Knaus H G, Schwarzer C, Koch R O, Eberhart A, Kaczorowski G J, Glossmann H, Wunder F, Pongs O, Garcia M L, Sperk G
Institut für Biochemische Pharmakologie, Innsbruck, Austria.
J Neurosci. 1996 Feb 1;16(3):955-63. doi: 10.1523/JNEUROSCI.16-03-00955.1996.
Tissue expression and distribution of the high-conductance Ca(2+)-activated K+ channel Slo was investigated in rat brain by immunocytochemistry, in situ hybridization, and radioligand binding using the novel high-affinity (Kd 22 pM) ligand [3H]iberiotoxin-D19C ([3H]IbTX-D19C), which is an analog of the selective maxi-K peptidyl blocker IbTX. A sequence-directed antibody directed against Slo revealed the expression of a 125 kDa polypeptide in rat brain by Western blotting and precipitated the specifically bound [3H]IbTX-D19C in solubilized brain membranes. Slo immunoreactivity was highly concentrated in terminal areas of prominent fiber tracts: the substantia nigra pars reticulata, globus pallidus, olfactory system, interpeduncular nucleus, hippocampal formation including mossy fibers and perforant path terminals, medial forebrain bundle and pyramidal tract, as well as cerebellar Purkinje cells. In situ hybridization indicated high levels of Slo mRNA in the neocortex, olfactory system, habenula, striatum, granule and pyramidal cell layer of the hippocampus, and Purkinje cells. The distribution of Slo protein was confirmed in microdissected brain areas by Western blotting and radioligand-binding studies. The latter studies also established the pharmacological profile of neuronal Slo channels. The expression pattern of Slo is consistent with its targeting into a presynaptic compartment, which implies an important role in neural transmission.
利用新型高亲和力(解离常数Kd为22皮摩尔)配体[3H]埃博毒素-D19C([3H]IbTX-D19C),它是选择性大电导钙激活钾通道阻滞剂埃博毒素(IbTX)的类似物,通过免疫细胞化学、原位杂交和放射性配体结合实验,研究了大鼠脑中高电导钙激活钾通道Slo的组织表达和分布情况。一种针对Slo的序列特异性抗体通过蛋白质免疫印迹法显示大鼠脑中存在一种125 kDa的多肽表达,并在溶解的脑细胞膜中沉淀出特异性结合的[3H]IbTX-D19C。Slo免疫反应性高度集中在主要纤维束的终末区域:黑质网状部、苍白球、嗅觉系统、脚间核、包括苔藓纤维和穿通通路终末的海马结构、内侧前脑束和锥体束,以及小脑浦肯野细胞。原位杂交表明,新皮层、嗅觉系统、缰核、纹状体、海马颗粒细胞层和锥体细胞层以及浦肯野细胞中Slo mRNA水平较高。通过蛋白质免疫印迹法和放射性配体结合研究在显微切割的脑区中证实了Slo蛋白的分布。后者的研究还确定了神经元Slo通道的药理学特征。Slo的表达模式与其定位于突触前区室一致,这意味着它在神经传递中起重要作用。