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培养的肌管上乙酰胆碱受体的分布与乙酰胆碱敏感性相关。

Acetylcholine receptor distribution on myotubes in culture correlated to acetylcholine sensitivity.

作者信息

Land B R, Podleski T R, Salpeter E E, Salpeter M M

出版信息

J Physiol. 1977 Jul;269(1):155-76. doi: 10.1113/jphysiol.1977.sp011897.

Abstract
  1. A linear relation, with a slope of 0-9 +/- 0-2 on a log-log plot, was obtained between acetylcholine (ACh) sensitivity and alpha-bungarotoxin (alpha-BTX) binding site density in developing L6 and rat primary myotubes. ACh sensitivity was defined as g/Qn where g is conductance, Q is ACh charge and n is the Hill coefficient. Experimentally we found n approximately 1-7 for our myotubes, which is similar in value to that reported for adult systems. 2. The linear relationship is compatible with an organization whereby each ion channel is always complexed with a fixed number of ACh receptors such that the dose-response characteristics of each such complex are independent of average ACh receptor density. 3. Light microscope autoradiography showed that the alpha-bungarotoxin binding sites on L6 myotubes are uniformly distributed over the surface, while primary rat myotubes exhibit gradients and hot spots. Electron microscope autoradiography indicated that about 70% of the [125I]alpha-bungarotoxin label was on the surface of the myotubes. The alpha-bungarotoxin site density, after subtracting myoblast background, varied from 5 to 400 sites/micrometer2 on different L6 myotubes, and from 54 to 900 sites/micrometer2 on primary rat myotubes, with occasional hot spots of 3000-4000 sites/micrometer2. The conductance sensitivities varied from 10(-4) to 2 X 10(-2) Momega-1/nC1-7.
摘要
  1. 在发育中的L6和大鼠原代肌管中,乙酰胆碱(ACh)敏感性与α-银环蛇毒素(α-BTX)结合位点密度之间在对数-对数图上呈现出斜率为0.9±0.2的线性关系。ACh敏感性定义为g/Qn,其中g是电导,Q是ACh电荷量,n是希尔系数。通过实验我们发现,我们的肌管中n约为1.7,这一数值与已报道的成年系统中的数值相似。2. 这种线性关系与一种组织方式相符,即每个离子通道总是与固定数量的ACh受体复合,使得每个这样的复合物的剂量-反应特性与平均ACh受体密度无关。3. 光学显微镜放射自显影显示,L6肌管上的α-银环蛇毒素结合位点在表面均匀分布,而原代大鼠肌管则呈现出梯度和热点。电子显微镜放射自显影表明,约70%的[125I]α-银环蛇毒素标记位于肌管表面。减去成肌细胞背景后,不同L6肌管上的α-银环蛇毒素位点密度在5至400个位点/微米²之间变化,原代大鼠肌管上则在54至900个位点/微米²之间变化,偶尔会出现3000 - 4000个位点/微米²的热点。电导敏感性在10⁻⁴至2×10⁻²MΩ⁻¹/nC¹·⁷之间变化。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/15f4/1283707/d1d38d023958/jphysiol00804-0198-a.jpg

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