Sulakhe P V
Can J Physiol Pharmacol. 1985 Aug;63(8):1007-16. doi: 10.1139/y85-166.
Interactions of several divalent cations (Mn2+, Ca2+, Co2+, Sr2+, and Zn2+) with EGTA-inhibitable adenylate cyclase were investigated in washed membranes (particles) isolated from the gray matter of rat cerebral cortex. The EGTA-inhibitable (called sensitive) enzyme activity was assayed in the presence of Triton X-100 since this detergent caused a marked increase (up to 20-fold) in the enzyme activity. The effects of various divalent metals (all added as chloride salt) indicated the presence of two distinct sites called site I and site II. At low concentrations (less than micromolar) Mn2+, Co2+, and Ca2+ increased (up to 10-fold) the enzyme activity to the same extent and appeared to act via binding to site I (high affinity site). The rank order of affinity was Mn2+ greater than or equal to Co2+ greater than Ca2+. Zn2+ showed the highest affinity and Sr2+ the lowest towards binding to site I; both these metals increased the enzyme activity to lesser extents than Mn2+, Co2+, or Ca2+. GTP was not required for the stimulation of this enzyme by low concentrations of Ca2+. The interaction of Mn2+ with site II (low affinity site) caused further increase in the enzyme activity, whereas Co2+, Ca2+, and Sr2+ were inhibitory at concentrations greater than 10 microM. Isolated fraction contained loosely and tightly associated pools of calmodulin. Myelin basic protein, but not calcineurin, inhibited the EGTA-sensitive adenylate cyclase activity. The EGTA-insensitive enzyme activity was increased by norepinephrine by mechanisms that depended on GTP and was inhibited by Ca2+. The stimulation of the EGTA-insensitive enzyme modulated the Mg2+ requirement such that Mg2+ binding to the low affinity site (site II) apparently occurred with higher affinity. The likely significance of these results is discussed with regard to (i) the presence of two classes of adenylate cyclase in rat cerebral cortex gray matter and (ii) the regulation of their activities by calmodulin-requiring and GTP-requiring mechanisms.
在从大鼠大脑皮层灰质分离得到的洗涤膜(微粒)中,研究了几种二价阳离子(Mn2+、Ca2+、Co2+、Sr2+和Zn2+)与EGTA可抑制的腺苷酸环化酶的相互作用。由于Triton X-100这种去污剂能使酶活性显著增加(高达20倍),因此在其存在的情况下测定了EGTA可抑制(称为敏感)的酶活性。各种二价金属(均以氯化物盐形式添加)的作用表明存在两个不同的位点,称为位点I和位点II。在低浓度(小于微摩尔)时,Mn2+、Co2+和Ca2+同等程度地增加(高达10倍)酶活性,并且似乎通过与位点I(高亲和力位点)结合起作用。亲和力的顺序为Mn2+≥Co2+>Ca2+。Zn2+显示出对位点I结合的最高亲和力,而Sr2+最低;这两种金属使酶活性增加的程度均小于Mn2+、Co2+或Ca2+。低浓度的Ca2+刺激该酶不需要GTP。Mn2+与位点II(低亲和力位点)的相互作用导致酶活性进一步增加,而Co2+、Ca2+和Sr2+在浓度大于10μM时具有抑制作用。分离的组分包含松散结合和紧密结合的钙调蛋白池。髓鞘碱性蛋白而非钙调神经磷酸酶抑制EGTA敏感的腺苷酸环化酶活性。EGTA不敏感的酶活性通过依赖GTP的机制被去甲肾上腺素增加,并被Ca2+抑制。对EGTA不敏感酶的刺激调节了对Mg2+的需求,使得Mg2+与低亲和力位点(位点II)的结合显然以更高的亲和力发生。关于(i)大鼠大脑皮层灰质中两类腺苷酸环化酶的存在以及(ii)通过需要钙调蛋白和需要GTP的机制对其活性的调节,讨论了这些结果可能的意义。