Sun Y, Jin P, Witte D P, Grabowski G A
Division and Program in Human Genetics, Children's Hospital Medical Center, 3333 Burnet Avenue, TCHRF 1042, Cincinnati, OH 45229-3039, USA.
Biochem J. 2000 Dec 1;352 Pt 2(Pt 2):549-56.
The expression of prosaposin is temporally and spatially regulated at the transcriptional and post-translational levels. In vitro, the mouse prosaposin promoter contains functional RORE [retinoic acid-receptor-related orphan receptor alpha subunit (RORalpha)-binding element], Sp1 and U (unknown) sites within 310 bp directly 5' to the transcription start site and additional elements within 2400 bp 5' to the transcription start site. To elucidate promoter regions important to tissue-preferential expression in vivo, transgenic mice were created with 5'-flanking deletions of the prosaposin gene fused to a luciferase reporter. Nearly exclusive expression was observed in cerebrum, cerebellum and eyes of adult transgenic mice containing constructs with 234-310 bp of 5'-flanking DNA. This central nervous system (CNS) expression was due to the presence of RORE and overlapping Sp1 sites in this region. Internal deletion of RORE and the Sp1 cluster from the longer constructs with 2400 bp of 5'-flanking DNA significantly diminished expression in the CNS. The appearance of substantial visceral tissue (e.g. liver, spleen, lung, kidney, thymus and heart) expression was obtained with transgenic mice bearing constructs with 742-2400 bp of 5'-flanking DNA. The cellular localization of luciferase reporter-gene expression from these constructs corresponded closely with that for prosaposin. These results define important CNS and visceral regulatory regions in the promoter in vivo and may be sufficient to account for the majority of prosaposin's tissue-preferential expression.
prosaposin的表达在转录和翻译后水平上受到时间和空间的调控。在体外,小鼠prosaposin启动子在转录起始位点直接5'端的310 bp内包含功能性视黄酸受体相关孤儿受体α亚基(RORα)结合元件(RORE)、Sp1和U(未知)位点,以及在转录起始位点5'端的2400 bp内的其他元件。为了阐明对体内组织优先表达重要的启动子区域,构建了prosaposin基因5'侧翼缺失并与荧光素酶报告基因融合的转基因小鼠。在含有234 - 310 bp 5'侧翼DNA构建体的成年转基因小鼠的大脑、小脑和眼睛中观察到几乎特异性的表达。这种中枢神经系统(CNS)表达是由于该区域存在RORE和重叠的Sp1位点。从具有2400 bp 5'侧翼DNA的较长构建体中内部缺失RORE和Sp1簇显著降低了CNS中的表达。在携带具有742 - 2400 bp 5'侧翼DNA构建体的转基因小鼠中出现了大量内脏组织(如肝脏、脾脏、肺、肾脏、胸腺和心脏)的表达。这些构建体的荧光素酶报告基因表达的细胞定位与prosaposin的定位密切对应。这些结果确定了体内启动子中重要的中枢神经系统和内脏调控区域,可能足以解释prosaposin大部分的组织优先表达。