神经营养因子受体基因在大鼠膝状神经节神经元的发育表达。

Albert I Farbman, Jessica H Brann, Alexander Rozenblat, M William Rochlin, Elke Weiler, Mitra Bhattacharyya
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引用次数: 16

摘要

采用免疫组织化学染色石蜡切片,对发育中的大鼠膝状(第ⅶ颅)神经节进行解剖,检测神经营养因子受体基因p75、trkA、trkB和trkC mRNA的含量。采用胚胎第13天(E13)至出生后第20天(P20)的胎鼠和产后大鼠。对单细胞进行RNA扩增,然后用逆转录酶处理,再用聚合酶链反应(PCR)扩增DNA。通过亚克隆和测序验证了PCR产物的同源性。共检测227个神经元,其中212个(93%)对至少一种神经营养因子受体产生PCR信号。我们发现:(1)大约一半的神经元表达不止一种受体。(2) trkB的截断版本,具有配体结合区,但缺乏酪氨酸激酶结构域,经常出现,通常与全长trkB结合,与trkA结合或两者结合。(3) trkb样免疫反应性的染色模式通常预测其全长或截断的mRNA将存在。这与trkc样免疫反应性不同。E15脑组织的Western blots显示没有全长trkC(约150 kDa)的条带,表明该抗体可能对截断的trkC受体(约120 kDa)产生免疫反应,而不是全长trkC受体。(4)神经营养因子受体基因表达模式在发育过程中发生改变。(5) p75的表达并不常见——212个神经元中只有7个向任何受体发出信号。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Developmental expression of neurotrophin receptor genes in rat geniculate ganglion neurons.

Individual neurons dissected from immunohistochemically stained paraffin sections of the developing rat geniculate (VIIth cranial) ganglion were assayed for their content of mRNA of the neurotrophin receptor genes, p75 , trkA , trkB and trkC. Fetal and postnatal rats, from the 13th embryonic day (E13) until the 20th postnatal day (P20), were used. Single cells were subjected to RNA amplification, followed by treatment with reverse transcriptase and DNA amplification by the polymerase chain reaction (PCR). The identity of the PCR products was verified by subcloning and sequencing. A total of 227 neurons were examined, of which 212 (93%) gave a PCR signal for at least one neurotrophin receptor. We found: (1) Approximately half of the neurons expressed more than one receptor. (2) A truncated version of trkB , possessing the ligand-binding region but lacking the tyrosine kinase domain, occurred quite frequently, often in combination with the full-length trkB, with trkA or both. (3) The pattern of staining for trkB-like immunoreactivity was usually predictive that either its full length or truncated mRNA would be present. This was not the case for trkC-like immunoreactivity. Western blots on E15 brain tissue showed no band for full-length trkC ( approximately 150 kDa), suggesting the antibody may have been immunoreactive with a truncated ( approximately 120 kDa) but not a full-length version of the trkC receptor. (4) The pattern of neurotrophin receptor gene expression changed during development. (5) p75 expression occurred infrequently--in only 7 of the 212 neurons that gave a signal for any receptor.

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