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随着年龄增长,突触体中钾离子刺激的45Ca2+内流减少涉及失活和非失活钙通道,并且与蛋白质去磷酸化的时间变化相关。

Reduction of K+-stimulated 45Ca2+ influx in synaptosomes with age involves inactivating and noninactivating calcium channels and is correlated with temporal modifications in protein dephosphorylation.

作者信息

Martínez-Serrano A, Bogónez E, Vitórica J, Satrústegui J

机构信息

Departamento de Biología Molecular, CSIC-Universidad Autónoma de Madrid, Spain.

出版信息

J Neurochem. 1989 Feb;52(2):576-84. doi: 10.1111/j.1471-4159.1989.tb09158.x.

Abstract

The voltage-dependent calcium uptake in rat brain synaptosomes was measured under conditions in which [Ca2+]o/[Na+]i exchange was minimized to characterize the voltage-sensitive calcium channels from rats of different ages. In solutions of CaCl2 concentrations of less than 500 microM, the initial (5-s) calcium uptake declined by approximately 20-50% in 12- and 24-month-old rats relative to 3-month-old adults. Depolarization of synaptosomes from 3-month-old rats in a calcium-free medium or in the presence of 0.5 mM CaCl2 led to an exponential decline of the calcium uptake rate after 20 s (voltage- or voltage-and-calcium-dependent inactivation) to approximately 66 and 34% of the initial value with a t1/2 of 1.6 or 0.7 s, respectively. The presence of 1 microM nifedipine resulted in a 15-25% reduction of 45Ca2+ uptake rates, which appeared to affect noninactivating calcium channels, but addition of the calcium channel agonist Bay K 8644 was without effect. In 24-month-old rats, inactivation of 45Ca2+ uptake in calcium-free media was nondetectable, and in the presence of 0.5 mM CaCl2, the rate and extent of inactivation were also much lower than in 3-month-old animals (the t1/2 was 0.9 s, and the calcium uptake rate at 20 s was 55% of its initial value). Moreover, the presence of 1 microM nifedipine was without effect on initial calcium uptake or inactivation in synaptosomes from 24-month-old rats. These results indicate that the decrease in calcium channel-mediated 45Ca2+ uptake involves an inhibition or block of both dihydropyridine-resistant and -sensitive calcium channels.(ABSTRACT TRUNCATED AT 250 WORDS)

摘要

在使[Ca2+]o/[Na+]i交换最小化的条件下,测量大鼠脑突触体中电压依赖性钙摄取,以表征不同年龄大鼠的电压敏感性钙通道。在氯化钙浓度低于500微摩尔的溶液中,相对于3个月大的成年大鼠,12个月和24个月大的大鼠的初始(5秒)钙摄取量下降了约20-50%。在无钙培养基中或存在0.5毫摩尔氯化钙的情况下,3个月大的大鼠突触体去极化导致20秒后钙摄取率呈指数下降(电压或电压和钙依赖性失活),分别降至初始值的约66%和34%,t1/2分别为1.6秒或0.7秒。1微摩尔硝苯地平的存在导致45Ca2+摄取率降低15-25%,这似乎影响非失活钙通道,但添加钙通道激动剂Bay K 8644没有效果。在24个月大的大鼠中,在无钙培养基中45Ca2+摄取的失活无法检测到,并且在存在0.5毫摩尔氯化钙的情况下,失活的速率和程度也远低于3个月大的动物(t1/2为0.9秒,20秒时的钙摄取率为其初始值的55%)。此外,1微摩尔硝苯地平的存在对24个月大的大鼠突触体中的初始钙摄取或失活没有影响。这些结果表明,钙通道介导的45Ca2+摄取减少涉及对二氢吡啶抗性和敏感性钙通道的抑制或阻断。(摘要截短于250字)

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