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[芳香族L-氨基酸脱羧酶的分子遗传学]

[Molecular genetics of aromatic L-amino acid decarboxylase].

作者信息

Ichinose H, Nagatsu T

机构信息

Division of Molecular Genetics (II), School of Medicine, Fujita Health University, Toyoake, Japan.

出版信息

Yakubutsu Seishin Kodo. 1993 Aug;13(4):251-6.

PMID:8237142
Abstract

Aromatic L-amino acid decarboxylase (AADC) decarboxylates both L-5-hydroxytryptophan to serotonin in serotonergic neurons and pineal cells, and L-dopa to dopamine in catecholaminergic neurons and adrenal medullary cells. Thus AADC produces two major mammalian neurotransmitters and hormones. We isolated and sequenced a full-length, neuronal-type, cDNA encoding human AADC. It consisted of 1932 bases containing an open reading frame encoding 480 amino acids residues with a molecular weight of 53,891. We expressed a recombinant human AADC in COS cells and proved that the expressed enzyme decarboxylated both L-5-hydroxytryptophan to serotonin and L-dopa to dopamine. We have cloned genomic DNA of human AADC and determined the structure. The genomic DNA of human AADC consists of 15 exons spanning about 100 kilobases and exists as a single copy in the hapoloid genome. We have mapped the gene to chromosome band 7p12.1-p12.3 by fluorescence in situ hybridization. We cloned the nonneuronal type cDNA from human liver and identified another first exon different from the neuronal type cDNA. This showed that an alternative usage of the first exon produced two types of mRNAs in AADC and suggested that alternative splicing would regulate the tissue-specific expression of AADC.

摘要

芳香族L-氨基酸脱羧酶(AADC)在5-羟色胺能神经元和松果体细胞中将L-5-羟色氨酸脱羧生成血清素,在儿茶酚胺能神经元和肾上腺髓质细胞中将L-多巴脱羧生成多巴胺。因此,AADC产生两种主要的哺乳动物神经递质和激素。我们分离并测序了编码人AADC的全长神经元型cDNA。它由1932个碱基组成,包含一个编码480个氨基酸残基、分子量为53,891的开放阅读框。我们在COS细胞中表达了重组人AADC,并证明表达的酶能将L-5-羟色氨酸脱羧生成血清素,将L-多巴脱羧生成多巴胺。我们克隆了人AADC的基因组DNA并确定了其结构。人AADC的基因组DNA由15个外显子组成,跨度约100千碱基,在单倍体基因组中以单拷贝形式存在。我们通过荧光原位杂交将该基因定位到染色体7p12.1-p12.3带。我们从人肝脏中克隆了非神经元型cDNA,并鉴定出一个与神经元型cDNA不同的另一个第一外显子。这表明第一外显子的选择性使用在AADC中产生了两种类型的mRNA,并提示选择性剪接将调节AADC的组织特异性表达。

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