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Effect of high hydrostatic pressure on the bacterial mechanosensitive channel MscS

机译:高静水压对细菌机械敏感通道MscS的影响

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摘要

We have investigated the effect of high hydrostatic pressure on MscS, the bacterial mechanosensitive channel of small conductance. Pressure affected channel kinetics but not conductance. At negative pipette voltages (corresponding to membrane depolarization in the inside-out patch configuration used in our experiments) the channel exhibited a reversible reduction in activity with increasing hydrostatic pressure between 0 and 900 atm (90 MPa) at 23°C. The reduced activity was characterized by a significant reduction in the channel opening probability resulting from a shortening of the channel openings with increasing pressure. Thus high hydrostatic pressure generally favoured channel closing. Cooling the patch by approximately 10°C, intended to order the bilayer component of the patch by an amount similar to that caused by 50 MPa at 23°C, had relatively little effect. This implies that pressure does not affect channel kinetics via bilayer order. Accordingly we postulate that lateral compression of the bilayer, under high hydrostatic pressure, is responsible. These observations also have implications for our understanding of the adaptation of mechanosensitive channels in deep-sea bacteria.
机译:我们已经研究了高静水压力对MscS(小电导的细菌机械敏感通道)的影响。压力影响通道动力学,但不影响电导。在负移液器电压下(对应于我们实验中使用的由内而外的贴片配置中的膜去极化),该通道在23°C时静液压在0至900 atm(90 MPa)之间增加时,表现出可逆的活性降低。活性降低的特征在于,随着压力的增加,通道开口的缩短导致通道开口概率的显着降低。因此,高静水压力通常有利于通道的关闭。将贴剂冷却至约10°C(旨在使贴剂的双层组分的量与23°C时50 MPa引起的量相似)的效果相对较小。这意味着压力不会通过双层顺序影响通​​道动力学。因此,我们假设在高静水压力下双层的横向压缩是负责的。这些观察结果对我们对深海细菌中机械敏感通道的适应性的理解也有影响。

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