Konev S V, Aksentsev S L, Okun' I M, Merezhinskaia N V, Rakovich A A, Orlov S N, Pokudin N I, Kravtsov G M, Khodorov B I
Biokhimiia. 1989 Jul;54(7):1150-62.
The contribution of Ca2+ channels and Na+/Ca2+ exchange to Ca2+ uptake in rat brain synaptosomes upon long- (t greater than or equal to 30 s) and short-term (t less than 30 s) depolarization by high K+ was studied by measuring the 45Ca content and free Ca2+ concentration (from Quin-2 fluorescence). At 37 degrees C, the system responsible for the K+-stimulated uptake of 45Ca (t greater than or equal to 30 s) and the Na+/Ca+ exchanger are characterized by a similar concentration dependence of external Ca2+ (Ca0(2+] and K0+ as well as by an equal sensitivity to verapamil (Ki = approximately 20-40 microM) and La2+ (Ki = approximately 50 microM). These data and the results from predepolarization suggest that the 45Ca entry into synaptosomes at t greater than or equal to 30 s is due to the activation of Na+/Ca+ exchange caused by its electrogenic component, while the insignificant contribution of Ca2+ channels can be accounted for by their inactivation. At low temperatures (2-4 degrees C) which decelerate the inactivation, the initial phase of 45Ca uptake is fully provided for by Ca2+ channels, showing a lower (as compared to the exchanger) affinity for Ca0(2+) (K0.5 greater than 1 mM)m a greater sensitivity to La3+ (Ki = approximately 0.2-0.3 microM) and verapamil (Ki = approximately 2-3 microM); these channels are fully inactivated by predepolarization with K0+, ouabain and batrachotoxin. The Ca2+ channels can be related to T-type channels, since they are not blocked by nicardipine and niphedipine.
通过测量45Ca含量和游离Ca2+浓度(利用喹啉-2荧光法),研究了高钾引起的大鼠脑突触体在长时程(t≥30 s)和短时程(t<30 s)去极化时Ca2+通道和Na+/Ca2+交换对Ca2+摄取的贡献。在37℃时,负责K+刺激的45Ca摄取(t≥30 s)的系统和Na+/Ca+交换体的特征是对细胞外Ca2+(Ca0(2+))和K0+具有相似的浓度依赖性,并且对维拉帕米(Ki≈20 - 40 μM)和La2+(Ki≈50 μM)具有相同的敏感性。这些数据和预去极化的结果表明,在t≥30 s时45Ca进入突触体是由于其电生成分引起的Na+/Ca+交换的激活,而Ca2+通道的贡献不显著可归因于其失活。在低温(2 - 4℃)下,失活过程减慢,45Ca摄取的初始阶段完全由Ca2+通道提供,其对Ca0(2+)的亲和力较低(与交换体相比)(K0.5>1 mM),对La3+(Ki≈0.2 - 0.3 μM)和维拉帕米(Ki≈2 - 3 μM)更敏感;这些通道可被K0+、哇巴因和蛙毒素预去极化完全失活。这些Ca2+通道可能与T型通道有关,因为它们不受尼卡地平和平尼地平的阻断。