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当在黑腹果蝇发育中的眼睛中表达时,GAL4会导致发育缺陷和细胞凋亡。

GAL4 causes developmental defects and apoptosis when expressed in the developing eye of Drosophila melanogaster.

作者信息

Kramer Jamie M, Staveley Brian E

机构信息

Department of Biology, Memorial University of Newfoundland, St. John's, Newfoundland, Canada A1B 3X9.

出版信息

Genet Mol Res. 2003 Mar 31;2(1):43-7.

Abstract

The UAS/GAL4 ectopic expression system is widely used in Drosophila melanogaster for the overexpression of transgenes. This system operates under the assumption that the yeast transcription factor, GAL4, is inactive in D. melanogaster. Thus, GAL4 can be expressed under the control of D. melanogaster -specific promoters with little effect upon the organism. We have shown that expression of GAL4 in the developing eye under the control of the glass multiple reporter (GMR) promoter element does have an effect on eye development. Although GMR-GAL4 heterozygotes appear normal when raised at 25 degrees C, the homozygotes have a highly disorganized ommatidial array. In addition, the levels of apoptosis in the third-instar larval eye imaginal disc (where GAL4 is expressed) are slightly higher in GMR-GAL4 heterozygotes, and much higher in GMR-GAL4 homozygotes when compared to wild type discs. The morphological eye defects caused by GMR-GAL4 are significantly enhanced when flies are raised at 29 degrees C (presumably due to the higher activity of GAL4 at this temperature); however, the levels of apoptosis appear to be similar at these two temperatures. Taken together, these data suggest that GAL4 can have adverse effects on D. melanogaster development, especially at high expression levels. In addition, GAL4 appears to induce apoptosis even in the absence of any visible morphological defects. Thus, despite the benefits of the UAS/GAL4 ectopic expression system, one must use caution in the design and interpretation of experiments.

摘要

UAS/GAL4异位表达系统在黑腹果蝇中被广泛用于转基因的过表达。该系统的运作基于这样一种假设,即酵母转录因子GAL4在黑腹果蝇中是无活性的。因此,GAL4可以在黑腹果蝇特异性启动子的控制下表达,而对生物体几乎没有影响。我们已经表明,在玻璃多重报告基因(GMR)启动子元件的控制下,GAL4在发育中的眼睛中表达确实会对眼睛发育产生影响。虽然GMR-GAL4杂合子在25摄氏度饲养时看起来正常,但纯合子的小眼阵列高度紊乱。此外,与野生型眼盘相比,GMR-GAL4杂合子在三龄幼虫眼成虫盘(GAL4在此处表达)中的凋亡水平略高,而GMR-GAL4纯合子中的凋亡水平则高得多。当果蝇在29摄氏度饲养时(可能是由于GAL4在此温度下活性较高),GMR-GAL4引起的形态学眼睛缺陷会显著增强;然而,这两个温度下的凋亡水平似乎相似。综上所述,这些数据表明GAL4可能对黑腹果蝇的发育产生不利影响,尤其是在高表达水平时。此外,即使在没有任何可见形态学缺陷的情况下,GAL4似乎也会诱导凋亡。因此,尽管UAS/GAL4异位表达系统有诸多优点,但在实验设计和解释时仍必须谨慎。

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