首页> 外文OA文献 >Alternative Exon Usage in the Single CPT1 Gene of Drosophila Generates Functional Diversity in the Kinetic Properties of the Enzyme: DIFFERENTIAL EXPRESSION OF ALTERNATIVELY SPLICED VARIANTS IN DROSOPHILA TISSUES*
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Alternative Exon Usage in the Single CPT1 Gene of Drosophila Generates Functional Diversity in the Kinetic Properties of the Enzyme: DIFFERENTIAL EXPRESSION OF ALTERNATIVELY SPLICED VARIANTS IN DROSOPHILA TISSUES*

机译:果蝇的单个CPT1基因中替代性外显子的使用在酶的动力学特性中产生功能多样性:果蝇组织中可变剪接变体的差异表达*

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摘要

The Drosophila melanogaster genome contains only one CPT1 gene (Jackson, V. N., Cameron, J. M., Zammit, V. A., and Price, N. T. (1999) Biochem. J. 341, 483–489). We have now extended our original observation to all insect genomes that have been sequenced, suggesting that a single CPT1 gene is a universal feature of insect genomes. We hypothesized that insects may be able to generate kinetically distinct variants by alternative splicing of their single CPT1 gene. Analysis of the insect genomes revealed that (a) the single CPT1 gene in each and every insect genome contains two alternative exons and (ii) in all cases, the putative alternative splicing site occurs within a small region corresponding to 21 amino acid residues that are known to be essential for the binding of substrates and of malonyl-CoA in mammalian CPT1A. We performed PCR analyses of mRNA from different Drosophila tissues; both of the anticipated splice variants of CPT1 mRNA were found to be expressed in all of the tissues tested (both in larvae and adults), with the expression level for one of the splice variants being significantly different between flight muscle and the fat body of adult Drosophila. Heterologous expression of the full-length cDNAs corresponding to the two putative variants of Drosophila CPT1 in the yeast Pichia pastoris revealed two important differences between the properties of the two variants: (i) their affinity (K0.5) for one of the substrates, palmitoyl-CoA, differed by 5-fold, and (ii) the sensitivity to inhibition by malonyl-CoA at fixed, higher palmitoyl-CoA concentrations was 2-fold different and associated with different kinetics of inhibition. These data indicate that alternative splicing that specifically affects a structurally crucial region of the protein is an important mechanism through which functional diversity of CPT1 kinetics is generated from the single gene that occurs in insects.
机译:果蝇果蝇基因组仅包含一个CPT1基因(杰克逊,弗吉尼亚州,卡梅伦,詹姆森,扎米特,弗吉尼亚州,和普莱斯,新泽西州(1999)生物化学杂志,341,483-489)。现在,我们将原始观察结果扩展到已测序的所有昆虫基因组,这表明单个CPT1基因是昆虫基因组的普遍特征。我们假设昆虫可以通过其单个CPT1基因的可变剪接产生动力学上不同的变异体。对昆虫基因组的分析表明,(a)每个昆虫基因组中的单个CPT1基因均包含两个备选外显子,并且(ii)在所有情况下,假定的备选剪接位点均在与21个氨基酸残基相对应的小区域内发生。已知对于哺乳动物CPT1A中底物和丙二酰辅酶A的结合必不可少。我们对不同果蝇组织的mRNA进行了PCR分析。发现两个预期的CPT1 mRNA剪接变体都在所有测试的组织中表达(在幼虫和成年动物中),其中一个剪接变体的表达水平在飞行肌肉和成年脂肪之间显着不同果蝇。对应于果蝇CPT1的两个推定变体的全长cDNA在酵母毕赤酵母中的异源表达揭示了这两个变体的特性之间的两个重要区别:(i)它们对一种底物的亲和力(K0.5),棕榈酰-CoA相差5倍,(ii)在固定的较高棕榈酰-CoA浓度下丙二酰-CoA对抑制的敏感性相差2倍,并且具有不同的抑制动力学。这些数据表明,特异性影响蛋白质结构关键区域的选择性剪接是一种重要的机制,通过这种机制,可以从昆虫中发生的单个基因产生CPT1动力学的功能多样性。

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