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Up-regulation of neutrophil activating protein in Helicobacter pylori under high-salt stress: Structural and phylogenetic comparison with bacterial iron-binding ferritins
Authors:Jiahn-Haur Liao  Yu-Huan Sun  Chun-Hua Hsu  Yu-Ching Lin  Shih-Hsiung Wu  Chao-Jen Kuo  Chun-Hao Huang  Shyh-Horng Chiou
Affiliation:1. Institute of Biological Chemistry, Academia Sinica, Taipei, Taiwan;2. Institute of Biochemical Sciences, National Taiwan University, Taipei, Taiwan;3. Department of Agricultural Chemistry, National Taiwan University, Taipei, Taiwan;4. Graduate Institute of Medicine, Kaohsiung Medical University, Kaohsiung, Taiwan
Abstract:It is generally accepted that most gastrointestinal diseases are probably caused by the bacterial pathogen Helicobacter pylori (H. pylori). In this study we have focused on the comparison of protein expression profiles of H. pylori grown under normal and high-salt conditions by a proteomics approach. We have identified about 190 proteins whose expression levels changed after growth at high salt concentration. Among these proteins, neutrophil-activating protein (NapA) was found to be consistently up-regulated under osmotic stress brought by high salts. We have investigated the effect of high salt on secondary and tertiary structures of NapA by circular dichroism spectroscopy followed by analytical ultracentrifugation to monitor the change of quaternary structure of recombinant NapA with increasing salt concentration. The loss of iron-binding activity of NapA coupled with noticeable energetic variation in protein association of NapA as revealed by isothermal titration calorimetry was found under high salt condition. The phylogenetic tree analysis based on sequence comparison of 16 protein sequences encompassing NapA proteins and ferritin of H. pylori and other prokaryotic organisms pointed to the fact that all H. pylori NapA proteins of human origin are more homologous to NapA of Helicobacter genus than to other bacterial NapA. Based on computer modeling, NapA proteins from H. pylori of human isolates are found more similar to ferritin from H. pylori than to NapA from other species of bacteria. Taken together, these results suggested that divergent evolution of NapA and ferritin possessing dissimilar and diverse sequences follows a path distinct from that of convergent evolution of NapA and ferritin with similar dual functionality of iron-binding and ferroxidase activities.
Keywords:Helicobacter pylori   Neutrophil-activating protein   Iron-binding protein   High-salt stress   Analytical ultracentrifugation   Isothermal titration calorimetry
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