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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >Alternative non-coding exons support serotonin transporter mRNA expression in the brain and gut.
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Alternative non-coding exons support serotonin transporter mRNA expression in the brain and gut.

机译:替代性的非编码外显子支持大脑和肠道中5-羟色胺转运蛋白的mRNA表达。

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摘要

A number of studies in recent years have linked polymorphisms within the serotonin transporter (5HTT) gene to affective disorders and anxiety traits. The human 5HTT mRNA is alternatively spliced, and the splice variants are equally expressed in the human placental cell line and dorsal raphe. In this study, using 5' rapid amplification of cDNA ends, we show that the rat 5HTT mRNA is alternatively spliced, leading to three distinct mRNAs differing in the 5' untranslated region. To determine whether the three alternatively spliced mRNA species that contain one of the following untranslated regions (i) exon 1A, 63 bp (ii) exon 1A + 1B, 125 bp or (iii) exon 1C, 101 bp, were expressed in a tissue-specific manner, we used RT-PCR and exon-specific oligonucleotide hybridization. Our results suggest two of the variants (1A + 1B and 1A) may utilize the same promoter; however, they are not equally expressed. While in the adult CNS and adrenal medulla, the shorter mRNA consisting of exon 1A was considerably more abundant, in the stomach and heart, the two variants were equally expressed. The third splice variant exon 1C is only expressed in the gut and to a lesser extent in the heart. The data from this study suggest the splice variant consisting of exon 1C may utilize a distinct promoter compared to the other two.
机译:近年来的许多研究已将5-羟色胺转运蛋白(5HTT)基因内的多态性与情感障碍和焦虑性状联系起来。人5HTT mRNA被选择性剪接,剪接变体在人胎盘细胞系和背沟中均等表达。在这项研究中,使用cDNA末端的5'快速扩增,我们显示了大鼠5HTT mRNA的选择性剪接,导致在5'非翻译区不同的三个不同的mRNA。为了确定是否在组织中表达了包含以下未翻译区之一的三种交替剪接的mRNA种类(i)1个外显子1A,63 bp(ii)1个外显子1A + 1B,125 bp或(iii)1个外显子1C,101 bp特异性方式,我们使用了RT-PCR和外显子特异性寡核苷酸杂交。我们的结果表明,两个变体(1A + 1B和1A)可能利用了相同的启动子。但是,它们并没有平等地表达。在成年的中枢神经系统和肾上腺髓质中,由外显子1A组成的较短的mRNA相当丰富,而在胃和心脏中,两种变体表达均相同。第三剪接变体外显子1C仅在肠中表达,并在心脏中表达程度较低。这项研究的数据表明,与其他两个外显子相比,由外显子1C组成的剪接变体可能利用了一个独特的启动子。

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