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受钠钙交换和钾离子去极化影响的突触体[钙离子]i

Synaptosomal [Ca2+]i as influenced by Na+/Ca2+ exchange and K+ depolarization.

作者信息

Duarte C B, Carvalho C A, Ferreira I L, Carvalho A P

机构信息

Department of Zoology, University of Coimbra, Portugal.

出版信息

Cell Calcium. 1991 Oct;12(9):623-33. doi: 10.1016/0143-4160(91)90059-n.

DOI:10.1016/0143-4160(91)90059-n
PMID:1659947
Abstract

The modulation of the intrasynaptosomal concentration of Ca2+, [Ca2+]i, by Na+/Ca2+ exchange was studied using Indo-1 fluorescence. The electrochemical gradient of Na+ was manipulated by substituting Li+ or choline for Na+ in the external medium and, then, the influx of 45Ca2+ and the [Ca2+]i were measured. It was found that the increase in [Ca2+]i induced by K+ depolarization is lower if the value of [Ca2+]i has been previously raised by Na+/Ca2+ exchange, suggesting that Ca2+ entering by Na+/Ca2+ exchange reduces the Ca2+ entering by voltage-dependent calcium channels. Our results show that a value of [Ca2+]i of about 650 nM induced by Na+/Ca2+ exchange reduces by 50% the Ca2+ entering due to K+ depolarization and no Ca2+ enters through the channels if the [Ca2+]i is previously raised above about 800 nM. Furthermore, predepolarization of the synaptosomes in a Ca-free medium also inhibits by at least 40% the [Ca2+]i rise through Ca2+ channels. Thus, the results suggest that both predepolarization and [Ca2+]i rise due to Na+/Ca2+ exchange decrease the Ca2+ entering by voltage-sensitive Ca2+ channels. The Ca2+ entering by Na+/Ca2+ exchange might contribute to the regulation of neurotransmitter release. Our results also show that the presence of Li+ in the external medium decreases the buffering capacity of synaptosomes, probably by releasing Ca2+ from mitochondria by Li+/Ca2+ exchange.

摘要

利用Indo-1荧光研究了钠钙交换对突触小体内Ca2+浓度([Ca2+]i)的调节作用。通过用Li+或胆碱替代细胞外介质中的Na+来操纵Na+的电化学梯度,然后测量45Ca2+的内流和[Ca2+]i。结果发现,如果[Ca2+]i的值先前已通过钠钙交换升高,那么由K+去极化诱导的[Ca2+]i的增加会更低,这表明通过钠钙交换进入的Ca2+会减少通过电压依赖性钙通道进入的Ca2+。我们的结果表明,由钠钙交换诱导的约650 nM的[Ca2+]i值可使因K+去极化而进入的Ca2+减少50%,并且如果[Ca2+]i先前升高到约800 nM以上,则没有Ca2+通过通道进入。此外,在无钙介质中对突触小体进行预去极化也会使通过钙通道的[Ca2+]i升高至少抑制40%。因此,结果表明预去极化和因钠钙交换导致的[Ca2+]i升高都会减少通过电压敏感钙通道进入的Ca2+。通过钠钙交换进入的Ca2+可能有助于神经递质释放的调节。我们的结果还表明,细胞外介质中Li+的存在会降低突触小体的缓冲能力,这可能是通过Li+/Ca2+交换从线粒体中释放Ca2+所致。

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