Literature DB >> 28784753

Near-atomic resolution cryoelectron microscopy structure of the 30-fold homooligomeric SpoIIIAG channel essential to spore formation in Bacillus subtilis.

Natalie Zeytuni1, Chuan Hong2, Kelly A Flanagan3, Liam J Worrall1, Kate A Theiltges1, Marija Vuckovic1, Rick K Huang2, Shawn C Massoni3, Amy H Camp4, Zhiheng Yu5, Natalie C Strynadka6.   

Abstract

Bacterial sporulation allows starving cells to differentiate into metabolically dormant spores that can survive extreme conditions. Following asymmetric division, the mother cell engulfs the forespore, surrounding it with two bilayer membranes. During the engulfment process, an essential channel, the so-called feeding tube apparatus, is thought to cross both membranes to create a direct conduit between the mother cell and the forespore. At least nine proteins are required to create this channel, including SpoIIQ and SpoIIIAA-AH. Here, we present the near-atomic resolution structure of one of these proteins, SpoIIIAG, determined by single-particle cryo-EM. A 3D reconstruction revealed that SpoIIIAG assembles into a large and stable 30-fold symmetric complex with a unique mushroom-like architecture. The complex is collectively composed of three distinctive circular structures: a 60-stranded vertical β-barrel that forms a large inner channel encircled by two concentric rings, one β-mediated and the other formed by repeats of a ring-building motif (RBM) common to the architecture of various dual membrane secretion systems of distinct function. Our near-atomic resolution structure clearly shows that SpoIIIAG exhibits a unique and dramatic adaptation of the RBM fold with a unique β-triangle insertion that assembles into the prominent channel, the dimensions of which suggest the potential passage of large macromolecules between the mother cell and forespore during the feeding process. Indeed, mutation of residues located at key interfaces between monomers of this RBM resulted in severe defects both in vivo and in vitro, providing additional support for this unprecedented structure.

Entities:  

Keywords:  SpoIIIAG; ring-building motif; secretion system; sporulation

Mesh:

Substances:

Year:  2017        PMID: 28784753      PMCID: PMC5576796          DOI: 10.1073/pnas.1704310114

Source DB:  PubMed          Journal:  Proc Natl Acad Sci U S A        ISSN: 0027-8424            Impact factor:   11.205


  56 in total

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Review 8.  A mother cell-to-forespore channel: current understanding and future challenges.

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  15 in total

1.  Shaping an Endospore: Architectural Transformations During Bacillus subtilis Sporulation.

Authors:  Kanika Khanna; Javier Lopez-Garrido; Kit Pogliano
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2.  Structural characterization of SpoIIIAB sporulation-essential protein in Bacillus subtilis.

Authors:  N Zeytuni; K A Flanagan; L J Worrall; S C Massoni; A H Camp; N C J Strynadka
Journal:  J Struct Biol       Date:  2017-12-26       Impact factor: 2.867

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Journal:  Subcell Biochem       Date:  2022

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Journal:  PLoS Genet       Date:  2017-09-25       Impact factor: 5.917

7.  The molecular architecture of engulfment during Bacillus subtilis sporulation.

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9.  A coevolution-guided model for the rotor of the bacterial flagellar motor.

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10.  Symmetry mismatch in the MS-ring of the bacterial flagellar rotor explains the structural coordination of secretion and rotation.

Authors:  Steven Johnson; Yu Hang Fong; Justin C Deme; Emily J Furlong; Lucas Kuhlen; Susan M Lea
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