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肌醇三磷酸(InsP3)介导的细胞内钙库中钙离子的量子释放:腔内钙离子对钙离子释放的控制概念的验证。

Quantal release of Ca2+ from intracellular stores by InsP3: tests of the concept of control of Ca2+ release by intraluminal Ca2+.

作者信息

Tregear R T, Dawson A P, Irvine R F

机构信息

AFRC Institute of Animal Physiology and Genetics Research, Babraham, Cambridge, U.K.

出版信息

Proc Biol Sci. 1991 Mar 22;243(1308):263-8. doi: 10.1098/rspb.1991.0040.

DOI:10.1098/rspb.1991.0040
PMID:1675803
Abstract

A possible mechanism for the generation of 'quantal' release of intracellular Ca2+ by InsP3 (Muallem et al., J. biol. Chem. 264, 205-212 (1989)) has been put forward in which intraluminal Ca2+ levels modulate InsP3 receptor structure (Irvine, FEBS Lett. 263, 5-9 (1990)). Here we have modelled such a steady-state mechanism, with an InsP3-sensitive store plus an InsP3-insensitive one, to test its ability to mimic published data. We have also performed experiments on InsP3-stimulated rat liver microsomes to test whether the model is consistent with one-way Ca2+ fluxes at a steady state. The model can simulate quantal release, in that InsP3 produces a release of part of the stored Ca2+ which is initially rapid relative to the one-way flux. In the original form of the model, in which InsP3-modulated Ca2+ binding to the intraluminal site opens the Ca2+ channel, the range of InsP3 concentrations needed to release Ca2+ is greater than that observed. When the model is changed so that Ca2(+)-modulated InsP3 binding opens the channels, the effective InsP3 range is shortened, but the quantal release effect is reduced. Other published data on one-way fluxes, and our own data on microsomes, can be simulated when leakage from the InsP3-insensitive store is adjusted to fit the observations; these data therefore do not test the existence of a steady state in the InsP3-sensitive store. We conclude that sensitivity of Ca2+ release to intraluminal Ca2+ provides a steady-state explanation of most, but not all, current quantal release observations.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

有人提出了一种由肌醇三磷酸(InsP3)引发细胞内钙离子“量子化”释放的可能机制(Muallem等人,《生物化学杂志》264卷,205 - 212页(1989年)),其中腔内钙离子水平调节InsP3受体结构(Irvine,《欧洲生物化学学会联合会快报》263卷,5 - 9页(1990年))。在此,我们构建了这样一种稳态机制模型,该模型包含一个对InsP3敏感的储存库和一个对InsP3不敏感的储存库,以测试其模拟已发表数据的能力。我们还对InsP3刺激的大鼠肝脏微粒体进行了实验,以检验该模型是否与稳态下的单向钙离子通量一致。该模型能够模拟量子化释放,即InsP3会使部分储存的钙离子释放,相对于单向通量而言,最初这种释放是快速的。在模型的原始形式中,InsP3调节钙离子与腔内位点的结合从而打开钙离子通道,此时释放钙离子所需的InsP3浓度范围大于所观察到的范围。当对模型进行修改,使钙离子调节的InsP3结合打开通道时,有效的InsP3范围缩短了,但量子化释放效应却降低了。当调整对InsP3不敏感储存库的渗漏情况以符合观察结果时,可以模拟其他已发表的关于单向通量的数据以及我们自己关于微粒体的数据;因此,这些数据并不能检验InsP3敏感储存库中稳态的存在。我们得出结论,钙离子释放对腔内钙离子的敏感性为当前大多数但并非全部的量子化释放观察结果提供了一种稳态解释。(摘要截短至250字)

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