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突触后膜特化结构的蛋白质成分是在局部合成的证据:突触连接处新合成蛋白质出现的时间进程。

Evidence that protein constituents of postsynaptic membrane specializations are locally synthesized: time course of appearance of recently synthesized proteins in synaptic junctions.

作者信息

Steward O, Pollack A, Rao A

机构信息

Department of Neuroscience, University of Virginia Health Sciences Center, Charlottesville 22908.

出版信息

J Neurosci Res. 1991 Dec;30(4):649-60. doi: 10.1002/jnr.490300408.

Abstract

Previous studies have led to the hypothesis that some protein constituents of postsynaptic membrane specializations are locally synthesized near postsynaptic sites. The present study focuses on one prediction of this hypothesis, specifically, that if some proteins of the postsynaptic membrane specialization are locally synthesized, then the delay between synthesis and assembly into synaptic junctional membrane could be short. We evaluate the time course of appearance of recently synthesized protein in synaptic junctions by pulse-labeling hippocampal slices maintained in vitro with radiolabeled protein precursors, and then isolating subcellular fractions enriched in synaptic plasma membranes (SPM) and synaptic junctional complexes (SJC). We report that there is no evidence of a delay in the appearance of recently synthesized proteins in SPM and SJC fractions. Labeled proteins could be detected as early as 15 min after the initiation of the pulse-labeling period, and the extent of labeling increased monotonically thereafter. The labeling could not be accounted for by contamination of synaptic membrane fractions with other membranes, because the relative specific activity of the SPM and SJC fractions was the same or higher than that of the less pure fractions from which these synaptic fractions were derived. One-dimensional PAGE-fluorography was used to provide an initial characterization of which proteins were labeled in SJC fractions. We found that the most prominent labeled bands were at apparent molecular weights of approximately 43-44, 55-56, and 60 kd, with more lightly labeled bands at about 38 and 116 kd. In some preparations, there was a labeled doublet at about 36-38 kd. There were also other lightly labeled bands at other molecular weights. These bands were much less heavily labeled than the bands at 43-44, 55-56, and 60 kd, however. There was little labeling in the molecular weight range of the "major psd protein" (the alpha subunit of CAM-kinase), although there was diffuse labeling throughout the 45-52 kd region. These results are consistent with the hypothesis that some of the protein constituents of the postsynaptic junctional complex are synthesized by polyribosomes which are selectively localized beneath synaptic junctions.

摘要

先前的研究提出了一个假说,即突触后膜特化结构的一些蛋白质成分是在突触后位点附近局部合成的。本研究聚焦于该假说的一个预测,具体而言,即如果突触后膜特化结构的一些蛋白质是局部合成的,那么从合成到组装进突触连接膜的延迟可能很短。我们通过用放射性标记的蛋白质前体对体外培养的海马切片进行脉冲标记,然后分离富含突触质膜(SPM)和突触连接复合体(SJC)的亚细胞组分,来评估突触连接中最近合成蛋白质出现的时间进程。我们报告称,没有证据表明SPM和SJC组分中最近合成的蛋白质出现存在延迟。在脉冲标记期开始后15分钟就可以检测到标记的蛋白质,此后标记程度单调增加。这种标记不能用突触膜组分被其他膜污染来解释,因为SPM和SJC组分的相对比活性与从中衍生出这些突触组分的纯度较低的组分相同或更高。一维PAGE-荧光自显影用于初步表征SJC组分中哪些蛋白质被标记。我们发现最明显的标记条带的表观分子量约为43 - 44、55 - 56和60kd,约38和116kd处的条带标记较浅。在一些制备物中,约36 - 38kd处有一个标记的双峰。在其他分子量处也有其他标记较浅的条带。然而,这些条带的标记程度远低于43 - 44、55 - 56和60kd处的条带。在“主要的突触后致密蛋白”(钙调蛋白激酶的α亚基)的分子量范围内几乎没有标记,尽管在45 - 52kd区域有弥散性标记。这些结果与以下假说一致,即突触后连接复合体的一些蛋白质成分是由选择性地定位于突触连接下方的多核糖体合成的。

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