Literature DB >> 23747390

Crystal structures of the ternary complex of APH(4)-Ia/Hph with hygromycin B and an ATP analog using a thermostable mutant.

Daisuke Iino1, Yasuaki Takakura, Kazuhiro Fukano, Yasuyuki Sasaki, Takayuki Hoshino, Kanju Ohsawa, Akira Nakamura, Shunsuke Yajima.   

Abstract

Aminoglycoside 4-phosphotransferase-Ia (APH(4)-Ia)/Hygromycin B phosphotransferase (Hph) inactivates the aminoglycoside antibiotic hygromycin B (hygB) via phosphorylation. The crystal structure of the binary complex of APH(4)-Ia with hygB was recently reported. To characterize substrate recognition by the enzyme, we determined the crystal structure of the ternary complex of non-hydrolyzable ATP analog AMP-PNP and hygB with wild-type, thermostable Hph mutant Hph5, and apo-mutant enzyme forms. The comparison between the ternary complex and apo structures revealed that Hph undergoes domain movement upon binding of AMP-PNP and hygB. This was about half amount of the case of APH(9)-Ia. We also determined the crystal structures of mutants in which the conserved, catalytically important residues Asp198 and Asn203, and the non-conserved Asn202, were converted to Ala, revealing the importance of Asn202 for catalysis. Hph5 contains five amino acid substitutions that alter its thermostability by 16°C; its structure revealed that 4/5 mutations in Hph5 are located in the hydrophobic core and appear to increase thermostability by strengthening hydrophobic interactions.
Copyright © 2013 Elsevier Inc. All rights reserved.

Entities:  

Keywords:  Aminoglycoside antibiotics; Conformational change; Crystal structure; Kinase; Thermostability

Mesh:

Substances:

Year:  2013        PMID: 23747390     DOI: 10.1016/j.jsb.2013.05.023

Source DB:  PubMed          Journal:  J Struct Biol        ISSN: 1047-8477            Impact factor:   2.867


  5 in total

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Authors:  Malene L Urbanus; Andrew T Quaile; Peter J Stogios; Mariya Morar; Chitong Rao; Rosa Di Leo; Elena Evdokimova; Mandy Lam; Christina Oatway; Marianne E Cuff; Jerzy Osipiuk; Karolina Michalska; Boguslaw P Nocek; Mikko Taipale; Alexei Savchenko; Alexander W Ensminger
Journal:  Mol Syst Biol       Date:  2016-12-16       Impact factor: 11.429

  5 in total

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