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In the bacterium Escherichia coli, selection of the division site involves pole-to-pole oscillations of the proteins MinD and MinE. Different oscillation mechanisms based on cooperative effects between Min-proteins and on the exchange of…

亚细胞过程 · 定量生物学 2010-08-17 G. Meacci , J. Ries , E. Fischer-Friedrich , N. Kahya , P. Schwille , K. Kruse

In E. coli the determination of the middle of the cell and the proper placement of the septum is essential to the division of the cell. This step depends on the proteins MinC, MinD, and MinE. Exposure to a constant external field e.g., an…

One of the most important steps in the developmental process of the bacteria cell at the cellular level is the determination of the middle of the cell and the proper placement of the septum, these being essential to the division of the…

Determining the middle of the bacteria cell and the proper placement of the septum is essential to the division of the bacterial cell. In E. coli, this process depends on the proteins MinC, MinD, and MinE. Here, the Lattice Boltzmann method…

定量方法 · 定量生物学 2007-05-23 Waipot Ngamsaad , Wannapong Triampo , Paisan Kanthang , I-Ming Tang , Narin Nuttawut , Charin Modjung

In E. coli, accurate cell division depends upon the oscillation of Min proteins from pole to pole. We provide a model for the polar localization of MinD based only on diffusion, a delay for nucleotide exchange, and different rates of…

亚细胞过程 · 定量生物学 2009-11-10 Rahul V. Kulkarni , Kerwyn Casey Huang , Morten Kloster , Ned S. Wingreen

The Min system in Escherichia coli directs division to the centre of the cell through pole-to-pole oscillations of the MinCDE proteins. We present a one dimensional stochastic model of these oscillations which incorporates membrane…

亚细胞过程 · 定量生物学 2007-05-23 Filipe Tostevin , Martin Howard

During division it is of primary importance for a cell to correctly determine the site of cleavage. The bacterium Escherichia coli divides in the center, producing two daughter cells of equal size. Selection of the center as the correct…

亚细胞过程 · 定量生物学 2007-05-23 G. Meacci , K. Kruse

A mathematical model of Min oscillation in Escherichia coli is numerically studied. The oscillatory state and hysteretic transition are explained with simpler coupled differential equations. Next, we propose a simple model of cell growth…

适应与自组织系统 · 物理学 2019-10-23 Hidetsugu Sakaguchi , Yuka Kawasaki

The spatiotemporal oscillations of the Min proteins in the bacterium Escherichia coli play an important role in cell division. A number of different models have been proposed to explain the dynamics from the underlying biochemistry. Here,…

亚细胞过程 · 定量生物学 2013-05-29 Peter Borowski , Eric N. Cytrynbaum

The spatiotemporal oscillation patterns of the proteins MinD and MinE are used by the bacterium E. coli to sense its own geometry. Strikingly, both computer simulations and experiments have recently shown that for the same geometry of the…

亚细胞过程 · 定量生物学 2016-10-18 Artemij Amiranashvili , Nikolas D Schnellbächer , Ulrich S Schwarz

Self-organization of proteins in space and time is of crucial importance for the functioning of cellular processes. Often, this organization takes place in the presence of strong random fluctuations due to the small number of molecules…

亚细胞过程 · 定量生物学 2010-09-22 Elisabeth Fischer-Friedrich , Giovanni Meacci , Joe Lutkenhaus , Hugues Chate , Karsten Kruse

Ongoing sub-cellular oscillation of Min proteins is required to block minicelling in E. coli. Experimentally, Min oscillations are seen in newly divided cells and no minicells are produced. In model Min systems many daughter cells do not…

亚细胞过程 · 定量生物学 2009-11-13 Supratim Sengupta , Andrew D. Rutenberg

We examine fluctuation effects due to the low copy number of proteins involved in pattern-forming dynamics within a bacterium. We focus on a stochastic model of the oscillating MinCDE protein system regulating accurate cell division in E.…

统计力学 · 物理学 2009-11-10 Martin Howard , Andrew D. Rutenberg

We introduce a three-dimensional stochastic reaction-diffusion model to describe MinD/MinE dynamical structures in Escherichia coli. This model spontaneously generates pole-to-pole oscillations of the membrane-associated MinD proteins, MinE…

亚细胞过程 · 定量生物学 2007-05-23 Nenad Pavin , Hana Cipcic Paljetak , Vladimir Krstic

We use the oscillating Min proteins of Escherichia coli as a prototype system to illustrate the current state and potential of modeling protein dynamics in space and time. We demonstrate how a theoretical approach has led to striking new…

亚细胞过程 · 定量生物学 2007-05-23 Martin Howard , Karsten Kruse

Protein pattern formation is essential for the spatial organization of many intracellular processes like cell division, flagellum positioning, and chemotaxis. A prominent example of intracellular patterns are the oscillatory pole-to-pole…

生物物理 · 物理学 2018-02-21 Erwin Frey , Jacob Halatek , Simon Kretschmer , Petra Schwille

We model the self-organization of the MinE ring that is observed during subcellular oscillations of the proteins MinD and MinE within the rod-shaped bacterium {\it Escherichia coli}. With a steady-state approximation, we can study the…

亚细胞过程 · 定量生物学 2009-06-10 Julien Derr , Jason T. Hopper , Anirban Sain , Andrew D. Rutenberg

Various rod-shaped bacteria such as the canonical gram negative Escherichia coli or the well-studied gram positive Bacillus subtilis divide symmetrically after they approximately double their volume. Their size at division is not constant,…

细胞行为 · 定量生物学 2015-06-18 Ariel Amir

Intracellular protein patterns govern essential cellular functions by dynamically redistributing proteins between membrane-bound and cytosolic states, conserving their total numbers. This review presents a theoretical framework for…

生物物理 · 物理学 2025-12-16 Erwin Frey , Henrik Weyer

We have developed a 3D off-lattice stochastic polymerization model to study subcellular oscillation of Min proteins in the bacteria Escherichia coli, and used it to investigate the experimental phenomenon of Min oscillation stuttering.…

亚细胞过程 · 定量生物学 2015-06-05 Supratim Sengupta , Julien Derr , Anirban Sain , Andrew D. Rutenberg
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