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| Title | Evolutionary adaptation in fucosyllactose uptake systems supports bifidobacteria-infant symbiosis. |
|---|---|
| Journal, issue, pages | Sci Adv, Vol. 5, Page eaaw7696-eaaw7696, Year 2019 |
| Publish date | Oct 9, 2018 (structure data deposition date) |
Authors | Sakanaka, M. / Hansen, M.E. / Gotoh, A. / Katoh, T. / Yoshida, K. / Odamaki, T. / Yachi, H. / Sugiyama, Y. / Kurihara, S. / Hirose, J. ...Sakanaka, M. / Hansen, M.E. / Gotoh, A. / Katoh, T. / Yoshida, K. / Odamaki, T. / Yachi, H. / Sugiyama, Y. / Kurihara, S. / Hirose, J. / Urashima, T. / Xiao, J.Z. / Kitaoka, M. / Fukiya, S. / Yokota, A. / Lo Leggio, L. / Abou Hachem, M. / Katayama, T. |
External links | Sci Adv / PubMed:31489370 |
| Methods | X-ray diffraction |
| Resolution | 1.297 - 1.409 Å |
| Structure data | ![]() PDB-6hur: ![]() PDB-6hus: |
| Chemicals | ![]() ChemComp-PG0: ![]() ChemComp-BGC: ![]() ChemComp-ZN: ![]() ChemComp-MES: ![]() ChemComp-HOH: |
| Source |
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Keywords | TRANSPORT PROTEIN / Solute Binding Protein / 2'-Fucosyllactose / Bifidobacterium longum infantis / ABC-transporter |
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bifidobacterium longum subsp. infantis (bacteria)
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