Lecampion Cécile, Floris Maïna, Fantino Jean Raphaël, Robaglia Christophe, Laloi Christophe
Laboratoire de Génétique et Biophysique des Plantes, Aix-Marseille Université; UMR 7265 Biologie Végétale & Microbiologie Environnementales, CNRS; BIAM, CEA;
Laboratoire de Génétique et Biophysique des Plantes, Aix-Marseille Université; UMR 7265 Biologie Végétale & Microbiologie Environnementales, CNRS; BIAM, CEA; Department of Biology, Biocenter, University of Copenhagen.
J Vis Exp. 2016 Aug 28(114):54231. doi: 10.3791/54231.
Translation of mRNA to protein is a fundamental and highly regulated biological process. Polysome profiling is considered as a gold standard for the analysis of translational regulation. The method described here is an easy and economical way for fractionating polysomes from various plant tissues. A sucrose gradient is made without the need for a gradient maker by sequentially freezing each layer. Cytosolic extracts are then prepared in a buffer containing cycloheximide and chloramphenicol to immobilize the cytosolic and chloroplastic ribosomes to mRNA and are loaded onto the sucrose gradient. After centrifugation, six fractions are directly collected from the bottom to the top of the gradient, without piercing the ultracentrifugation tube. During collection, the absorbance at 260 nm is read continuously to generate a polysome profile that gives a snapshot of global translational activity. Fractions are then pooled to prepare three different mRNA populations: the polysomes, mRNAs bound to several ribosomes; the monosomes, mRNAs bound to one ribosome; and mRNAs that are not bound to ribosomes. mRNAs are then extracted. This protocol has been validated for different plants and tissues including Arabidopsis thaliana seedlings and adult plants, Nicotiana benthamiana, Solanum lycopersicum, and Oryza sativa leaves.
信使核糖核酸(mRNA)到蛋白质的翻译是一个基本且受到高度调控的生物学过程。多核糖体分析被认为是分析翻译调控的金标准。此处描述的方法是一种从各种植物组织中分离多核糖体的简便且经济的方法。通过依次冷冻每一层来制备蔗糖梯度,无需梯度制备仪。然后在含有环己酰亚胺和氯霉素的缓冲液中制备胞质提取物,以使胞质和叶绿体核糖体固定在mRNA上,并将其加载到蔗糖梯度上。离心后,直接从梯度底部到顶部收集六个组分,无需刺穿超速离心管。收集过程中,连续读取260nm处的吸光度以生成多核糖体图谱,该图谱能呈现整体翻译活性的快照。然后将组分合并以制备三种不同的mRNA群体:多核糖体,即与多个核糖体结合的mRNA;单核糖体,即与一个核糖体结合的mRNA;以及未与核糖体结合的mRNA。随后提取mRNA。该方案已在不同植物和组织中得到验证,包括拟南芥幼苗和成年植株、本氏烟草、番茄和水稻叶片。