Willis C M, Wrana J L, Klüppel M
Department of Pediatrics, Integrated Graduate Program, Northwestern University, Chicago, IL, USA.
Genet Mol Res. 2009 Nov 3;8(4):1331-43. doi: 10.4238/vol8-4gmr673.
Chondroitin-4-sulfotransferase-1(C4ST-1)/carbohydrate sulfotransferase 11 (CHST11) is a Golgi-bound enzyme involved in the biosynthesis of the glycosaminoglycan chondroitin sulfate. The sulfation pattern of chondroitin is tightly regulated during development, injury and disease, with the temporal and spatial expression of chondroitin sulfotransferase genes believed to be a crucial determinant of the fine balance of chondroitin sulfation. We have previously identified mouse C4st-1 as a target gene of ligands of the TGFbeta superfamily of growth factors, which could positively regulate C4st-1 expression in a number of cell types. We have also shown that a gene trap loss-of-function mutation in C4st-1 leads to severe skeletal abnormalities during mouse embryogenesis. In addition, we described a highly specific temporal and spatial expression pattern of C4st-1 during mouse embryogenesis. However, the transcriptional regulatory mechanisms that control C4st-1 gene expression remain unexplored. In order to gain knowledge on the transcriptional regulation of C4ST-1, we used a bioinformatical approach to identify conserved putative long-range cis-regulatory modules in a region of 120 kb spanning the 5' end of the C4ST-1 gene. Luciferase reporter assays in human HEK293T and mouse NmuMG cells identified a functional C4ST-1 promoter, as well as a number of cis-regulatory modules able to positively and negatively regulate C4ST-1 expression. Moreover, we identified TGFbeta- responsive regulatory modules that can function in a cell type-specific fashion. Taken together, our results identify TGFbeta-dependent and -independent cis-regulatory modules of the C4ST-1 gene.
硫酸软骨素-4-磺基转移酶-1(C4ST-1)/碳水化合物磺基转移酶11(CHST11)是一种定位于高尔基体的酶,参与糖胺聚糖硫酸软骨素的生物合成。在发育、损伤和疾病过程中,硫酸软骨素的硫酸化模式受到严格调控,硫酸软骨素磺基转移酶基因的时空表达被认为是硫酸软骨素硫酸化精细平衡的关键决定因素。我们之前已将小鼠C4st-1鉴定为转化生长因子β(TGFβ)超家族生长因子配体的靶基因,其可在多种细胞类型中正向调节C4st-1的表达。我们还表明,C4st-1中的基因陷阱功能丧失突变会导致小鼠胚胎发育过程中出现严重的骨骼异常。此外,我们描述了C4st-1在小鼠胚胎发育过程中高度特异性的时空表达模式。然而,控制C4st-1基因表达的转录调控机制仍未被探索。为了了解C4ST-1的转录调控,我们采用生物信息学方法,在跨越C4ST-1基因5'端的120 kb区域内鉴定保守的假定远距离顺式调控模块。在人HEK293T细胞和小鼠NmuMG细胞中进行的荧光素酶报告基因检测鉴定出一个功能性C4ST-1启动子,以及一些能够正向和负向调节C4ST-1表达的顺式调控模块。此外,我们鉴定出了能以细胞类型特异性方式发挥作用的TGFβ反应性调控模块。综上所述,我们的结果鉴定出了C4ST-1基因的TGFβ依赖性和非依赖性顺式调控模块。