大鼠输入蛋白9的克隆与表征及其对神经元功能的影响

Elod Kortvely, Peter Burkovics, Szilvia Varszegi, Karoly Gulya
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引用次数: 8

摘要

我们描述了大鼠输入蛋白9基因的结构,连同它的转录本和编码蛋白及其假定的功能域。输入基因在一个跨越52,000 bp的基因组区域中包含24个外显子。它被转录成两个mrna,通过交替排列的多聚腺苷化位点使用产生。两种转录本在大鼠中具有相同的非典型聚腺苷化信号(AGUAAA),该六聚体在所有脊椎动物中都是保守的。此外,内含子8被AT-AC二核苷酸包围。进口蛋白9在成年大鼠组织中均有表达,但114-kDa的进口蛋白9仅在大脑中检测到。在成年大鼠组织和原代海马细胞培养中,用免疫组化方法检测了Importin 9蛋白的定位。在体内高密度神经元聚集的区域以及从这些细胞发出的树突中检测到最强的标记。这种蛋白显然集中在这些细胞的细胞核中,尽管它们的细胞质也被大量标记。绝大多数体外培养的具有神经元形态的细胞细胞质染色明显,细胞核染色强烈。具有胶质形态的培养细胞通常表现出较弱的细胞质标记。在这些细胞中,信号装饰在核膜上,没有核染色,并逐渐向细胞周围缩小。这些结果暗示了这种类型的输入蛋白的细胞或组织类型的特异性功能。
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Cloning and characterization of rat importin 9: Implication for its neuronal function

We describe the structure of the rat importin 9 gene, together with its transcripts and the encoded protein with its putative functional domains. The importin 9 gene contains 24 exons in a genomic region spanning >52,000 bp. It is transcribed into two mRNAs, generated by means of alternative polyadenylation site usage arranged in tandem. Both transcripts possess the same noncanonical polyadenylation signal (AGUAAA) in rat, this hexamer being conserved in all vertebrates examined. Additionally, intron 8 is bordered by AT–AC dinucleotides. Importin 9 is expressed throughout adult rat tissues, but the 114-kDa Importin 9 protein was detected only in the brain. The localization of the Importin 9 protein was examined by immunohistochemistry in both adult rat tissues and primary hippocampal cell cultures. The strongest labeling was detected in vivo in areas populated by neurons in high density and also in the dendritic processes emanating from these cells. This protein was clearly concentrated in the nuclei of these cells, although their cytoplasms too were heavily labeled. Strong cytoplasmic and very strong nuclear staining was found in a vast majority of the cells with neuronal morphology in vitro. Cultured cells with glial morphology generally exhibited a weaker cytoplasmic labeling. In these cells, the signal decorated the nuclear envelope without nuclear staining and gradually dwindled toward the cell periphery. These results hint at the cell- or tissue-type specific functions of this type of importin protein.

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