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Solved do you think Min CDE functions in coccid shaped | Chegg.com
Blocking of cell wall formation by antibiotics stops bacterial cell division | German Center for Infection Research
Bacterial cell division: A moving MinE sweeper boggles the MinD: Current Biology
What are the steps of Binary Fission? What is ftsZ ring or Z ring in binary fission?
Z-ring force and cell shape during division in rod-like bacteria | PNAS
Z-ring force and cell shape during division in rod-like bacteria. - Abstract - Europe PMC
Evaluation of 2,6-difluoro-3-(oxazol-2-ylmethoxy)benzamide chemotypes as Gram-negative FtsZ inhibitors
Mechanism that regulates an efficient switch from cell elongation to cell division.::National Institute of Genetics
Splitsville: structural and functional insights into the dynamic bacterial Z ring | Nature Reviews Microbiology
Coordinating Bacterial Cell Division with Nutrient Availability: a Role for Glycolysis | mBio
The formation of Z ring-like structures of Arabidopsis chloroplast... | Download Scientific Diagram
Mol Micro Editors on Twitter: "Recently accepted: Division‐site localization of RodZ is required for efficient Z ring formation in Escherichia coli.... https://t.co/0l0DZN3i3C https://t.co/crnfZclgz5" / Twitter
Linking DNA replication to the Z ring | Nature Microbiology
Bacterial Cell Division Machinery: An Insight for Development of New Antibacterial Agent | SpringerLink
Regulation of cytokinesis: FtsZ and its accessory proteins | SpringerLink
Chrysophaentins are competitive inhibitors of FtsZ and inhibit Z-ring formation in live bacteria. | Semantic Scholar
The Min System and Nucleoid Occlusion Are Not Required for Identifying the Division Site in Bacillus subtilis but Ensure Its Efficient Utilization | PLOS Genetics
Frontiers | How Do MinC-D Copolymers Act on Z-Ring Localization Regulation? A New Model of Bacillus subtilis Min System
Discovery of anti-TB agents that target the cell-division protein FtsZ | Future Medicinal Chemistry
Z-ring force and cell shape during division in rod-like bacteria | PNAS