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Identification and Quantitation of Newly Synthesized Proteins in Escherichia coli by Enrichment of Azidohomoalanine-labeled Peptides with Diagonal Chromatography

机译:通过对偶氮高纯丙氨酸标记的肽的富集和对角色谱法鉴定和定量大肠杆菌中新合成的蛋白质

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摘要

A method is presented to identify and quantify several hundreds of newly synthesized proteins in Escherichia coli upon pulse labeling cells with the methionine analogue azidohomoalanine (azhal). For the first 30 min after inoculation, a methionine-auxotrophic strain grows equally well on azhal as on methionine. Upon a pulse of 15 min and digestion of total protein, azhal-labeled peptides are isolated by a retention time shift between two reversed phase chromatographic runs. The retention time shift is induced by a reaction selective for the azido group in labeled peptides using tris(2-carboxyethyl)phosphine. Selectively modified peptides are identified by reversed phase liquid chromatography and on-line tandem mass spectrometry. We identified 527 proteins representative of all major Gene Ontology categories. Comparing the relative amounts of 344 proteins synthesized in 15 min upon a switch of growth temperature from 37 to 44 °C showed that nearly 20% increased or decreased more than 2-fold. Among the most up-regulated proteins many were chaperones and proteases in accordance with the cells response to unfolded proteins due to heat stress. Comparison of our data with results from previous microarray experiments revealed the importance of regulation of gene expression at the level of transcription of the most elevated proteins under heat shock conditions and enabled identification of several candidate genes whose expression may predominantly be regulated at the level of translation. This work demonstrates for the first time the use of a bioorthogonal amino acid for proteome-wide detection of changes in the amounts of proteins synthesized during a brief period upon variations in cellular growth conditions. Comparison of such data with relative mRNA levels enables assessment of the separate contributions of transcription and translation to the regulation of gene expression.
机译:提出了一种方法,该方法可通过使用蛋氨酸类似物叠氮高丙氨酸(azhal)对细胞进行脉冲标记来鉴定和定量大肠杆菌中的数百种新合成蛋白质。在接种后的最初30分钟内,蛋氨酸营养缺陷型菌株在azhal和蛋氨酸上均生长良好。经过15分钟的脉冲并消化了总蛋白,通过两次反相色谱运行之间的保留时间偏移,分离了azhal标记的肽。使用三(2-羧乙基)膦通过标记肽中叠氮基的选择性反应诱导了保留时间的变化。通过反相液相色谱和在线串联质谱法鉴定选择性修饰的肽。我们确定了527种代表所有主要基因本体论类别的蛋白质。比较生长温度从37°C切换到44°C后15分钟内合成的344种蛋白质的相对数量,发现近20%的蛋白质增加或减少2倍以上。在最上调的蛋白质中,根据细胞对由于热应激而对未折叠的蛋白质的响应,许多是伴侣蛋白和蛋白酶。将我们的数据与以前的微阵列实验的结果进行比较,发现在热激条件下,在最升高的蛋白质转录水平上调节基因表达的重要性,并能够鉴定几种表达可能主要在翻译水平上调控的候选基因。 。这项工作首次证明了在细胞生长条件发生变化的短时间内,生物正交氨基酸可用于蛋白质组范围内蛋白质合成量变化的检测。通过将此类数据与相对mRNA水平进行比较,可以评估转录和翻译对基因表达调控的不同贡献。

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