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首页> 外文期刊>Journal of Neurophysiology >Properties of a Ca2+-activated K+ conductance in acutely isolated pyramidal-like neurons from the rat basolateral amygdaloid complex.
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Properties of a Ca2+-activated K+ conductance in acutely isolated pyramidal-like neurons from the rat basolateral amygdaloid complex.

机译:从大鼠基底外侧杏仁核复合体急性分离的锥体状神经元中,Ca2 +激活的K +电导的特性。

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摘要

A calcium (Ca2+)-activated potassium (K+) conductance was studied in large pyramidal-like neurons acutely dissociated from the rat basolateral amygdaloid complex. Neurons were immunoreactive to anti-alpha(913-926), a sequence-directed antibody directed against the pore-forming alpha-subunit of the BK(Ca) channel, also termed slo. Whole cell current-voltage (I-V) relationships obtained on application of slow (46.7 mV/s) voltage ramps from -110 to +100 mV were N shaped positive to -30 mV. Maximal current activation occurred at +9.8 +/- 2.7 (SE) mV, with a mean current density of 404.8 +/- 25.0 pA/pF. Substitution of extracellular Ca2+ with manganese (Mn2+), or with magnesium (Mg2+) and addition of 5 mM ethyleneglycol-bis (beta-aminoethylether)-N,N,N',N'-tetraacetic acid, abolished the N-shaped I-V relationship with a reduction in maximal outward current to 15.3 +/- 2.3% of the control value. The Ca2+-sensitive K+ current component, as revealed by voltage step protocols, activated at depolarizations positive to -30 mV with a slow time course (time constant 430.7 +/- 78.6 ms). The current was reduced by 80.4 +/- 4.6% through 1 mM tetraethyammonium chloride and by 66.8 +/- 3.4% through 100 nM iberiotoxin, whereas apamin up to 1 microM had no effect. It is concluded that pyramidal-like neurons of the basolateral amygdaloid complex possess BK(Ca) channels and the corresponding macroscopic Ca2+-sensitive K+ conductance, activation of which will substantially contribute to the Ca2+-dependent regulation of electrogenic behavior in these neurons.
机译:钙(Ca2 +)激活的钾(K +)的电导率在与大鼠基底外侧杏仁核复合体急性分离的大型锥体状神经元中进行了研究。神经元对anti-alpha(913-926)具有免疫反应性,anti-alpha(913-926)是一种针对BK(Ca)通道的成孔α-亚基的序列定向抗体,也称为slo。施加从-110到+100 mV的缓慢(46.7 mV / s)电压斜坡后获得的全电池电流-电压(I-V)关系呈N形,正值至-30 mV。最大电流激活发生在+9.8 +/- 2.7(SE)mV,平均电流密度为404.8 +/- 25.0 pA / pF。用锰(Mn2 +)或镁(Mg2 +)代替细胞外Ca2 +,并添加5 mM乙二醇双(β-氨基乙基醚)-N,N,N',N'-四乙酸,消除了N型IV关系最大向外电流降低到控制值的15.3 +/- 2.3%。电压阶跃协议揭示了对Ca2 +敏感的K +电流分量,该信号在去极化至-30 mV时以缓慢的时间过程(时间常数430.7 +/- 78.6 ms)激活。通过1 mM氯化四乙铵,电流降低了80.4 +/- 4.6%,通过100 nM iberiotoxin降低了66.8 +/- 3.4%,而直到1 microM的木瓜蛋白酶都没有效果。结论是,基底外侧杏仁核复合体的锥体状神经元具有BK(Ca)通道和相应的宏观Ca2 +敏感K +电导,其激活将大大有助于这些神经元中Ca2 +依赖性的电行为的调节。

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