García-Pérez J L, González C I, Thomas M C, Olivares M, López M C
Departamento de Biología Molecular, Instituto de Parasitología y Biomedicina López Neyra, Calle Ventanilla, 11, 18001 Granada, Spain.
Cell Mol Life Sci. 2003 Dec;60(12):2692-701. doi: 10.1007/s00018-003-3342-y.
The recombinant protein RTL1Tc, encoded by the non-LTR (long terminal repeat) retrotransposon L1Tc from Trypanosoma cruzi, has been shown to have reverse transcriptase (RT) activity using poly(rA)/oligo(dT) and poly(rC)/oligo(dG) homopolymers as template/primers. The optimal RT activity was detected at a concentration of 5 mM Mg2+, pH 8 and between 28 and 37% degrees C. Site-directed mutagenesis in the RT catalytic site proved that substitution of aspartic acid 313 for isoleucine (RT D313IL1Tc) practically abolishes the RT activity of the RTL1Tc protein. RT-polymerase chain reaction assays revealed that the RTL1Tc protein has the ability to use both homologous and heterologous RNA templates. Also, it is shown that the RTL1Tc protein is capable of synthesizing complementary DNA molecules by consecutive switching of the oligo molecule, which the protein uses as a template. This template switching may be involved in the retroelement integration process.
克氏锥虫非LTR(长末端重复序列)逆转座子L1Tc编码的重组蛋白RTL1Tc,已证明以聚(rA)/寡聚(dT)和聚(rC)/寡聚(dG)同聚物作为模板/引物时具有逆转录酶(RT)活性。在5 mM Mg2+浓度、pH 8以及28至37摄氏度之间检测到最佳RT活性。RT催化位点的定点诱变证明,将天冬氨酸313替换为异亮氨酸(RT D313IL1Tc)实际上消除了RTL1Tc蛋白的RT活性。RT聚合酶链反应分析表明,RTL1Tc蛋白能够使用同源和异源RNA模板。此外,研究表明RTL1Tc蛋白能够通过连续切换其用作模板的寡聚分子来合成互补DNA分子。这种模板切换可能参与逆转元件整合过程。