Dr. Arthur M. Fishberg Research Center in Neurobiology, Mount Sinai Medical School, City University of New York, 1 Gustave L. Levy Place, New York, New York 10029, USA.
J Neuroendocrinol. 1992 Feb;4(1):79-89. doi: 10.1111/j.1365-2826.1992.tb00349.x.
We have compiled a protocol for simultaneous quantitation of a variety of gene transcripts in multiple individual brain and pituitary gland dissections for studying pretranslational regulation of neuroendocrine systems in vivo, using experimental designs compatible with meaningful statistical power. To facilitate collection of many samples at a time, the tissue was snap-frozen in chilled liquid Freon and stored at -80 °C until further processing. In this way, as many as five different brain and pituitary gland dissections per rat could be collected from eight rats in about an hour. The snap-frozen tissue was suitable for isolation of separate cytoplasmic and nuclear RNA fractions using homogenization in the presence of detergents. To facilitate homogenization of many samples at a time, we devised a method in which the tissue was repeatedly expelled through a 22 gauge hypodermic needle attached to a 1-ml plastic syringe used as a disposable, ready-to-use homogenizer. In order to promote dissolution of lipid membrane structures which are prevalent in the brain, the lysis buffer has been optimized to include the detergent sodium deoxycholate in addition to Nonidet P-40. Specific RNA transcripts were analyzed using a quantitative solution hybridization-ribonuclease protection assay coupled with polyacrylamide gel electrophoresis. The value of this highly sensitive assay has been expanded by including several molecular probes against a variety of neuroendocrine mRNA sequences simultaneously (e.g. progonadotropin-releasing hormone, proopiomelanocortin, tyrosine hydroxylase, dopamine D2 receptor, prolactin), thus increasing the amount of information obtained from each sample in one assay. Furthermore, each sample was routinely co-assayed for cyclophilin mRNA, an abundant, generally non-regulated mRNA whose levels reflected the individual variability in sample processing, thus serving as an internal reference. Once stored in hybridization solution, as many as 100 samples could be analyzed simultaneously for several different RNA transcripts in one assay. This protocol provides a powerful tool for studying regulation of neuroendocrine systems at the molecular level in vivo, using sample sizes suitable for applying statistical analysis of meaningful statistical power.
我们已经制定了一个方案,用于同时定量分析多个个体脑和垂体解剖中的多种基因转录本,以研究体内神经内分泌系统的翻译前调控,使用与有意义的统计功效兼容的实验设计。为了方便一次收集多个样本,组织在冷却的液态氟利昂中迅速冷冻,并在-80°C 下储存,直到进一步处理。通过这种方式,每只大鼠可以从 8 只大鼠中收集多达 5 个不同的脑和垂体解剖样本,用时约 1 小时。迅速冷冻的组织适合使用去污剂在存在下通过匀浆分离单独的细胞质和核 RNA 级分。为了方便一次匀浆多个样本,我们设计了一种方法,其中组织通过连接到 1 毫升塑料注射器的 22 号皮下注射针反复推出,该注射器用作一次性即用型匀浆器。为了促进普遍存在于大脑中的脂质膜结构的溶解,裂解缓冲液已优化为除了非离子型去污剂 NP-40 之外还包括脱氧胆酸钠。使用定量溶液杂交-核糖核酸酶保护测定法结合聚丙烯酰胺凝胶电泳分析特定的 RNA 转录本。通过同时包含针对多种神经内分泌 mRNA 序列的几种分子探针(例如促性腺激素释放激素、促阿黑皮素原、酪氨酸羟化酶、多巴胺 D2 受体、催乳素),该高度敏感测定法的价值得到了扩展,从而增加了从每个样品中获得的信息量在一个测定中。此外,每个样品通常还针对细胞色素 P450 mRNA 进行共测定,细胞色素 P450 mRNA 是一种丰富的、通常不受调节的 mRNA,其水平反映了样品处理的个体变异性,因此作为内部参考。一旦储存在杂交溶液中,多达 100 个样本可以在一个测定中同时分析几种不同的 RNA 转录本。该方案为在体内研究神经内分泌系统的分子水平调节提供了有力的工具,使用适合应用有意义的统计功效的统计分析的样本量。