Related Experiment Video
Updated: Aug 28, 2026

Single-Molecule Diffusion and Assembly on Polymer-Crowded Lipid Membranes
Published on: July 19, 2022
Defining the order of assembly of the Clostridioides difficile divisome complex
Gregory A Harrison1, Pola Kuhn1,2, Shailab Shrestha1,2
1Department of Molecular Biology and Microbiology, Tufts University School of Medicine, Boston, Massachusetts, USA.
Abstract:
Cell division is the ancient pathway by which bacteria synthesize a septum of peptidoglycan, dividing the cell into two. Although all walled bacteria were previously thought to use FtsW-FtsI orthologs to synthesize septal peptidoglycan during division, we recently discovered that the major pathogen Clostridioides difficile is missing FtsW-FtsI and instead relies on the activity of the bifunctional Class A penicillin-binding protein (PBP) called PBP1 to synthesize septal peptidoglycan during vegetative division. Furthermore, C. difficile either does not encode or require the majority of canonical divisome proteins described in model bacteria aside from the divisome protein orthologs FtsZ, SepF, and ZapA. Indeed, unlike model systems, SepF and ZapA are essential in C. difficile, suggesting that they have evolved to have a critical function in cell division without the redundant mechanisms present in model organisms. Thus, C. difficile uses a fundamentally different division mechanism compared to previously studied bacteria. To understand how this unusual complex is assembled in C. difficile, we combine CRISPR interference-based knockdowns with fluorescent fusions to determine that the hierarchical order of assembly occurs in three phases: (i) FtsZ/ZapA, (ii) SepF, and (iii) PBP1. We further investigate the order of assembly of several non-essential mid-cell localizing proteins and discover that MldA, MldC, DivIVA, FtsK, and PBP3 depend on FtsZ, SepF, and PBP1 for localization, whereas MldB localizes independently of SepF and PBP1. Our work provides a model for divisome assembly in C. difficile and validates genetic and cytological tools that can be used to mechanistically dissect this pathway in the future.IMPORTANCEBacterial cell division has been extensively studied in model systems, but little is known about how this essential process occurs in the clinically important pathogen Clostridioides difficile. Studies in model systems have shown that cell division is carried out by a large multi-protein complex called the "divisome." While components of the divisome are widely conserved and can be traced back to the last bacterial common ancestor billions of years ago, C. difficile uses a unique mechanism of division that is independent of most canonical divisome genes. In the current study, we characterize the core, essential divisome comprised of FtsZ, ZapA, SepF, and PBP1, and build a model for the order of assembly of this unusual divisome complex.
More Related Videos
09:12Applying Live Cell Imaging and Cryo-Electron Tomography to Resolve Spatiotemporal Features of the Legionella pneumophila Dot/Icm Secretion System
Published on: March 10, 2020
13:34Production, Crystallization and Structure Determination of C. difficile PPEP-1 via Microseeding and Zinc-SAD
Published on: December 30, 2016
Related Concept Videos
Intralumenal Vesicles and Multivesicular Bodies
Protein Complex Assembly
Many viruses self-assemble into a fully functional unit using the infected host cell to...
Protein Complex Assembly
Many viruses self-assemble into a fully functional unit using the infected host cell to...
Clathrin Coated Vesicles
Pinching-off of Coated Vesicles
Disassembly of Intermediate Filaments
Keratin proteins, found at the cell periphery near cell junctions, undergo a cycle of assembly and disassembly. In Type...