Parnas Hanna, Valle-Lisboa J-C, Segel Lee A
Department of Neurobiology, Hebrew University, Jerusalem 91904, Israel.
Proc Natl Acad Sci U S A. 2002 Dec 24;99(26):17149-54. doi: 10.1073/pnas.242549999. Epub 2002 Dec 16.
It is well established that Ca2+ plays a key role in promoting the physiological depolarization-induced release (DIR) of neurotransmitters from nerve terminals (Ca2+ hypothesis). Yet, evidence has accumulated for the Ca2+-voltage hypothesis, which states that not only is Ca2+ required, but membrane potential as such also plays a pivotal role in promoting DIR. An essential aspect of the Ca2+-voltage hypothesis is that it is depolarization that is responsible for the initiation of release. This assertion seems to be contradicted by recent experiments wherein release was triggered by high concentrations of intracellular Ca2+ in the absence of depolarization [calcium-induced release (CIR)]. Here we show that there is no contradiction between CIR and the Ca2+-voltage hypothesis. Rather, CIR can be looked at as a manifestation of spontaneous release under conditions of high intracellular Ca2+ concentration. Spontaneous release in turn is governed by a subset of the molecular scheme for DIR, under conditions of no depolarization. Prevailing estimates for the intracellular calcium concentration, [Ca2+]i, in physiological DIR rely on experiments under conditions of CIR. Our theory suggests that these estimates are too high, because depolarization is absent in these experiments and [Ca2+]i is held at high levels for an extended period.
Ca2+在促进神经末梢神经递质的生理性去极化诱导释放(DIR)中起关键作用,这一点已得到充分证实(Ca2+假说)。然而,Ca2+ - 电压假说的证据也在不断积累,该假说认为不仅需要Ca2+,膜电位本身在促进DIR中也起着关键作用。Ca2+ - 电压假说的一个重要方面是去极化是释放起始的原因。这一断言似乎与最近的实验相矛盾,在这些实验中,在没有去极化的情况下,高浓度的细胞内Ca2+触发了释放[钙诱导释放(CIR)]。在这里,我们表明CIR与Ca2+ - 电压假说之间并不矛盾。相反,CIR可以被视为在高细胞内Ca2+浓度条件下自发释放的一种表现。在没有去极化的条件下,自发释放又受DIR分子机制的一个子集的控制。生理DIR中细胞内钙浓度[Ca2+]i的普遍估计依赖于CIR条件下的实验。我们的理论表明,这些估计值过高,因为这些实验中没有去极化,且[Ca2+]i长时间保持在高水平。