| Literature DB >> 34265277 |
Domenica Farci1, Sami Kereïche2, Sushil Pangeni3, Patrycja Haniewicz4, Igor V Bodrenko5, Matteo Ceccarelli5, Mathias Winterhalter3, Dario Piano6.
Abstract
Bacterial surface layers are paracrystalline assemblies of proteins that provide the first line of defense against environmental shocks. Here, we report the 3D structure, in situ localization, and orientation of the S-layer deinoxanthin-binding complex (SDBC), a hetero-oligomeric assembly of proteins that in Deinococcus radiodurans represents the main S-layer unit. The SDBC is resolved at 11-Å resolution by single-particle analysis, while its in situ localization is determined by cryo-electron crystallography on intact cell-wall fragments leading to a projection map at 4.5-Å resolution. The SDBC exhibits a triangular base with three comma-shaped pores, and a stalk departing orthogonally from the center of the base and oriented toward the intracellular space. Combining state-of-the-art techniques, results show the organization of this S-layer and its connection within the underlying membranes, demonstrating the potential for applications from nanotechnologies to medicine.Entities:
Keywords: SDBC; cell wall; cryo-electron crystallography; cryo-electron tomography; single-particle analysis
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Year: 2021 PMID: 34265277 DOI: 10.1016/j.str.2021.06.014
Source DB: PubMed Journal: Structure ISSN: 0969-2126 Impact factor: 5.006