| Literature DB >> 29325742 |
Qing-Yun Wu1, Yuan-Yuan Zhu2, Fang Wei1, Yu-Xue Tong1, Jiang Cao3, Ping Zhou3, Zhen-Yu Li3, Ling-Yu Zeng3, Feng Li4, Xiao-Yun Wang5, Kai-Lin Xu6.
Abstract
Arginine kinase (AK) catalyzes the reversible phosphorylation of arginine by ATP, yielding the phosphoarginine. Amino acid residues in the guanidine specificity (GS) region play important roles in the guanidine-recognition. However, little is known about roles of amino acid residue G66 in the GS region in proteins folding, activity and structural stability. In this study, a series of G66 mutations were constructed to investigate its roles in AK's structural stability and activity. Our studies revealed that mutations in this conserved site could cause pronounced loss of activity, conformational changes and structural stability. Spectroscopic experiments indicate that G66 mutations influences AK transition from the molten globule intermediate to the native state in folding process. These results provided herein may suggest that amino acid residue G66 may play a relatively important role in AK's activity and structural stability.Entities:
Keywords: Arginine kinase; Protein folding; Structural stability
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Year: 2018 PMID: 29325742 DOI: 10.1016/j.ijbiomac.2018.01.039
Source DB: PubMed Journal: Int J Biol Macromol ISSN: 0141-8130 Impact factor: 6.953