Structural basis for the hyperthermostability of an archaeal glutaminase induced by post-translational succinimide formation

Author:

Dongre Aparna VilasORCID,Das SudipORCID,Bellur AsutoshORCID,Kumar SanjeevORCID,Chandrashekarmath AnushaORCID,Karmakar TarakORCID,Balaram Padmanabhan,Balasubramanian SundaramORCID,Balaram HemalathaORCID

Abstract

AbstractStability of proteins from hyperthermophiles enabled by reduction of conformational flexibility is realized through various mechanisms. Presence of a stable, hydrolysis-resistant succinimide arising from cyclization of the side chains of aspartyl/asparaginyl residues with backbone amide -NH of the succeeding residue would restrain the torsion angle Ψ. Here, we describe the crystal structure of Methanocaldococcus jannaschii glutamine amidotransferase (MjGATase) and address the mechanism of a succinimide-induced increased thermostability using molecular dynamics simulations. This study reveals the interplay of negatively charged electrostatic shield and n→π* interactions in preventing succinimide hydrolysis. The stable succinimidyl residue induces formation of a ‘conformational-lock’, reducing protein flexibility. Protein destabilization upon replacement with the Φ-restricted prolyl residue highlights the specificity of the conformationally restrained succinimidyl residue in imparting hyperthermostability. The conservation of succinimide-forming tripeptide sequence (E(N/D)(E/D)) in a group of archaeal GATases suggests an adaptation of this otherwise detrimental post-translational modification as an inducer of thermostability.

Publisher

Cold Spring Harbor Laboratory

Reference65 articles.

1. Molecular clocks

2. N. E. Robinson , A. B. Robinson , Molecular clocks: Deamidation of asparaginyl and gluatminyl residues in pepides and proteins. Althouse Press. Cave Junction, OR, 1–11 (2004).

3. Protein deamidation

4. A Rapid, Comprehensive Liquid Chromatography-Mass Spectrometry (LC-MS)-based Survey of the Asp Isomers in Crystallins from Human Cataract Lenses

5. Three-way Stabilization of the Covalent Intermediate in Amylomaltase, an α-Amylase-like Transglycosylase

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