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Response thresholds in bacterial chemotaxis

机译:细菌趋化反应阈值

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Stimulation of Escherichia coli by exponential ramps of chemoattractants generates step changes in the concentration of the response regulator, CheY-P. Because flagellar motors are ultrasensitive, this should change the fraction of time that motors spin clockwise, the CWbias. However, early work failed to show changes in CWbias when ramps were shallow. This was explained by a model for motor remodeling that predicted plateaus in plots of CWbias versus [CheY-P]. We looked for these plateaus by examining distributions of CWbias in populations of cells with different mean [CheY-P]. We did not find such plateaus. Hence, we repeated the work on shallow ramps and found that motors did indeed respond. These responses were quantitatively described by combining motor remodeling with ultrasensitivity in a model that exhibited high sensitivities over a wide dynamic range.
机译:趋化因子的指数上升刺激大肠杆菌会在反应调节剂CheY-P的浓度中产生阶跃变化。由于鞭毛马达是超灵敏的,因此应该改变马达顺时针旋转的时间比例CW bias 。但是,当斜面较浅时,早期工作未能显示出CW bias 的变化。这是由预测CW bias 与[CheY-P]曲线图的平稳期的运动重塑模型解释的。我们通过检查具有不同均值[CheY-P]的细胞群中CW bias 的分布来寻找这些高原。我们没有发现这种高原。因此,我们在浅坡道上重复了这项工作,发现电机确实有响应。通过在超宽动态范围内表现出高灵敏度的模型中,将运动重塑与超敏性相结合来定量描述这些响应。

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