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Specificity in cholesterol regulation of gene expression by coevolution of sterol regulatory DNA element and its binding protein

机译:固醇调节DNA元件及其结合蛋白共同进化对胆固醇调节基因表达的特异性

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摘要

When demand for cholesterol rises in mammalian cells, the sterol regulatory element (SRE) binding proteins (SREBPs) are released from their membrane anchor through proteolysis. Then, the N-terminal region enters the nucleus and activates genes of cholesterol uptake and biosynthesis. Basic helix–loop–helix (bHLH) proteins such as SREBPs bind to a palindromic DNA sequence called the E-box (5′-CANNTG-3′). However, SREBPs are special because they also bind direct repeat elements called SREs. Importantly, sterol regulation of all promoters studied thus far is mediated by SREBP binding only to SREs. To study the reason for this we converted the direct repeat SRE from the sterol-regulated low-density lipoprotein receptor promoter into an E-box. In this report we show that SREBPs are still able to bind and activate this promoter however, sterol regulation is lost. The results are consistent with the mutant promoter being a target for promiscuous activation by constitutively expressed E-box binding bHLH proteins that are not regulated by cholesterol. Kim and coworkers [Kim, J. B., Spotts, G. D., Halvorsen, Y.-D., Shih, H.-M., Ellenberger, T., Towle, H. C. & Spiegelman, B. M. (1995) Mol. Cell. Biol. 15, 2582–2588] demonstrated that the dual DNA binding specificity of SREBPs is caused by a specific tyrosine in the conserved basic region of the DNA binding domain that corresponds to an arginine in all other bHLH proteins that recognize only E-boxes. Taken together the data suggest an evolutionary mechanism where a DNA binding protein along with its recognition site have coevolved to ensure maximal specificity and sensitivity in a crucial nutritional regulatory response.
机译:当哺乳动物细胞对胆固醇的需求增加时,固醇调节元件(SRE)结合蛋白(SREBPs)通过蛋白水解作用从其膜锚释放出来。然后,N末端区域进入细胞核并激活胆固醇摄取和生物合成的基因。基本的螺旋-环-螺旋(bHLH)蛋白(如SREBPs)与回文DNA序列结合,称为E-box(5'-CANNTG-3')。但是,SREBP是特殊的,因为它们还绑定称为SRE的直接重复元素。重要的是,迄今为止研究的所有启动子的固醇调节都是通过SREBP仅与SRE结合而介导的。为了研究其原因,我们将直接重复的SRE从固醇调节的低密度脂蛋白受体启动子转化为E-box。在该报告中,我们表明SREBPs仍然能够结合并激活该启动子,但是,固醇调节失去了。该结果与突变启动子是通过不受胆固醇调节的组成型表达的E-box结合bHLH蛋白的混杂激活的靶标一致。 Kim和他的同事[Kim,J. B.,Spotts,G. D.,Halvorsen,Y.-D.,Shih,H.-M.,Ellenberger,T.,Towle,H.C.&Spiegelman,B.M.(1995)细胞。生物学[15,2582–2588]证明SREBP的双重DNA结合特异性是由DNA结合域的保守碱基区域中的一个特定酪氨酸引起的,该酪氨酸对应于仅识别E-box的所有其他bHLH蛋白中的精氨酸。总之,数据表明了一种进化机制,其中DNA结合蛋白及其识别位点共同进化,以确保在关键的营养调节反应中具有最大的特异性和敏感性。

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