Caudevilla C, Codony C, Serra D, Plasencia G, Román R, Graessmann A, Asins G, Bach-Elias M, Hegardt F G
Department of Biochemistry, School of Pharmacy, Diagonal 643, University of Barcelona, 08028 Barcelona, Spain.
Nucleic Acids Res. 2001 Jul 15;29(14):3108-15. doi: 10.1093/nar/29.14.3108.
Carnitine octanoyltransferase (COT) produces three different transcripts in rat through cis- and trans-splicing reactions, which may lead to the synthesis of two proteins. Generation of the three COT transcripts in rat does not depend on sex, development, fat feeding, the inclusion of the peroxisome proliferator diethylhexyl phthalate in the diet or hyperinsulinemia. In addition, trans-splicing was not detected in COT of other mammals, such as human, pig, cow and mouse, or in Cos7 cells from monkey. Rat COT exon 2 contains two purine-rich sequences. Mutation of the rat COT exon 2 upstream box does not affect the trans-splicing in vitro between two truncated constructs containing exon 2 and its adjacent intron boundaries. In contrast, mutation of the downstream box from the rat sequence (GAAGAAG) to a random sequence or the sequence observed in the other mammals (AAAAAAA) decreased trans-splicing in vitro. In contrast, mutation of the AAAAAAA box of human COT exon 2 to GAAGAAG increases trans-splicing. Heterologous reactions between COT exon 2 from rat and human do not produce trans-splicing. HeLa cells transfected with minigenes of rat COT sequences produced cis- and trans-spliced bands. Mutation of the GAAGAAG box to AAAAAAA abolished trans-splicing and decreased cis-splicing in vivo. We conclude that GAAGAAG is an exonic splicing enhancer that could induce natural trans-splicing in rat COT.
肉碱辛酰基转移酶(COT)通过顺式和反式剪接反应在大鼠中产生三种不同的转录本,这可能导致两种蛋白质的合成。大鼠中三种COT转录本的产生不依赖于性别、发育、高脂喂养、饮食中过氧化物酶体增殖剂邻苯二甲酸二乙基己酯的添加或高胰岛素血症。此外,在其他哺乳动物如人、猪、牛和小鼠的COT中,或在来自猴子的Cos7细胞中未检测到反式剪接。大鼠COT外显子2包含两个富含嘌呤的序列。大鼠COT外显子2上游框的突变不影响包含外显子2及其相邻内含子边界的两个截短构建体之间的体外反式剪接。相反,将大鼠序列(GAAGAAG)的下游框突变为随机序列或在其他哺乳动物中观察到的序列(AAAAAAA)会降低体外反式剪接。相比之下,将人COT外显子2的AAAAAAA框突变为GAAGAAG会增加反式剪接。大鼠和人COT外显子2之间的异源反应不会产生反式剪接。用大鼠COT序列的小基因转染的HeLa细胞产生了顺式和反式剪接条带。将GAAGAAG框突变为AAAAAAA会消除体内的反式剪接并降低顺式剪接。我们得出结论,GAAGAAG是一种外显子剪接增强子,可诱导大鼠COT中的天然反式剪接。