Physiology Course Solves a Piece of the Bacterial Cell Division Puzzle

Cell division in bacteria is a fundamental and medically important process, but how it works on the molecular level remains enigmatic.

Recently, the  麻花星空视频 Physiology course hosted a collaboration that managed to fit an important piece into the puzzle of bacterial cell division. Led by Physiology faculty  of Harvard University, the group鈥檚 results were published last week in 

A 3D structured illumination microscopy image of Z rings in the absence of FtsZ binding proteins. Taken during the 2017 Physiology Course on the DeltaVision OMX SR. Credit: Victoria Yan & Georgia Squyres /  麻花星空视频 Physiology
A 3D structured illumination microscopy image of Z rings in the absence of FtsZ binding proteins. Taken during the 2017 Physiology Course on the DeltaVision OMX SR. Credit: Victoria Yan & Georgia Squyres / 麻花星空视频 Physiology

鈥淭his paper is very much a product of the scientific environment in the Physiology course, which makes it easy to think creatively and take risks,鈥 said Georgia Squyres, lead co-author with Matthew Holmes on the paper.

All the paper鈥檚 authors were in Physiology in 2016 and/or 2017 as students, faculty or teaching assistants.

Although many of the components that drive cell division in bacteria have been identified, how they work together isn鈥檛 well understood. This group used single-molecule imaging to reveal the dynamics of key components of the machinery: Proteins that associate with a 鈥淶 ring鈥 at mid-cell that constricts as the cell divides.

鈥淔rom a practical standpoint, the Physiology course provided resources and funding both during the course and afterward, when [Physiology students] came to the Garner lab for post-course research,鈥 Squyres said.

鈥淏eyond that, the adventurous and collaborative atmosphere in Physiology, and the energy and talent of the students, meant that we were able to do ambitious assays and test creative ideas that ultimately defined the project,鈥 she said.

For more background, see the 鈥溾 post Squyres wrote for Nature Microbiology.

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Citation: Georgia R. Squyres , Matthew J. Holmes, Sarah R. Barger, Betheney R. Pennycook, Joel Ryan, Victoria T. Yan, and Ethan C. Garner (2021) Single-molecule imaging reveals that Z-ring condensation is essential for cell division in Bacillus subtilis. Nature Microbiology, doi: