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小龙虾中已识别肌纤维正常生长和异常生长过程中的递质释放

Transmitter release during normal and altered growth of identified muscle fibres in the crayfish.

作者信息

Lnenicka G A, Mellon D

出版信息

J Physiol. 1983 Dec;345:285-96. doi: 10.1113/jphysiol.1983.sp014978.

Abstract

During growth of identified crayfish muscle fibres from a diameter of 20 to 400 micron, the excitatory junctional potential (e.j.p.) amplitude was found to be independent of diameter. Thus, e.j.p. amplitude was maintained during growth in spite of a 21-fold decrease in miniature excitatory junctional potential (m.e.j.p.) amplitude previously reported (Lnenicka & Mellon, 1983). The maintenance of e.j.p. amplitude was found to be partially due to a 5-fold increase in quantal release at 'active sites' during growth. In order to determine whether the increase in transmitter release can be regulated by the rate of muscle fibre growth, the rate of growth was experimentally reduced. By decreasing the resting length of the muscle during growth, the rate of increase in the diameter was reduced by approximately 50% compared with the contralateral control muscle fibres. The input resistance and the m.e.j.p. were appropriately larger in the smaller-diameter experimental fibres. However, e.j.p. amplitude in the experimental fibres was not significantly different from that in the contralateral control fibres. This was apparently due to the significantly smaller quantal release at active sites on the experimental fibres compared with control fibres. Thus, experimental alteration of the rate of muscle fibre growth results in regulation of transmitter release, suggesting that the muscle fibre may control the increase in transmitter release seen during normal growth.

摘要

在已鉴定的小龙虾肌肉纤维从直径20微米生长到400微米的过程中,发现兴奋性突触后电位(e.j.p.)的幅度与直径无关。因此,尽管先前报道微小兴奋性突触后电位(m.e.j.p.)的幅度下降了21倍(Lnenicka和Mellon,1983年),但在生长过程中e.j.p.的幅度仍保持不变。发现e.j.p.幅度的维持部分是由于生长过程中“活性位点”处量子释放增加了5倍。为了确定递质释放的增加是否可以由肌肉纤维的生长速率调节,通过实验降低了生长速率。在生长过程中缩短肌肉的静息长度,与对侧对照肌肉纤维相比,直径的增加速率降低了约50%。直径较小的实验纤维的输入电阻和m.e.j.p.相应更大。然而,实验纤维中的e.j.p.幅度与对侧对照纤维中的幅度没有显著差异。这显然是由于与对照纤维相比,实验纤维活性位点处的量子释放明显较小。因此,肌肉纤维生长速率的实验性改变导致递质释放的调节,这表明肌肉纤维可能控制正常生长过程中所见的递质释放增加。

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