Navarro-Martín Laia, Galay-Burgos Malyka, Sweeney Glen, Piferrer Francesc
Institut de Ciències del Mar, Consejo Superior de Investigaciones Científicas (CSIC), Passeig Marítim, 37-49, 08003 Barcelona, Spain.
Mol Cell Endocrinol. 2009 Feb 27;299(2):240-51. doi: 10.1016/j.mce.2008.11.013. Epub 2008 Nov 21.
Sox genes participate in several developmental processes, including sex determination and differentiation. In this study, the genomic structure of sox17 was characterized in the sea bass (sb). Two transcripts, one producing a normal protein (sb Sox17) and another producing a truncated protein (sb t-Sox17) were detected. A third, novel transcript, originated by intron retention (sb i-sox17) was also observed. Sb sox17 was widely distributed, whereas sb i-sox17 was predominantly found in skin and brain. In gonads, sb sox17 expression first increased at 150 days of age, coinciding with the onset of sex differentiation. At 250 days and onwards, sb sox17 expression was significantly higher in females, and mRNA levels correlated with those of gonadal aromatase. Thus, this study provides the first evidence for the presence of alternative splicing by intron retention in a Sox17 gene, and for sex-related differences in expression, implicating sox17 in ovarian development and function in fish.
Sox基因参与多个发育过程,包括性别决定和分化。在本研究中,对海鲈(sb)中sox17的基因组结构进行了表征。检测到两种转录本,一种产生正常蛋白质(sb Sox17),另一种产生截短蛋白质(sb t-Sox17)。还观察到第三种新的转录本,它由内含子保留产生(sb i-sox17)。Sb sox17广泛分布,而sb i-sox17主要在皮肤和大脑中发现。在性腺中,sb sox17表达在150日龄时首次增加,与性别分化开始时间一致。在250日龄及以后,sb sox17在雌性中的表达显著更高,且mRNA水平与性腺芳香化酶的水平相关。因此,本研究首次证明了Sox17基因中存在通过内含子保留进行的可变剪接,以及表达中的性别相关差异,表明sox17参与鱼类卵巢发育和功能。