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向新纹状体或海马体注射[32P]正磷酸盐后的体内磷酸化:对电泳分离的脑蛋白进行选择性快速标记。

In vivo phosphorylation following [32P]orthophosphate injection into neostriatum or hippocampus: selective and rapid labeling of electrophoretically separated brain proteins.

作者信息

Mitrius J C, Morgan D G, Routtenberg A

出版信息

Brain Res. 1981 May 11;212(1):67-81. doi: 10.1016/0006-8993(81)90033-0.

Abstract

Intracranial injections of [32P]orthophosphate readily label a number of brain phosphoproteins as resolved by polyacrylamide gel electrophoresis. The majority of these in vivo labeled phosphoproteins co-migrate with phosphoproteins that are labeled in vitro by incubation of brain membranes with [32P]ATP. Two of the major in vitro labeled phosphoproteins with apparent molecular weights of 47,000 (band F1) and 41,000 (band F2) are rapidly labeled in vivo. Since they are rapidly dephosphorylated in vitro, this suggests a high rate of phosphate turnover. The electrophoretic pattern of in vivo labeled phosphoproteins did not appear to be altered by the method of sacrifice (focused microwave irradiation, decapitation or liquid nitrogen immersion) or by the state of the animal at the time of labeling (awake or lightly anesthetized with pentobarbital). The reduction of phosphatase activity during tissue processing at 0 degree C may account for the similarities observed with different sacrifice methods. Removal of phospholipids or polynucleotides had little effect on the in vivo labeled 32P-containing bands. However, alkaline hydrolysis or protease treatment uniformly reduced the radioactivity in the labeled bands. These findings suggest that the 32P-containing bands consist of phosphoester linkages to serine or threonine residues. The present evidence emphasizes that previously characterized in vitro labeled brain phosphoproteins are, in fact, labeled in the awake, freely-moving animal.

摘要

颅内注射[32P]正磷酸盐后,通过聚丙烯酰胺凝胶电泳可轻松标记多种脑磷蛋白。这些体内标记的磷蛋白中的大多数与通过将脑膜与[32P]ATP孵育在体外标记的磷蛋白共迁移。两种主要的体外标记磷蛋白,表观分子量分别为47,000(F1带)和41,000(F2带),在体内被快速标记。由于它们在体外被快速去磷酸化,这表明磷酸周转速率很高。体内标记的磷蛋白的电泳图谱似乎不受处死方法(聚焦微波辐射、断头或液氮浸没)或标记时动物状态(清醒或用戊巴比妥轻度麻醉)的影响。在0℃组织处理过程中磷酸酶活性的降低可能解释了不同处死方法所观察到的相似性。去除磷脂或多核苷酸对体内标记的含32P条带影响很小。然而,碱性水解或蛋白酶处理会均匀降低标记条带中的放射性。这些发现表明,含32P的条带由与丝氨酸或苏氨酸残基的磷酸酯键组成。目前的证据强调,先前表征的体外标记脑磷蛋白实际上在清醒、自由活动的动物中被标记。

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