Crystal structure of a putative oligopeptide-binding periplasmic protein from a hyperthermophile

被引:0
作者
Hye-Jin Yoon
Hee Jung Kim
Bunzo Mikami
Yeon Gyu Yu
Hyung Ho Lee
机构
[1] Seoul National University,Department of Chemistry, College of Natural Sciences
[2] Kookmin University,Department of Bio and Nano Chemistry
[3] Kyoto University,Laboratory of Quality Design and Exploitation, Division of Agronomy and Horticultural Science, Graduate School of Agriculture
来源
Extremophiles | 2016年 / 20卷
关键词
OppA; Oligopeptide ABC transporter; Hyperthermophile;
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摘要
Oligopeptide-binding proteins (Opps) are part of the ATP-binding cassette system, playing a crucial role in nutrient uptake and sensing the external environment in bacteria, including hyperthermophiles. Opps serve as a binding platform for diverse peptides; however, how these peptides are recognized by Opps is still largely unknown and few crystal structures of Opps from hyperthermophiles have been determined. To facilitate such an understanding, the crystal structure of a putative Opp, OppA from Thermotoga maritima (TmOppA), was solved at 2.6-Å resolution in the open conformation. TmOppA is composed of three domains. The N-terminal domain consists of twelve strands, nine helices, and four 310 helices, and the C-terminal domain consists of five strands, ten helices, and one 310 helix. These two domains are connected by the linker domain, which consists of two strands, three helices, and three 310 helices. Based on structural comparisons of TmOppA with other OppAs and binding studies, we suggest that TmOppA might be a periplasmic Opp. The most distinct feature of TmOppA is the insertion of two helices, which are lacking in other OppAs. A cavity volume between the N-terminal and C-terminal domains is suggested to be responsible for binding peptides of various lengths.
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页码:723 / 731
页数:8
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  • [1] Adams PD(2010)PHENIX: a comprehensive Python-based system for macromolecular structure solution Acta Crystallogr D Biol Crystallogr 66 213-221
  • [2] Addy C(2007)Nickel binding to NikA: an additional binding site reconciles spectroscopy, calorimetry and crystallography Acta Crystallogr D Biol Crystallogr 63 221-229
  • [3] Berntsson RP(2009)The structural basis for peptide selection by the transport receptor OppA Embo J 28 1332-1340
  • [4] Berntsson RP(2011)Importance of a hydrophobic pocket for peptide binding in lactococcal OppA J Bacteriol 193 4254-4256
  • [5] Thunnissen AM(1987)Structure of the human class I histocompatibility antigen, HLA-A2 Nature 329 506-512
  • [6] Poolman B(1992)Free R value: a novel statistical quantity for assessing the accuracy of crystal structures Nature 355 472-475
  • [7] Slotboom DJ(2010)MolProbity: all-atom structure validation for macromolecular crystallography Acta Crystallogr D Biol Crystallogr 66 12-21
  • [8] Bjorkman PJ(2004)Coot: model-building tools for molecular graphics Acta Crystallogr D Biol Crystallogr 60 2126-2132
  • [9] Saper MA(2001)ABC transporters: physiology, structure and mechanism–an overview Res Microbiol 152 205-210
  • [10] Samraoui B(2010)Dali server: conservation mapping in 3D Nucleic Acids Res 38 W545-W549