨基酸区域。本研究的结果表明,C2-L1Tc重组蛋白对单链的亲和力比对双链核酸的亲和力至少高16倍,并且相对于DNA,它对RNA的结合表现出明显的偏爱。 C2-L1Tc结合谱(与RNA和DNA结合)对应于非合作结合模型。 C2-L1Tc中存在的锌指对核酸分子的结合亲和力和NAC活性也不同。 $ RRR和RRRKEK [NLS(核定位序列)]序列以及紧接在这些基本序列下游的C2H2锌指是负责C2-L1Tc对RNA的强亲和力的主要基序。这些结构域还有助于结合单链和双链DNA,并具有双链稳定作用。但是,含有位于C2-L1Tc蛋白C末端的锌指的肽对错配的DNA双链体具有轻微的去稳定作用,并且显示出对单链核酸(例如C2-L1Tc)的强烈偏好。这些结果为C2-L1Tc蛋白作为NAC的基本特性提供了进一步的见解。

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