Campbell P M, de Q Robin G C, Court L N, Dorrian S J, Russell R J, Oakeshott J G
Division of Entomology, Commonwealth Scientific & Industrial Research Organization, ACT, Australia.
Insect Mol Biol. 2003 Oct;12(5):459-71. doi: 10.1046/j.1365-2583.2003.00430.x.
Here we show how the 10 genes of the alpha esterase cluster of Drosophila melanogaster have diverged substantially in their expression profiles. Together with previously described sequence divergence this suggests substantial functional diversification. By peptide mass fingerprinting and in vitro gene expression we have also shown that two of the genes encode the isozymes EST9 (formerly ESTC) and EST23. EST9 is the major 'alpha staining' esterase in zymograms of gut tissues in feeding stages while orthologues of EST23 confer resistance to organophosphorus insecticides in other higher Diptera. The results for EST9 and EST23 concur with previous suggestions that the products of the alpha esterase cluster function in digestion and detoxification of xenobiotic esters. However, many of the other genes in the cluster show developmental or tissue-specific expression that seems inconsistent with such roles. Furthermore, there is generally poor correspondence between the mRNA expression patterns of the remaining eight genes and isozymes previously characterized by standard techniques of electrophoresis and staining, suggesting that the alpha cluster might only account for a small minority of the esterase isozyme profile.
在这里,我们展示了黑腹果蝇α酯酶基因簇的10个基因在表达谱上是如何发生显著分化的。结合之前描述的序列差异,这表明存在显著的功能多样化。通过肽质量指纹图谱和体外基因表达,我们还表明其中两个基因编码同工酶EST9(以前称为ESTC)和EST23。EST9是进食阶段肠道组织酶谱中的主要“α染色”酯酶,而EST23的直系同源物在其他高等双翅目中赋予对有机磷杀虫剂的抗性。EST9和EST23的结果与之前的观点一致,即α酯酶基因簇的产物在异源生物酯的消化和解毒中起作用。然而,该基因簇中的许多其他基因表现出发育或组织特异性表达,这似乎与这些作用不一致。此外,其余八个基因的mRNA表达模式与先前通过标准电泳和染色技术鉴定的同工酶之间通常缺乏良好的对应关系,这表明α基因簇可能仅占酯酶同工酶谱的一小部分。