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钙调蛋白mRNA在大鼠嗅神经上皮中的表达。

Expression of calmodulin mRNA in rat olfactory neuroepithelium.

作者信息

Biffo S, Goren T, Khew-Goodall Y S, Miara J, Margolis F L

机构信息

Departimento Di Biologia Animale, Universita Di Torino, Italy.

出版信息

Brain Res Mol Brain Res. 1991 Apr;10(1):13-21. doi: 10.1016/0169-328x(91)90051-x.

Abstract

A calmodulin (CaM) cDNA was isolated by differential hybridization screening of a lambda gt10 library prepared from rat olfactory mucosa. This cDNA fragment, containing most of the open reading frame of the rat CaMI gene, was subcloned and used to characterize steady-state expression of CaM mRNA in rat olfactory neuroepithelium and bulb. Within the bulb mitral cells are the primary neuronal population expressing CaM mRNA. The major CaM mRNA expressed in the olfactory mucosa is 1.7 kb with smaller contributions from mRNAs of 4.0 and 1.4 kb. CaM mRNA was primarily associated with the olfactory neurons and, despite the cellular complexity of the tissue and the known involvement of CaM in diverse cellular processes, was only minimally evident in sustentacular cells, gland cells or respiratory epithelium. Following bulbectomy CaM mRNA declines in the olfactory neuroepithelium as does olfactory marker protein (OMP) mRNA. In contrast to the latter, CaM mRNA makes a partial recovery by one month after surgery. These results, coupled with those from in situ hybridization, indicate that CaM mRNA is expressed in both mature and immature olfactory neurons. The program regulating CaM gene expression in olfactory neurons is distinct from those controlling expression of B50/GAP43 in immature, or OMP in mature, neurons respectively.

摘要

通过对从大鼠嗅黏膜制备的λgt10文库进行差异杂交筛选,分离出了一种钙调蛋白(CaM)cDNA。该cDNA片段包含大鼠CaMI基因的大部分开放阅读框,被亚克隆并用于表征CaM mRNA在大鼠嗅神经上皮和嗅球中的稳态表达。在嗅球内,二尖瓣细胞是表达CaM mRNA的主要神经元群体。在嗅黏膜中表达的主要CaM mRNA为1.7 kb,4.0 kb和1.4 kb的mRNA贡献较小。CaM mRNA主要与嗅神经元相关,尽管该组织细胞复杂且已知CaM参与多种细胞过程,但在支持细胞、腺细胞或呼吸道上皮中仅微量表达。嗅球切除术后,嗅神经上皮中的CaM mRNA和嗅觉标记蛋白(OMP)mRNA一样下降。与后者不同的是,CaM mRNA在手术后一个月部分恢复。这些结果,再结合原位杂交结果,表明CaM mRNA在成熟和未成熟的嗅神经元中均有表达。调节嗅神经元中CaM基因表达的程序分别不同于控制未成熟神经元中B50/GAP43或成熟神经元中OMP表达的程序。

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