Crowley T E, Hazelrigg T
Department of Biological Sciences, Columbia University, New York, NY 10027, USA.
Mol Gen Genet. 1995 Aug 21;248(3):370-4. doi: 10.1007/BF02191604.
The Drosophila exuperantia gene (exu) functions in both oogenesis and spermatogenesis. Alternative RNA processing and promoter usage generates sex-specific transcripts which differ in their 5' and 3' untranslated regions, but encode the same predicted protein. We have sequenced the breakpoints of an exu allele which is defective in spermatogenesis but functions normally in oogenesis. This allele deletes most of the sequence specific to the male 3'-UTR, together with some flanking DNA, and causes a reduction in steady-state level of exu mRNA in the testis. In addition, we find that a smaller deletion which removes only sequence within the male 3'-UTR reduces the steady-state level of the mRNA and prevents an exu transgene from rescuing male sterility. Males carrying multiple copies of this transgene are fertile, suggesting that the male-specific 3'-UTR functions to maintain a proper level of exu product in the germline.
果蝇的“超常”基因(exu)在卵子发生和精子发生过程中均发挥作用。可变RNA加工和启动子使用产生了性别特异性转录本,它们在5'和3'非翻译区有所不同,但编码相同的预测蛋白质。我们对一个exu等位基因的断点进行了测序,该等位基因在精子发生过程中存在缺陷,但在卵子发生过程中功能正常。这个等位基因删除了大部分雄性特异性3'-UTR的序列以及一些侧翼DNA,并导致睾丸中exu mRNA的稳态水平降低。此外,我们发现一个较小的缺失,仅去除了雄性3'-UTR内的序列,也会降低mRNA的稳态水平,并阻止exu转基因挽救雄性不育。携带多个该转基因拷贝的雄性是可育的,这表明雄性特异性3'-UTR的功能是在生殖系中维持适当水平的exu产物。