Patz Silke, Wahle Petra
AG Entwicklungsneurobiologie, Fakultät für Biologie, ND 6/72, Ruhr-Universität, 44780 Bochum, Germany.
Eur J Neurosci. 2006 Nov;24(9):2453-60. doi: 10.1111/j.1460-9568.2006.05126.x.
Neurotrophins are essential factors for the structural, neurochemical and functional maturation of the brain including developmental and adult plasticity. Northern blots and polymerase chain reaction revealed the expression of neurotrophin 4 (NT4), neurotrophin 3 (NT3), brain-derived neurotrophic factor (BDNF) and nerve growth factor (NGF) in the cortex. The cellular producers of NT3 and BDNF have been characterized by anatomical methods as being mostly pyramidal, and the tyrosine kinase B (TrkB) receptor is expressed by many cortical neurons. However, these methods have so far failed to identify the cells producing NT4 and NGF mRNA. These factors are much lower in expression than, e.g. BDNF, and apparently remain below detection levels of in situ hybridization. Given their specific actions on cell types and afferent systems, knowledge about the producing cell types is highly desirable. To narrow down on the producing cell types, we quantified by reverse transcriptase-polymerase chain reaction (RT-PCR) the developmental changes of BDNF, NT3, NT4, NGF and TrkB mRNA expression in total visual cortex lysates, and in the cortical layers dissected by tangential cryostat sectioning. We found dramatic changes in laminar expression of NT3 and NGF, mild changes of NT4, and no changes of BDNF and TrkB mRNA. For instance, NT3 is important early on for thalamocortical axons, and we found transient peaks of NT3 mRNA expression first in layer VI, then in layer IV. NT4 mRNA was in layers IV and VI, suggesting NT4 protein production in thalamorecipient layers, but peak expression gradually shifted to upper layers as did NGF expression. The layer-specific developmental expression shifts of neurotrophin mRNAs correlate with morphogenetic processes.
神经营养因子是大脑结构、神经化学和功能成熟(包括发育和成年期可塑性)所必需的因素。Northern印迹法和聚合酶链反应显示,神经营养因子4(NT4)、神经营养因子3(NT3)、脑源性神经营养因子(BDNF)和神经生长因子(NGF)在皮质中表达。通过解剖学方法已确定NT3和BDNF的细胞产生者大多为锥体神经元,并且许多皮质神经元表达酪氨酸激酶B(TrkB)受体。然而,到目前为止,这些方法未能鉴定出产生NT4和NGF mRNA的细胞。这些因子的表达水平比例如BDNF低得多,并且显然仍低于原位杂交的检测水平。鉴于它们对细胞类型和传入系统的特定作用,了解产生细胞类型非常必要。为了缩小产生细胞类型的范围,我们通过逆转录聚合酶链反应(RT-PCR)对整个视皮质裂解物以及通过恒冷箱切片切线解剖的皮质层中BDNF、NT3、NT4、NGF和TrkB mRNA表达的发育变化进行了定量。我们发现NT3和NGF的层状表达有显著变化,NT4有轻微变化,而BDNF和TrkB mRNA没有变化。例如,NT3在早期对丘脑皮质轴突很重要,我们发现NT3 mRNA表达的瞬时峰值首先出现在VI层,然后出现在IV层。NT4 mRNA存在于IV层和VI层,表明在丘脑接受层产生NT4蛋白,但峰值表达逐渐转移到上层,NGF表达也是如此。神经营养因子mRNA的层特异性发育表达变化与形态发生过程相关。