Tessari M, Rahamimoff H
Department of Biochemistry, Hebrew University-Hadassah Medical School, Jerusalem, Israel.
Biochim Biophys Acta. 1991 Jul 22;1066(2):208-18. doi: 10.1016/0005-2736(91)90188-e.
Synaptic plasma membranes obtained by hypo-osmotic treatment of purified Torpedo ocellata synaptosomes, contain an electrogenic Na(+)-Ca2+ exchange system. The dependence of the initial reaction rate on [Ca2+] reveals a single binding site for Ca2+ with an average apparent Km of 13.66 (S.D. = 12.07) microM [Ca2+] and maximal reaction velocity of Vmax = 11.33 (S.D. = 5.93) nmol/mg protein per s. The dependence of the initial rate of the Na+ gradient dependent Ca2+ influx on the internal [Na+] exhibits a sigmoidal curve which reaches half-maximal reaction rate at 170.8 (S.D. = 19.9) mM [Na+]. Addition of ATP gamma S does not change the K0.5 to Na+. The average Hill coefficient is 3.09 (S.D. = 0.86) indicating that 3-4 Na+ ions are exchanged for each Ca2+. Na+ gradient dependent Ca2+ uptake in Torpedo SPMs takes place also in the absence of K+ suggesting that K+ co-transport is not obligatory. The temperature dependence of the initial and steady-state rates of Na+ gradient dependent Ca2+ influx reveal that maximal reaction velocities of the Torpedo exchanger are attained between 15 and 20 degrees C. The energy of activation between 0 and 20 degrees C is 20,826 cal/mol. In comparison, rat brain synaptic plasma membrane Na(+)-Ca2+ exchanger reaches maximal reaction rates between 30 and 40 degrees C. Reconstitution of Torpedo or rat brain Na(+)-Ca2+ exchangers into a membrane composed of either Torpedo or brain phospholipids, does not alter the temperature dependence of the native Torpedo or rat brain Na(+)-Ca2+ exchangers; inspite of considerable differences in the composition of the fatty acyl chains that are esterified to brain and Torpedo phospholipid head groups and differences in membrane fluidity that were detected. An ATP-dependent Ca2+ pump, which is insensitive to FCCP, is also present in the same synaptic membrane.
通过对纯化的眼斑电鳐突触体进行低渗处理获得的突触质膜,含有一种生电的Na(+)-Ca2+交换系统。初始反应速率对[Ca2+]的依赖性揭示了Ca2+的一个单一结合位点,其平均表观Km为13.66(标准差 = 12.07)微摩尔[Ca2+],最大反应速度Vmax = 11.33(标准差 = 5.93)纳摩尔/毫克蛋白质每秒。Na+梯度依赖性Ca2+内流的初始速率对内部[Na+]的依赖性呈现出一条S形曲线,在170.8(标准差 = 19.9)毫摩尔[Na+]时达到最大反应速率的一半。添加ATPγS不会改变对Na+的K0.5。平均希尔系数为3.09(标准差 = 0.86),表明每交换1个Ca2+会有3 - 4个Na+离子。眼斑电鳐突触质膜中Na+梯度依赖性Ca2+摄取在没有K+的情况下也会发生,这表明K+共转运不是必需的。Na+梯度依赖性Ca2+内流的初始和稳态速率的温度依赖性表明,眼斑电鳐交换体的最大反应速度在15至20摄氏度之间达到。0至20摄氏度之间的活化能为20,826卡/摩尔。相比之下,大鼠脑突触质膜Na(+)-Ca2+交换体在30至40摄氏度之间达到最大反应速率。将眼斑电鳐或大鼠脑Na(+)-Ca2+交换体重构成由眼斑电鳐或脑磷脂组成的膜,不会改变天然眼斑电鳐或大鼠脑Na(+)-Ca2+交换体的温度依赖性;尽管在与脑和眼斑电鳐磷脂头部基团酯化的脂肪酰链组成以及检测到的膜流动性方面存在相当大的差异。一种对FCCP不敏感的ATP依赖性Ca2+泵也存在于同一突触膜中。