The determination of tRNALeu recognition nucleotides for Escherichia coli L/F transferase

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Abstract

Escherichia coli leucyl/phenylalanyl-tRNA protein transferase catalyzes the tRNA-dependent post-translational addition of amino acids onto the N-terminus of a protein polypeptide substrate. Based on biochemical and structural studies, the current tRNA recognition model by L/F transferase involves the identity of the 3′ aminoacyl adenosine and the sequence-independent docking of the D-stem of an aminoacyl-tRNA to the positively charged cluster on L/F transferase. However, this model does not explain the isoacceptor preference observed 40 yr ago. Using in vitro-transcribed tRNA and quantitative MALDI-ToF MS enzyme activity assays, we have confirmed that, indeed, there is a strong preference for the most abundant leucyl-tRNA, tRNALeu (anticodon 5′-CAG-3′) isoacceptor for L/F transferase activity. We further investigate the molecular mechanism for this preference using hybrid tRNA constructs. We identified two independent sequence elements in the acceptor stem of tRNALeu (CAG) - a G3:C70 base pair and a set of 4 nt (C72, A4:U69, C68) - that are important for the optimal binding and catalysis by L/F transferase. This maps a more specific, sequence-dependent tRNA recognition model of L/F transferase than previously proposed. © 2014 Fung et al.

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Fung, A. W. S., Leung, C. C. Y., & Fahlman, R. P. (2014). The determination of tRNALeu recognition nucleotides for Escherichia coli L/F transferase. RNA, 20(8), 1210–1222. https://doi.org/10.1261/rna.044529.114

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