首页> 美国卫生研究院文献>Nucleic Acids Research >Structure and expression of the human XPBC/ERCC-3 gene involved in DNA repair disorders xeroderma pigmentosum and Cockaynes syndrome.
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Structure and expression of the human XPBC/ERCC-3 gene involved in DNA repair disorders xeroderma pigmentosum and Cockaynes syndrome.

机译:人XPBC / ERCC-3基因的结构和表达与DNA修复性色素干性皮肤病和Cockayne综合征有关。

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摘要

The human XPBC/ERCC-3 was cloned by virtue of its ability to correct the excision repair defect of UV-sensitive rodent mutants of complementation group 3. The gene appeared to be in addition implicated in the human, cancer prone repair disorder xeroderma pigmentosum group B, which is also associated with Cockayne's syndrome. Here we present the genomic architecture of the gene and its expression. The XPBC/ERCC-3 gene consists of at least 14 exons spread over approximately 45 kb. Notably, the donor splice site of the third exon contains a GC instead of the canonical GT dinucleotide. The promoter region, first exon and intron comprise a CpG island with several putative GC boxes. The promoter was confined to a region of 260 bp upstream of the presumed cap site and acts bidirectionally. Like the promoter of another excision repair gene, ERCC-1, it lacks classical promoter elements such as CAAT and TATA boxes, but it shares with ERCC-1 a hitherto unknown 12 nucleotide sequence element, preceding a polypyrimidine track. Despite the presence of (AU)-rich elements in the 3'-untranslated region, which are thought to be associated with short mRNA half-life actinomycin-D experiments indicate that the mRNA is very stable (t 1/2 greater than 3h). Southern blot analysis revealed the presence of XPBC/ERCC-3 cross-hybridizing fragments elsewhere in the genome, which may belong to a related gene.
机译:由于人类XPBC / ERCC-3具有纠正互补组3的紫外线敏感啮齿动物突变体的切除修复缺陷的能力而被克隆。该基因似乎还与人类易发癌的修复疾病干性色素性皮肤病组有关。 B,也与科卡因氏综合症有关。在这里,我们介绍了该基因的基因组结构及其表达。 XPBC / ERCC-3基因由至少14个外显子组成,分布在大约45 kb的位置。值得注意的是,第三个外显子的供体剪接位点包含GC而不是经典的GT二核苷酸。启动子区域,第一外显子和内含子包含一个带有几个推定的GC盒的CpG岛。启动子被限制在假定帽位上游260 bp的区域,并双向作用。像另一个切除修复基因ERCC-1的启动子一样,它缺少经典的启动子元件(如CAAT和TATA盒),但与ERCC-1共享一个迄今未知的12个核苷酸序列元件,位于多嘧啶轨道之前。尽管在3'-非翻译区中存在(AU)富集的元素,这被认为与短的半衰期放线菌素-D实验有关,但表明该mRNA非常稳定(t 1/2大于3h) 。 Southern印迹分析揭示了XPBC / ERCC-3交叉杂交片段在基因组其他地方的存在,其可能属于相关基因。

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