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脑突触连接处的环磷酸腺苷刺激蛋白激酶

Cyclic AMP-stimulated protein kinases at brain synaptic junctions.

作者信息

Kelly P T, Cotman C W, Largen M

出版信息

J Biol Chem. 1979 Mar 10;254(5):1564-75.

PMID:216697
Abstract

We have examined endogenous cyclic AMP-stimulated phosphorylation of subcellular fractions of rat brain enriched in synaptic plasma membranes (SPM), purified synaptic junctions (SJ), and postsynaptic densities (PSD). The analyses of these fractions are essential to provide direct evidence for cyclic AMP-dependent endogenous phosphorylation at discrete synaptic junctional loci. Protein kinase activity was measured in subcellular fractions using both endogenous and exogenous (histones) proteins as substrates. The SJ fraction possessed the highest kinase activity toward endogenous protein substrates, 5-fold greater than SPM and approximately 120-fold greater than PSD fractions. Although the kinase activity as measured with histones as substrates was only slightly higher in SJ than SPM fractions, there was a marked preference of kinase activity toward endogenous compared to exogenous substrates in SJ fractions but in SPM fractions. Although overall phosphorylation in SJ fractions was increased only 36% by 5 micron cyclic AMP, there were discrete proteins of Mr = 85,000, 82,000, 78,000, and 55,000 which incorporated 2- to 3-fold more radioactive phosphate in the presence of cyclic AMP. Most, if not all, of the cyclic AMP-independent kinase activity is probably catalyzed by catalytic subunit derived from cyclic AMP-dependent kinase, since the phosphorylation of both exogenous and endogenous proteins was greatly decreased in the presence of a heat-stable inhibitor protein prepared from the soluble fraction of rat brain. The specific retention of SJ protein kinase(s) activity during purification and their resistance to detergent solubilization was achieved by chemical treatments which produce interprotein cross-linking via disulfide bridges. Two SJ polypeptides of Mr = 55,000 and 49,000 were photoaffinity-labeled with [32P]8-N3-cyclic AMP and probably represent the regulatory subunits of the type I and II cyclic AMP-dependent protein kinases. The protein of Mr = 55,000 was phosphorylated in a cyclic AMP-stimulated manner suggesting autophosphorylation as previously observed in other systems.

摘要

我们检测了大鼠脑内富含突触质膜(SPM)、纯化的突触连接(SJ)和突触后致密物(PSD)的亚细胞组分的内源性环磷酸腺苷(cAMP)刺激的磷酸化作用。对这些组分的分析对于提供离散突触连接位点处cAMP依赖性内源性磷酸化的直接证据至关重要。使用内源性和外源性(组蛋白)蛋白质作为底物,在亚细胞组分中测量蛋白激酶活性。SJ组分对内源性蛋白质底物具有最高的激酶活性,比SPM高5倍,比PSD组分高约120倍。虽然以组蛋白为底物测量的激酶活性在SJ中仅比SPM组分略高,但与外源性底物相比,SJ组分中激酶活性对内源性底物有明显偏好,而SPM组分中则不然。虽然SJ组分中的总体磷酸化仅因5微摩尔cAMP而增加36%,但有分子量为85,000、82,000、78,000和55,000的离散蛋白质,在cAMP存在下掺入的放射性磷酸盐多2至3倍。大多数(如果不是全部)不依赖cAMP的激酶活性可能由源自cAMP依赖性激酶的催化亚基催化,因为在存在从大鼠脑可溶性组分制备的热稳定抑制蛋白的情况下,外源性和内源性蛋白质的磷酸化都大大降低。通过化学处理实现了SJ蛋白激酶活性在纯化过程中的特异性保留及其对去污剂溶解的抗性,该化学处理通过二硫键产生蛋白质间交联。两种分子量为55,000和49,000的SJ多肽用[32P]8-N3-cAMP进行光亲和标记,可能代表I型和II型cAMP依赖性蛋白激酶的调节亚基。分子量为55,000的蛋白质以cAMP刺激的方式磷酸化,表明如先前在其他系统中观察到的自磷酸化。

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