Martini J F, Villares S M, Nagano M, Delehaye-Zervas M C, Eymard B, Kelly P A, Postel-Vinay M C
INSERM U-344, Endocrinologie Moléculaire, Necker-Enfants Malades, Paris, France.
Endocrinology. 1995 Apr;136(4):1355-60. doi: 10.1210/endo.136.4.7534696.
A single form of GH receptor (GHR) messenger RNA (mRNA) of 4.5 kilobases, encoding the full-length GHR, has been found in man. To measure the absolute number of mRNA molecules encoding the GHR in human tissues, we developed a quantitative polymerase chain reaction assay. An internal control RNA was constructed by inserting a 50-basepair fragment of the rat PRL receptor complementary DNA into a portion of the human GHR complementary DNA. The internal control RNA and the target mRNA were amplified together with the same set of primers. Twenty-four cycles of amplification were used to satisfy an exponential phase of amplification. It was possible to detect as few as 500 molecules of target mRNA/micrograms total RNA. In 3 liver samples obtained from normal donors at the time of transplant, the amount of GHR mRNA ranged from 0.5 +/- 0.1 to 1.4 +/- 0.4 x 10(6) molecules/micrograms total RNA. These results were confirmed by slot blot analysis of the same samples. The number of receptor transcripts did not appear to be correlated with the receptor-binding capacity found in the 3 liver samples. In 7 muscle biopsies, GH receptor mRNA varied between 4.0 +/- 0.4 and 34.6 +/- 1.4 x 10(4) molecules/micrograms total RNA. This technique allows direct measurement of GHR gene expression in human tissues and represents a valuable tool, particularly for tissues such as muscle, in which the receptor protein cannot be measured using conventional binding assays.
在人类中已发现一种4.5千碱基的单一形式的生长激素受体(GHR)信使核糖核酸(mRNA),其编码全长GHR。为了测定人类组织中编码GHR的mRNA分子的绝对数量,我们开发了一种定量聚合酶链反应测定法。通过将大鼠催乳素受体互补DNA的一个50碱基对片段插入人GHR互补DNA的一部分来构建内部对照RNA。内部对照RNA和靶mRNA用同一组引物一起扩增。使用24个循环的扩增来满足扩增的指数期。能够检测到低至500个靶mRNA分子/微克总RNA。在从正常供体移植时获得的3份肝脏样本中,GHR mRNA的量在0.5±0.1至1.4±0.4×10⁶分子/微克总RNA之间。相同样本的狭缝印迹分析证实了这些结果。受体转录本的数量似乎与在3份肝脏样本中发现的受体结合能力无关。在7份肌肉活检样本中,GH受体mRNA在4.0±0.4至34.6±1.4×10⁴分子/微克总RNA之间变化。这项技术允许直接测量人类组织中的GHR基因表达,并且是一种有价值的工具,特别是对于诸如肌肉等无法使用传统结合测定法测量受体蛋白的组织。