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钙电流、递质释放及电压钳制下小龙虾神经末梢释放的易化作用

Calcium currents, transmitter release and facilitation of release at voltage-clamped crayfish nerve terminals.

作者信息

Wright S N, Brodwick M S, Bittner G D

机构信息

Department of Zoology, University of Texas, Austin 78712, USA.

出版信息

J Physiol. 1996 Oct 15;496 ( Pt 2)(Pt 2):363-78. doi: 10.1113/jphysiol.1996.sp021691.

DOI:10.1113/jphysiol.1996.sp021691
PMID:8910222
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1160883/
Abstract
  1. The presynaptic terminals at crayfish (Procambarus spp.) opener neuromuscular junctions were voltage clamped. Calcium currents were measured during (ICa) and following (tail ICa) presynaptic depolarizations; EPSPs or IPSPs were simultaneously recorded from the (postsynaptic) muscle fibre directly beneath the presynaptic impalement. 2. For short (< or = 6 ms) presynaptic depolarizations, most of the transmitter release occurred during the tail ICa. EPSP or IPSP amplitudes at the end of the 6 ms pulse (end EPSP or end IPSP) increased monotonically with the integral of the ICa ([symbol: see text]ICa). The suppression potential for transmitter release was near the apparent reversal potential for ICa. 3. When the end EPSP or end IPSP amplitude was plotted against the peak ICa elicited during a presynaptic pulse (peak ICa), large and small depolarizations which evoked the same peak ICa evoked different amounts of transmitter release. The differences in transmitter release were eliminated when end EPSP amplitude was plotted against [symbol: see text] ICa, suggesting that transmitter release during a depolarization depends only upon calcium current and not upon a subsequent voltage-dependent step. 4. The synaptic transfer function of various measurements of EPSP or IPSP amplitude vs. [symbol: see text]ICa evoked during a presynaptic depolarization was a power function having an exponent of about 3. Similar measurements of EPSP amplitude vs. [symbol: see text]tail ICa evoked following a presynaptic depolarization had an exponent of about 2. 5. Facilitation of an EPSP or IPSP was not due to increases in calcium current at the test depolarization. 6. When the conditioning depolarization was increased and the test depolarization remained constant, EPSP amplitude at the test depolarization and facilitation increased . When the conditioning depolarization remained constant and the test depolarization was increased, EPSP amplitude at the test depolarization increased, while facilitation decreased. 7. Our data suggested that transmitter release at crayfish neuromuscular junctions is a non-linear function of calcium influx, and that facilitated release utilizes intracellular calcium differently from non-facilitated release. These data contradict simple models of facilitation which combine the residual calcium hypothesis with the calcium co-operativity hypothesis of non-facilitated release.
摘要
  1. 对小龙虾(原螯虾属)开肌神经肌肉接头处的突触前终末进行电压钳制。在突触前去极化期间(ICa)以及之后(尾电流ICa)测量钙电流;同时从突触前刺入点正下方的(突触后)肌纤维记录兴奋性突触后电位(EPSP)或抑制性突触后电位(IPSP)。2. 对于短时间(≤6毫秒)的突触前去极化,大部分递质释放发生在尾电流ICa期间。6毫秒脉冲结束时的EPSP或IPSP幅度(终末EPSP或终末IPSP)随ICa的积分(∫ICa)单调增加。递质释放的抑制电位接近ICa的表观反转电位。3. 当将终末EPSP或终末IPSP幅度与突触前脉冲期间诱发的峰值ICa(峰值ICa)作图时,诱发相同峰值ICa的大、小去极化引起不同量的递质释放。当将终末EPSP幅度与∫ICa作图时,递质释放的差异消除,这表明去极化期间的递质释放仅取决于钙电流,而不取决于随后的电压依赖性步骤。4. 在突触前去极化期间诱发的EPSP或IPSP幅度与∫ICa的各种测量的突触传递函数是一个指数约为3的幂函数。在突触前去极化之后诱发的EPSP幅度与∫尾电流ICa的类似测量的指数约为2。5. EPSP或IPSP的易化并非由于测试去极化时钙电流的增加。6. 当条件性去极化增加而测试去极化保持恒定时,测试去极化时的EPSP幅度和易化增加。当条件性去极化保持恒定而测试去极化增加时,测试去极化时的EPSP幅度增加,而易化减小。7. 我们的数据表明,小龙虾神经肌肉接头处的递质释放是钙内流的非线性函数,并且易化释放与非易化释放利用细胞内钙的方式不同。这些数据与将残余钙假说与非易化释放的钙协同假说相结合的简单易化模型相矛盾。
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91a5/1160883/87c37f2a412b/jphysiol00390-0070-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91a5/1160883/87c37f2a412b/jphysiol00390-0070-a.jpg
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/91a5/1160883/87c37f2a412b/jphysiol00390-0070-a.jpg

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