Kitamoto T, Wang W, Salvaterra P M
Beckman Research Institute of the City of Hope, Duarte, California 91010, USA.
J Biol Chem. 1998 Jan 30;273(5):2706-13. doi: 10.1074/jbc.273.5.2706.
The Drosophila cholinergic locus is composed of two distinct genetic functions: choline acetyltransferase (ChAT; EC 2.3.1.6), the enzyme catalyzing biosynthesis of neurotransmitter acetylcholine (ACh), and the vesicular ACh transporter (VAChT), the synaptic vesicle membrane protein which pumps transmitter into vesicles. Both genes share a common first exon and the remainder of the VAChT gene contains a single coding exon residing entirely within the first intron of ChAT. RNase protection analysis indicates that all Drosophila VAChT specific transcripts contain the shared first exon and suggests common transcriptional control for ChAT and VAChT. Similar types of genomic organization have been evolutionarily conserved for cholinergic loci in nematodes and vertebrates, and may operate to ensure coordinate expression of these functionally related genes in the same cells. The relative levels of Drosophila ChAT and VAChT mRNA differ, however, in different tissues or in Cha mutants, indicating that independent regulation of ChAT and VAChT transcripts may occur post-transcriptionally. The predicted Drosophila VAChT protein is composed of 578 amino acids and contains 12 conserved putative transmembrane domains. Full-length VAChT cDNA is 7.2 kilobase long and has unusually long 5'- and 3'-untranslated regions (UTR). The 5'-UTR contains a GTG ChAT translational initiation codon along with three other potential ATG initiation codons. These features of the VAChT 5'-UTR region suggest that a ribosome scanning model may not be used for VAChT translation initiation.
胆碱乙酰转移酶(ChAT;EC 2.3.1.6),催化神经递质乙酰胆碱(ACh)生物合成的酶,以及囊泡ACh转运体(VAChT),将递质泵入囊泡的突触囊泡膜蛋白。这两个基因共享一个共同的第一外显子,VAChT基因的其余部分包含一个单一的编码外显子,完全位于ChAT的第一内含子内。核糖核酸酶保护分析表明,所有果蝇VAChT特异性转录本都包含共享的第一外显子,并提示ChAT和VAChT存在共同的转录调控。线虫和脊椎动物胆碱能基因座的类似基因组组织类型在进化上是保守的,可能用于确保这些功能相关基因在同一细胞中的协调表达。然而,果蝇ChAT和VAChT mRNA的相对水平在不同组织或Cha突变体中有所不同,表明ChAT和VAChT转录本的独立调控可能发生在转录后。预测的果蝇VAChT蛋白由578个氨基酸组成,包含12个保守的假定跨膜结构域。全长VAChT cDNA长7.2千碱基,具有异常长的5'-和3'-非翻译区(UTR)。5'-UTR包含一个GTG ChAT翻译起始密码子以及其他三个潜在的ATG起始密码子。VAChT 5'-UTR区域的这些特征表明,核糖体扫描模型可能不适用于VAChT的翻译起始。