MinD and MinE Interact with Anionic Phospholipids and Regulate Division Plane Formation inEscherichia coli
Published 2012 View Full Article
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Title
MinD and MinE Interact with Anionic Phospholipids and Regulate Division Plane Formation inEscherichia coli
Authors
Keywords
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Journal
JOURNAL OF BIOLOGICAL CHEMISTRY
Volume 287, Issue 46, Pages 38835-38844
Publisher
American Society for Biochemistry & Molecular Biology (ASBMB)
Online
2012-09-26
DOI
10.1074/jbc.m112.407817
References
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Note: Only part of the references are listed.- Isolation and identification of new inner membrane-associated proteins that localize to cell poles inEscherichia coli
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- Multiple modes of interconverting dynamic pattern formation by bacterial cell division proteins
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- (2009) Marc Bramkamp et al. CURRENT OPINION IN MICROBIOLOGY
- Direct MinE-membrane interaction contributes to the proper localization of MinDE inE. coli
- (2009) Cheng-Wei Hsieh et al. MOLECULAR MICROBIOLOGY
- Mutual effects of MinD–membrane interaction: I. Changes in the membrane properties induced by MinD binding
- (2008) Shirley Mazor et al. BIOCHIMICA ET BIOPHYSICA ACTA-BIOMEMBRANES
- Mutual effects of MinD-membrane interaction: II. Domain structure of the membrane enhances MinD binding
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- Membrane Deformation under Local pH Gradient: Mimicking Mitochondrial Cristae Dynamics
- (2008) Nada Khalifat et al. BIOPHYSICAL JOURNAL
- The Min System as a General Cell Geometry Detection Mechanism: Branch Lengths in Y-Shaped Escherichia coli Cells Affect Min Oscillation Patterns and Division Dynamics
- (2008) A. Varma et al. JOURNAL OF BACTERIOLOGY
- Lipid spirals in Bacillus subtilis and their role in cell division
- (2008) Imrich Barák et al. MOLECULAR MICROBIOLOGY
- Spatial Regulators for Bacterial Cell Division Self-Organize into Surface Waves in Vitro
- (2008) M. Loose et al. SCIENCE
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