The Min oscillator uses MinD-dependent conformational changes in MinE to spatially regulate cytokinesis.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 21816275.
- Also identified by DOI 10.1016/j.cell.2011.06.042 and PMC identifier 3155264.
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Abstract
In E. coli, MinD recruits MinE to the membrane, leading to a coupled oscillation required for spatial regulation of the cytokinetic Z ring. How these proteins interact, however, is not clear because the MinD-binding regions of MinE are sequestered within a six-stranded β sheet and masked by N-terminal helices. minE mutations that restore interaction between some MinD and MinE mutants were isolated. These mutations alter the MinE structure leading to release of the MinD-binding regions and the N-terminal helices that bind the membrane. Crystallization of MinD-MinE complexes revealed a four-stranded β sheet MinE dimer with the released β strands (MinD-binding regions) converted to α helices bound to MinD dimers. These results identify the MinD-dependent conformational changes in MinE that convert it from a latent to an active form and lead to a model of how MinE persists at the MinD-membrane surface.
Medical subject headings
- Adenosine Triphosphatases
- Cell Cycle Proteins
- Escherichia coli
- Escherichia coli Proteins