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Na current in membrane blebs: implications for channel mobility and patch clamp recording

机译:膜泡中的钠电流:对通道迁移率和膜片钳记录的影响

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摘要

When suction was applied to loose patch clamp pipettes while recording from enzymatically dissociated muscle fibers, large membrane blebs formed within the pipettes. We initiated a study of these suction- induced blebs because ion channels in the blebs would complicate or possibly invalidate loose patch voltage clamp measurements of membrane current density. The low lateral mobility (Stuhmer and Almers, 1982) and steep gradients of Na channels at the end-plate and tendon (Caldwell et al., 1986) imply tight binding of Na channels to cytoskeletal elements and led us to expect few, if any, Na channels in the blebs. Bleb formation produced an increase in membrane capacitance, as expected from the increase in membrane area. Bleb formation also increased the Na current, indicating that the blebs contained Na channels. Assuming that the increased capacitance and Na current were due to lipid and Na channels moving from membrane outside the pipette, ejection of the bleb from the pipette was expected to bring the capacitance and Na current back to their original values. Capacitance did return to its original value, but Na current was lower than expected. The decrease in Na current is explained by Na channels moving from the patch membrane into the bleb. Normalization of bleb and patch Na current to their respective capacitances revealed that bleb membrane had a Na channel density almost 50% that of normal surface membrane. Thus, bleb membrane is neither devoid of proteins nor truly representative of the normal surface membrane from which it arose. It is enriched in membrane lipids and is relatively protein poor. Two conclusions can be drawn.(ABSTRACT TRUNCATED AT 250 WORDS)
机译:在从酶解离的肌肉纤维进行记录的同时,对松散的膜片钳移液管进行抽吸时,移液管内会形成大的膜泡。我们开始研究这些由吸力引起的气泡,因为气泡中的离子通道会使膜电流密度的松散电压钳位测量变得复杂或可能无效。低横向移动性(Stuhmer and Almers,1982)和终板和腱上Na通道的陡峭梯度(Caldwell et al。,1986)暗示Na通道与细胞骨架元素紧密结合,导致我们期望很少(如果有的话) ,钠通道起泡。正如从膜面积的增加所预期的那样,小泡的形成使膜电容增加。气泡的形成也增加了钠电流,表明气泡包含钠通道。假设增加的电容和Na电流是由于脂质和Na通道从移液管外部的膜中移出,那么从移液管中排出的气泡有望使电容和Na电流回到其原始值。电容确实恢复了其原始值,但Na电流低于预期。 Na电流的减少是由Na通道从贴膜进入气泡引起的。气泡和贴片Na电流对其各自电容的归一化显示,气泡膜的Na通道密度几乎是正常表面膜的50%。因此,起泡膜既不缺乏蛋白质,也不真正代表其起源的正常表面膜。它富含膜脂质,蛋白质含量相对较低。可以得出两个结论。(摘要以250字截断)

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