Wang Hang, Liu Feng, Millette Clarke F, Kilpatrick Daniel L
Department of Physiology, University of Massachusetts Medical School, Worcester, Massachusetts 01655, USA.
Mol Cell Biol. 2002 Dec;22(24):8478-90. doi: 10.1128/MCB.22.24.8478-8490.2002.
Cholesterol biosynthesis in somatic cells is controlled at the transcriptional level by a homeostatic feedback pathway involving sterol regulatory element binding proteins (SREBPs). These basic helix-loop-helix (bHLH)-Zip proteins are synthesized as membrane-bound precursors, which are cleaved to form a soluble, transcriptionally active mature SREBP that regulates the promoters for genes involved in lipid synthesis. Homeostasis is conferred by sterol feedback inhibition of this maturation process. Previous work has demonstrated the expression of SREBP target genes in the male germ line, several of which are highly up-regulated during specific developmental stages. However, the role of SREBPs in the control of sterol regulatory element-containing promoters during spermatogenesis has been unclear. In particular, expression of several of these genes in male germ cells appears to be insensitive to sterols, contrary to SREBP-dependent gene regulation in somatic cells. Here, we have characterized a novel isoform of the transcription factor SREBP2, which is highly enriched in rat and mouse spermatogenic cells. This protein, SREBP2gc, is expressed in a stage-dependent fashion as a soluble, constitutively active transcription factor that is not subject to feedback control by sterols. These findings likely explain the apparent sterol-insensitive expression of lipid synthesis genes during spermatogenesis. Expression of a sterol-independent, constitutively active SREBP2gc in the male germ line may have arisen as a means to regulate SREBP target genes in specific developmental stages. This may reflect unique roles for cholesterol synthesis and other functional targets of SREBPs during spermatogenesis.
体细胞中的胆固醇生物合成在转录水平上由一个涉及固醇调节元件结合蛋白(SREBPs)的稳态反馈途径控制。这些碱性螺旋-环-螺旋(bHLH)-拉链蛋白作为膜结合前体被合成,然后被切割形成一种可溶性的、具有转录活性的成熟SREBP,它调控参与脂质合成的基因的启动子。这种稳态是通过固醇对该成熟过程的反馈抑制来实现的。先前的研究表明SREBP靶基因在雄性生殖系中有表达,其中一些基因在特定发育阶段高度上调。然而,SREBPs在精子发生过程中对含固醇调节元件的启动子的控制作用尚不清楚。特别是,这些基因中的一些在雄性生殖细胞中的表达似乎对固醇不敏感,这与体细胞中依赖SREBP的基因调控相反。在这里,我们鉴定了转录因子SREBP2的一种新型异构体,它在大鼠和小鼠的生精细胞中高度富集。这种蛋白质,即SREBP2gc,以阶段依赖的方式表达,是一种可溶性的、组成型活性转录因子,不受固醇的反馈控制。这些发现可能解释了精子发生过程中脂质合成基因明显的固醇不敏感表达。在雄性生殖系中表达一种不依赖固醇的、组成型活性的SREBP2gc可能是在特定发育阶段调节SREBP靶基因的一种方式。这可能反映了精子发生过程中胆固醇合成以及SREBPs的其他功能靶点的独特作用。