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Mechanically gated channel activity in cytoskeleton-deficient plasma membrane blebs and vesicles from Xenopus oocytes

机译:非洲爪蟾卵母细胞的细胞骨架缺陷质膜泡和囊泡中的机械门控通道活性

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class="enumerated" style="list-style-type:decimal">A novel technique involving hypertonic stress causes membrane ‘blebbing’ of the Xenopus oocyte and the shedding of plasma membrane vesicles (PMVs).Confocal fluorescence microscopy, immunocytochemistry and electron microscopy indicate that blebs and PMVs lack cortical cytoskeleton and are deficient in cytoskeleton proteins and devoid of microvilli.Patch recordings from PMVs consistently reveal mechanically gated (MG) channel activity. The MG channels display the same single-channel conductance as control recordings but differ in terms of reduced mechanosensitivity and adaptation to sustained stimulation.Whole PMV recordings show rapid and reversible activation of mechanosensitive currents in response to pressure pulses. The maximal currents activated in PMVs are consistent with MG channel activity recorded in patches.The discrepancy between MG channel activity recorded in whole PMVs and oocytes most probably reflects their different membrane geometry and ability to develop activating bilayer tensions.We propose that membrane blebbing, which is known to occur under specific physiological and pathological conditions (e.g. mitosis and apoptosis), may increase mechanosensitivity independently of the intrinsic properties of membrane proteins.
机译:class =“ enumerated” style =“ list-style-type:decimal”> <!-list-behavior =枚举前缀-word = mark-type = decimal max-label-size = 0-> 一种涉及高渗应激的新技术会导致非洲爪蟾卵母细胞的膜“起泡”并质膜囊泡(PMV)脱落。缺乏细胞骨架蛋白,没有微绒毛。 PMV的补丁记录始终显示出机械门控(MG)通道的活性。 MG通道显示与控制记录相同的单通道电导,但是在降低机械灵敏度和适应持续刺激方面有所不同。 整个PMV记录显示响应压力脉冲而快速而可逆地激活机械敏感电流。在PMVs中激活的最大电流与斑块中记录的MG通道活性一致。 在整个PMVs和卵母细胞中记录的MG通道活性之间的差异很可能反映了它们不同的膜几何形状和产生激活性双层张力的能力。 我们建议已知在特定的生理和病理条件(例如有丝分裂和凋亡)下发生的膜起泡可能会增加机械敏感性,而与膜蛋白的内在特性无关。

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