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首页> 外文期刊>European Biophysics Journal >The influence of static magnetic fields on mechanosensitive ion channel activity in artificial liposomes
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The influence of static magnetic fields on mechanosensitive ion channel activity in artificial liposomes

机译:静磁场对人工脂质体机械敏感离子通道活性的影响

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摘要

The influence of static magnetic fields (SMFs) on the activity of recombinant mechanosensitive ion channels (the bacterial mechanosensitive ion channel of large conductance—MscL) following reconstitution into artificial liposomes has been investigated. Preliminary findings suggest that exposure to 80-mT SMFs does not induce spontaneous MscL activation in the absence of mechanical stimulation. However, SMFs do appear to influence the open probability and single channel kinetics of MscL exposed to negative pipette pressure. Typical responses include an overall reduction in channel activity or an increased likelihood of channels becoming “trapped open” in sub-conducting states following exposure to SMFs. There is a delay in the onset of this effect and it is maintained throughout exposure. Generally, channel activity showed slow or limited recovery following removal of the magnetic field and responses to the magnetic were often reduced or abolished upon subsequent exposures. Pre-exposure of the liposomes to SMFs resulted in reduced sensitivity of MscL to negative pipette pressure, with higher pressures required to activate the channels. Although the mechanisms of this effect are not clear, our initial observations appear to support previous work showing that the effects of SMFs on ion channels may be mediated by changes in membrane properties due to anisotropic diamagnetism of lipid molecules.
机译:研究了静磁场(SMF)对重组为人工脂质体后重组机械敏感离子通道(大电导的细菌机械敏感离子通道-MscL)活性的影响。初步发现表明,在没有机械刺激的情况下,暴露于80 mT SMF不会诱导自发MscL活化。但是,SMF确实会影响在负移液管压力下MscL的打开概率和单通道动力学。典型的响应包括通道活动的总体降低或暴露于SMF后处于亚导电状态的通道“陷于打开”的可能性增加。此效应的发作有延迟,并且在整个暴露过程中都可以保持。通常,在去除磁场之后,通道活性显示出缓慢或有限的恢复,并且在随后的暴露后,对磁场的响应通常会降低或消失。脂质体预先暴露于SMF会导致MscL对移液器负压的敏感性降低,从而需要更高的压力来激活通道。尽管这种作用的机理尚不清楚,但我们的初步观察似乎支持以前的工作,这些工作表明SMF对离子通道的影响可能是由于脂质分子的各向异性反磁性而引起的膜性质变化所介导的。

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