Heumann R, Korsching S, Scott J, Thoenen H
EMBO J. 1984 Dec 20;3(13):3183-9. doi: 10.1002/j.1460-2075.1984.tb02277.x.
We have developed a sensitive assay for the quantification of nerve growth factor mRNA (mRNANGF) in various tissues of the mouse using in vitro transcribed RNANGF. Probes of both polarities were used to determine the specificity of the hybridization signals obtained. Comparison of NGF levels with its mRNA revealed that both were correlated with the density of sympathetic innervation. Thus, vas deferens contained high levels of both NGF and mRNANGF, whereas skeletal muscle levels were barely detectable, indicating that in peripheral tissues NGF levels are primarily regulated by the quantity of mRNANGF and not by the rate of processing of NGF precursor to NGF. However, although superior cervical ganglia contained the highest levels of NGF, its mRNA was barely detectable. Thus, the high levels of NGF in sympathetic ganglia result from retrograde axonal transport rather than local synthesis. The quantity of NGF found in the submandibular glands of female animals was three orders of magnitude higher than expected from their mRNA levels. This observation is discussed in the context of the difference between the mechanism of storage and exocytosis of exocrine glands versus the constitutive release from other tissues.
我们利用体外转录的神经生长因子mRNA(mRNANGF),开发了一种用于定量小鼠各种组织中神经生长因子mRNA的灵敏检测方法。使用两种极性的探针来确定所获得杂交信号的特异性。将神经生长因子(NGF)水平与其mRNA进行比较,发现两者均与交感神经支配密度相关。因此,输精管中NGF和mRNANGF水平都很高,而骨骼肌中的水平几乎检测不到,这表明在外周组织中,NGF水平主要由mRNANGF的量而非NGF前体加工成NGF的速率调节。然而,尽管颈上神经节中NGF水平最高,但其mRNA几乎检测不到。因此,交感神经节中高水平的NGF是由逆行轴突运输而非局部合成所致。雌性动物下颌下腺中发现的NGF量比根据其mRNA水平预期的高出三个数量级。结合外分泌腺储存和胞吐机制与其他组织组成型释放机制的差异对这一观察结果进行了讨论。