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Title | High-resolution archaellum structure reveals a conserved metal-binding site. |
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Journal, issue, pages | EMBO Rep, Vol. 20, Issue 5, Year 2019 |
Publish date | Mar 21, 2019 |
Authors | Vladimir A Meshcheryakov / Satoshi Shibata / Makoto Tokoro Schreiber / Alejandro Villar-Briones / Kenneth F Jarrell / Shin-Ichi Aizawa / Matthias Wolf / |
PubMed Abstract | Many archaea swim by means of archaella. While the archaellum is similar in function to its bacterial counterpart, its structure, composition, and evolution are fundamentally different. Archaella are ...Many archaea swim by means of archaella. While the archaellum is similar in function to its bacterial counterpart, its structure, composition, and evolution are fundamentally different. Archaella are related to archaeal and bacterial type IV pili. Despite recent advances, our understanding of molecular processes governing archaellum assembly and stability is still incomplete. Here, we determine the structures of archaella by X-ray crystallography and cryo-EM The crystal structure of FlaB1 is the first and only crystal structure of any archaellin to date at a resolution of 1.5 Å, which is put into biological context by a cryo-EM reconstruction from archaella at 4 Å resolution created with helical single-particle analysis. Our results indicate that the archaellum is predominantly composed of FlaB1. We identify N-linked glycosylation by cryo-EM and mass spectrometry. The crystal structure reveals a highly conserved metal-binding site, which is validated by mass spectrometry and electron energy-loss spectroscopy. We show that the metal-binding site, which appears to be a widespread property of archaellin, is required for filament integrity. |
External links | EMBO Rep / PubMed:30898768 / PubMed Central |
Methods | EM (helical sym.) / X-ray diffraction |
Resolution | 1.5 - 4.0 Å |
Structure data | EMDB-6876, PDB-5z1l: PDB-5ya6: |
Chemicals | ChemComp-CA: ChemComp-HOH: |
Source |
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Keywords | STRUCTURAL PROTEIN / archaea / flagellum / flagellin / PROTEIN FIBRIL / Archaellum / archea / metal binding / motility / helical |