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Adaptation of the Romanomermis culicivorax CCA-Adding Enzyme to Miniaturized Armless tRNA Substrates

Int J Mol Sci. 2020-11; 
Oliver Hennig , Susanne Philipp, Sonja Bonin , Kévin Rollet , Tim Kolberg , Tina Jühling , Heike Betat , Claude Sauter , Mario Mörl
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Codon Optimization For the CCA-adding enzyme of Romanomermis culicivorax, the coding sequence was identified in the R. culicivorax genome assembly available at https://parasite.wormbase. org/Romanomermis_culicivorax_prjeb1358/Info/Index/, codon-optimized for expression in E. coli and synthesized in pET28a by GenScript®® (Piscataway, NJ, USA). Get A Quote

摘要

The mitochondrial genome of the nematode Romanomermis culicivorax encodes for miniaturized hairpin-like tRNA molecules that lack D- as well as T-arms, strongly deviating from the consensus cloverleaf. The single tRNA nucleotidyltransferase of this organism is fully active on armless tRNAs, while the human counterpart is not able to add a complete CCA-end. Transplanting single regions of the Romanomermis enzyme into the human counterpart, we identified a beta-turn element of the catalytic core that-when inserted into the human enzyme-confers full CCA-adding activity on armless tRNAs. This region, originally identified to position the 3'-end of the tRNA primer in the catalytic core, dramatically increases the enz... More

关键词

CCA-adding enzyme; co-evolution; evolutionary plasticity; minimalized armless tRNAs; tRNA nucleotidyltransferase.