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Tryptophanyl-tRNA Synthetase Urzyme: A MODEL TO RECAPITULATE MOLECULAR EVOLUTION AND INVESTIGATE INTRAMOLECULAR COMPLEMENTATION.

J Biol Chem.. 2010-12;  285(49):38590 - 38601
Yen Pham, Brian Kuhlman, Glenn L. Butterfoss, Hao Hu, Violetta Weinreb, and Charles W. Carter, Jr. Department of Biochemistry and Biophysics, School of Medicine, University of North Carolina, Chapel Hill, North Carolina 27599, USA.
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Abstract

We substantiate our preliminary description of the class I tryptophanyl-tRNA synthetase minimal catalytic domain with details of its construction, structure, and steady-state kinetic parameters. Generating that active fragment involved deleting 65% of the contemporary enzyme, including the anticodon-binding domain and connecting peptide 1, CP1, a 74-residue internal segment from within the Rossmann fold. We used protein design (Rosetta), rather than phylogenetic sequence alignments, to identify mutations to compensate for the severe loss of modularity, thus restoring stability, as evidenced by renaturation described previously and by 70-ns molecular dynamics simulations. Sufficient solubility to enable biochemi... More

Keywords

Aminoacyl tRNA Synthetase; Enzyme Catalysis; Enzyme Mechanisms; Evolution; Protein Domains; Tryptophan; Active-site Titration; Ancestral Gene Resurrection; Protein Design; Specificity