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On the discrepancy between whole-cell and membrane patch mechanosensitivity in Xenopus oocytes

机译:爪蟾卵母细胞全细胞与膜片机械敏感性之间的差异

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摘要

class="enumerated" style="list-style-type:decimal">Mechanical stimulation of voltage-clamped Xenopus oocytes by inflation, aspiration, or local indentation failed to activate an increase in membrane conductance up to the point of causing visible oocyte damage.The absence of mechanosensitivity is not due to the vitelline membrane, rapid MG channel adaptation or tension-sensitive recruitment of new membrane.Membrane capacitance measurements indicate that the oocyte surface area is at least 5 times larger than that predicted assuming a smooth sphere. We propose that this excess membrane area provides an immediate reserve that can ‘buffer’ membrane tension changes and thus prevent MG channel activation.High-resolution images of tightly sealed patches and patch capacitance measurements indicate a smooth membrane that is pulled flat and perpendicular across the inside of the pipette. Brief steps of pressure or suction cause rapid and reversible membrane flexing and MG channel activation.We propose that changes in membrane geometry induced during cell growth and differentiation or as a consequence of specific physiological and pathological conditions may alter mechanosensitivity of a cell independently of the intrinsic properties of channel proteins.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 充气,抽吸或局部压痕对电压钳制的爪蟾卵母细胞的机械刺激未能激活膜电导的增加,直至引起可见卵母细胞损伤。 缺乏机械敏感性不是由于卵黄质膜,快速的MG通道适应性或张力敏感的新膜募集。 膜电容测量表明,卵母细胞表面积至少是假定为光滑球体时预测的表面积的5倍。我们建议,该多余的膜面积可立即保留,可以“缓冲”膜张力变化,从而防止MG通道激活。 紧密密封的贴片和贴片电容测量的高分辨率图像表明,光滑的膜拉平并垂直于移液器的内部。短暂的压力或吸力步骤会导致膜弯曲快速且可逆,并激活MG通道。 我们建议,在细胞生长和分化过程中或由于特定的生理和病理状况而引起的膜几何形状变化可能会改变机械敏感性。与通道蛋白的固有特性无关。

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