Wang Qing-liang, Chen Shiming, Esumi Noriko, Swain Prabodh K, Haines Heidi S, Peng Guanghua, Melia B Michele, McIntosh Iain, Heckenlively John R, Jacobson Samuel G, Stone Edwin M, Swaroop Anand, Zack Donald J
McKusick-Nathans Institute of Genetic Medicine, Johns Hopkins University School of Medicine, Baltimore, MD, USA.
Hum Mol Genet. 2004 May 15;13(10):1025-40. doi: 10.1093/hmg/ddh117. Epub 2004 Mar 17.
A novel paired-like homeobox gene, designated as Qrx, was identified by a yeast one-hybrid screen using the bovine Rhodopsin promoter Ret-1 DNA regulatory element as bait. Qrx is preferentially expressed in both the outer and inner nuclear layers of the retina. Its homeodomain is nearly identical to that of Rx/Rax, a transcription factor that is essential for eye development, but it shares only limited homology elsewhere. Although Qrx and Rx/Rax show similar DNA binding properties in vitro, the two proteins demonstrate distinct target selectivity and functional behavior in promoter activity assays. QRX synergistically increases the transactivating function of the photoreceptor transcription factors Crx and NRL and it physically interacts with CRX. Qrx is present in the bovine and human genomes, but appears to be absent from the mouse genome. Nonetheless, a 5.8 kb upstream region of human QRX is capable of directing expression in presumptive photoreceptor precursor cells in transgenic mice. These results indicate that Qrx may be involved in modulating photoreceptor gene expression. In addition, the finding of rare heterozygous QRX sequence changes in three individuals with retinal degeneration raises the possibility that QRX may be involved in disease pathogenesis.
通过酵母单杂交筛选,以牛视紫红质启动子Ret-1 DNA调控元件为诱饵,鉴定出一个新的配对样同源框基因,命名为Qrx。Qrx在视网膜的外核层和内核层均有优先表达。其同源结构域与Rx/Rax几乎相同,Rx/Rax是一种对眼睛发育至关重要的转录因子,但它在其他部位仅具有有限的同源性。尽管Qrx和Rx/Rax在体外表现出相似的DNA结合特性,但在启动子活性测定中,这两种蛋白质表现出不同的靶标选择性和功能行为。QRX协同增强光感受器转录因子Crx和NRL的反式激活功能,并且它与CRX发生物理相互作用。Qrx存在于牛和人类基因组中,但在小鼠基因组中似乎不存在。尽管如此,人类QRX上游5.8 kb的区域能够在转基因小鼠的假定光感受器前体细胞中指导表达。这些结果表明,Qrx可能参与调节光感受器基因表达。此外,在三名视网膜变性患者中发现罕见的杂合QRX序列变化,这增加了QRX可能参与疾病发病机制的可能性。