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CRX 和 NRL 之间插入的特定 DNA 碱基序列有助于视紫红质的表达。

A DNA base-specific sequence interposed between CRX and NRL contributes to RHODOPSIN expression.

机构信息

Department of Translational Medicine, University of Naples Federico II, Naples, Italy.

Department of Molecular Medicine and Medical Biotechnology, University of Naples Federico II, Naples, Italy.

出版信息

Sci Rep. 2024 Nov 1;14(1):26313. doi: 10.1038/s41598-024-76664-8.

Abstract

Gene expression emerges from DNA sequences through the interaction of transcription factors (TFs) with DNA cis-regulatory sequences. In eukaryotes, TFs bind to transcription factor binding sites (TFBSs) with differential affinities, enabling cell-specific gene expression. In this view, DNA enables TF binding along a continuum ranging from low to high affinity depending on its sequence composition; however, it is not known whether evolution has entailed a further level of entanglement between DNA-protein interaction. Here we found that the composition and length (22 bp) of the DNA sequence interposed between the CRX and NRL retinal TFs in the proximal promoter of RHODOPSIN (RHO) largely controls the expression levels of RHO. Mutagenesis of CRX-NRL DNA linking sequences (here termed "DNA-linker") results in uncorrelated gene expression variation. In contrast, mutual exchange of naturally occurring divergent human and mouse Rho cis-regulatory elements conferred similar yet species-specific Rho expression levels. Two orthogonal DNA-binding proteins targeted to the DNA-linker either activate or repress the expression of Rho depending on the DNA-linker orientation relative to the CRX and NRL binding sites. These results argue that, in this instance, DNA itself contributes to CRX and NRL activities through a code based on specific base sequences of a defined length, ultimately determining optimal RHO expression levels.

摘要

基因表达是通过转录因子(TFs)与 DNA 顺式调控序列的相互作用从 DNA 序列中产生的。在真核生物中,TFs 以不同的亲和力与转录因子结合位点(TFBSs)结合,从而实现细胞特异性基因表达。在这种观点中,DNA 能够根据其序列组成在从低亲和力到高亲和力的连续体上允许 TF 结合;然而,目前尚不清楚进化是否导致了 DNA-蛋白质相互作用的进一步纠缠。在这里,我们发现视紫红质(RHO)近端启动子中 CRX 和 NRL 视网膜 TFs 之间的 DNA 序列的组成和长度(22bp)在很大程度上控制了 RHO 的表达水平。CRX-NRL DNA 连接序列(此处称为“DNA 接头”)的突变导致基因表达的相关性变异。相比之下,自然发生的人源和鼠源 Rho 顺式调控元件的相互交换赋予了相似但具有物种特异性的 Rho 表达水平。两种针对 DNA 接头的正交 DNA 结合蛋白根据 DNA 接头相对于 CRX 和 NRL 结合位点的方向激活或抑制 Rho 的表达。这些结果表明,在这种情况下,DNA 本身通过基于特定碱基序列的特定长度的代码来贡献 CRX 和 NRL 的活性,最终决定了最佳的 RHO 表达水平。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/716c/11530525/fa2b1c51c051/41598_2024_76664_Fig1_HTML.jpg

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