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In vivo kinetics of protein targeting to the endoplasmic reticulum determined by site-specific phosphorylation

机译:通过位点特异性磷酸化确定靶向内质网的蛋白质的体内动力学

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摘要

We have developed a novel assay to detect the cytosolic localization of protein domains by inserting a short consensus sequence for phosphorylation by protein kinase A. In transfected COS-1 cells, this sequence was labeled efficiently with [32P]phosphate only when exposed to the cytosol and not when translocated into the lumen of the endoplasmic reticulum. The phosphorylation state of this sequence can therefore be used to determine the topology of membrane proteins. This assay is sufficiently sensitive to detect even the transient cytosolic exposure of the N-terminal domain of a membrane protein with a reverse signal-anchor sequence. The extent of phosphorylation per newly synthesized polypeptide was shown to reflect the time of exposure to the cytosol, which depends on translation, targeting and translocation of the N-terminus. By altering the length of the N-terminal domain or manipulating the translation rate, it was determined that protein targeting is rapid and requires only a few seconds. The rate of N-terminal translocation was estimated to be ∼1.6 times the rate of translation.
机译:我们已经开发了一种新的检测方法,通过插入一个短的共有序列来通过蛋白激酶A磷酸化来检测蛋白结构域的胞质定位。在转染的COS-1细胞中,该序列被[ 32 P仅在暴露于细胞质中时才]]磷酸酯,而当其转运入内质网腔时则不。因此,该序列的磷酸化状态可用于确定膜蛋白的拓扑。该测定法足够灵敏,甚至可以检测具有反向信号锚序列的膜蛋白N末端结构域的瞬时胞质暴露。显示每个新合成的多肽的磷酸化程度反映了暴露于胞质溶胶的时间,这取决于N末端的翻译,靶向和易位。通过改变N末端结构域的长度或控制翻译速率,可以确定蛋白质靶向快速且仅需几秒钟。 N末端易位的速率估计约为翻译速率的1.6倍。

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