Capel M, Datta D, Nierras C R, Craven G R
Anal Biochem. 1986 Oct;158(1):179-88. doi: 10.1016/0003-2697(86)90607-x.
We have developed analytical and preparative ion-exchange HPLC methods for the separation of bacterial ribosomal proteins. Proteins separated by the TSK SP-5-PW column were identified with reverse-phase HPLC and gel electrophoresis. The 21 proteins of the small ribosomal subunit were resolved into 18 peaks, and the 32 large ribosomal subunit proteins produced 25 distinct peaks. All peaks containing more than one protein were resolved using reverse-phase HPLC. Peak volumes were typically a few milliliters. Separation times were 90 min for analytical and 5 h for preparative columns. Preparative-scale sample loads ranged from 100 to 400 mg. Overall recovery efficiency for 30S and 50S subunit proteins was approximately 100%. 30S ribosomal subunit proteins purified by this method were shown to be fully capable of participating in vitro reassembly to form intact, active ribosomal subunits.
我们已开发出分析型和制备型离子交换高效液相色谱法,用于分离细菌核糖体蛋白。通过TSK SP-5-PW柱分离得到的蛋白质,用反相高效液相色谱法和凝胶电泳进行鉴定。小核糖体亚基的21种蛋白质被分离为18个峰,大核糖体亚基的32种蛋白质产生25个不同的峰。所有含有不止一种蛋白质的峰,都用反相高效液相色谱法进行了分离。峰体积通常为几毫升。分析柱的分离时间为90分钟,制备柱为5小时。制备规模的样品上样量为100至400毫克。30S和50S亚基蛋白的总体回收效率约为100%。通过该方法纯化的30S核糖体亚基蛋白被证明完全能够参与体外重装配,形成完整、有活性的核糖体亚基。