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Developmental changes in Ca2+/calmodulin-dependent protein kinase II in cultures of hippocampal pyramidal neurons and astrocytes

机译:Ca2 + /钙调蛋白依赖性蛋白激酶II在海马锥体神经元和星形胶质细胞培养物中的发育变化

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摘要

We have analyzed Ca2+/calmodulin-dependent protein kinase II (CaM- kinase II) localization, activity, and endogenous protein substrates during differentiation and synaptogenesis in cultured hippocampal neurons. Primary cultures from hippocampi from 18 d embryonic rats are composed primarily of pyramidal neurons, with minimal contamination by nonneuronal cells. We have used monoclonal (Mab) and affinity-purified polyclonal antibodies that recognize either or both of the subunits of CaM-kinase II in order to localize the enzyme at progressive stages of neuronal differentiation. Diffuse but specific binding, determined by indirect immunofluorescence analyses, was first detected in cell bodies and growth cones of pyramidal neurons after 4 d in culture. Immunoreactivity increased during the next 3 d of culture, at which time fluorescent, labeling was patchy along neuritic processes. By 10 d, intensely fluorescent, discrete spots were observed along processes and on cell bodies. Astrocyte cultures prepared from newborn rat cortex showed no detectable immunofluorescence with anti-CaM-kinase II antibodies. Cytosolic and particulate fractions from cultured pyramidal neurons and astrocytes were analyzed using immunoblot, in vitro phosphorylation, 2-dimensional gel electrophoresis, and phosphopeptide mapping techniques. Although pure astrocyte cultures contained low levels of Ca2+/CaM-stimulated protein kinase activity, they did not display detectable levels of immunoreactive 50 kDa subunit nor 50 and 60 kDa phosphoproteins analogous to the autophosphorylated subunits of CaM-kinase II. Immunoblot analysis detected the 60 kDa kinase subunit in particulate and cytosolic fractions from 2 d neurons. By contrast, the 50 kDa subunit of CaM-kinase II was not detected in cytosolic or particulate fractions of pyramidal neurons before 4 d in culture. In 2 d pyramidal neuron cultures, only low levels of Ca2+/CaM-stimulated protein phosphorylation were observed. Ca2+/CaM-dependent phosphorylation of 10 d pyramidal cell proteins was 3–5-fold greater than that of 2 d cultures, and included major phosphoproteins of 48, 50, 56, 58/60, 80–86, 90, 120, 138, 175, and 190 kDa. Phosphopeptide maps of 58/60 and 50 kDa phosphoproteins gave patterns very similar to those of the autophosphorylated 60 and 50 kDa subunits, respectively, of purified CaM-kinase II. A phosphoprotein doublet of 83 kDa was identified as synapsin I. Developmental changes in Ca2+/CaM-dependent phosphorylation in pyramidal neuron cultures were very similar to those previously described in subcellular fractions from postnatal rat forebrain.
机译:我们已经分析了在培养的海马神经元的分化和突触形成过程中Ca2 + /钙调蛋白依赖性蛋白激酶II(CaM-激酶II)的定位,活性和内源性蛋白底物。来自18天胚胎大鼠海马的原代培养物主要由锥体神经元组成,受非神经元细胞的污染最小。我们已使用单克隆(Mab)和亲和纯化的多克隆抗体来识别CaM激酶II的一个或两个亚基,以便将酶定位在神经元分化的进展阶段。培养4 d后,首先在锥体神经元的细胞体和生长锥中检测到通过间接免疫荧光分析确定的弥漫性但特异性结合。在接下来的3 d的培养过程中,免疫反应性增加,这时荧光标记沿着神经过程散乱。到10 d,沿过程和在细胞体上观察到强烈的荧光离散斑点。从新生大鼠皮层制备的星形胶质细胞培养物未显示出用抗CaM激酶II抗体检测到的免疫荧光。使用免疫印迹,体外磷酸化,二维凝胶电泳和磷酸肽图分析技术分析了培养的锥体神经元和星形胶质细胞的胞质和微粒级分。尽管纯的星形胶质细胞培养物含有低水平的Ca2 + / CaM刺激的蛋白激酶活性,但它们没有显示出可检测水平的类似于CaM激酶II自身磷酸化亚基的50 kDa亚基或50和60 kDa磷蛋白。免疫印迹分析检测到来自2d神经元的颗粒和胞质组分中的60 kDa激酶亚基。相比之下,在培养4 d之前,在锥体神经元的胞质或颗粒级分中未检测到CaM激酶II的50 kDa亚基。在2d锥体神经元培养物中,仅观察到低水平的Ca2 + / CaM刺激的蛋白磷酸化。 Ca 2 + / CaM依赖的10 d锥体细胞蛋白的磷酸化程度是2 d培养物的3-5倍,并且包括48、50、56、58 / 60、80-86、90、120、138等主要磷蛋白,175和190 kDa。 58/60和50 kDa磷蛋白的磷酸肽图分别显示与纯化的CaM激酶II的自磷酸化60和50 kDa亚基非常相似的模式。磷酸化蛋白双峰的83 kDa被鉴定为突触素I。锥体神经元培养物中Ca2 + / CaM依赖性磷酸化的发育变化与出生后大鼠前脑亚细胞组分中先前描述的非常相似。

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