基因
生物
泛素
DDB1型
单倍率不足
分子生物学
遗传学
同源染色体
北方斑点
酿酒酵母
编码区
突变
泛素结合酶
泛素连接酶
基因表达
克隆(编程)
信使核糖核酸
调节基因
核蛋白
表型
基因表达调控
EIF4EBP1型
调节顺序
TBX1型
细胞生物学
分子克隆
基因靶向
GPS2
基因定位
序列分析
原位杂交
肽序列
染色体
基因产物
HSP2
泛素蛋白连接酶类
小核核糖核蛋白
作者
BOTTA, ANNALISA,NOVELLI, GIUSEPPE,Tandoi, C,Fini, G,Calabrese, G,Dallapiccola, B
出处
期刊:Tor Vergata University - Cineca Institutional Research Information System
[University of Rome Tor Vergata]
日期:2001-09-05
被引量:64
摘要
The ubiquitin fusion-degradation gene (UFD1L) encodes the human homologue of the yeast ubiquitin fusion-degradation 1 protein, an essential component of the ubiquitin-dependent proteolytic turnover and mRNA processing. Although the UFD1L gene has been mapped in the region commonly deleted in patients with DiGeorge syndrome (DGS)/velocardiofacial syndrome (VCFS), correlation between its haploinsufficiency and the phenotype has not yet been established. The only functional data available about mammalian Ufd1p is the ability to form a complex with the rat Npl4 protein, a component of the nuclear pore complex. In this paper we report the cloning and molecular characterization of the human NPL4 gene. This gene encodes for a protein 96% homologous to the rat Npl4, and 44 and 34% homologous to the C. elegans and S. cerevisiae Npl4 gene products, respectively. Fluorescence in situ hybridization experiments on human metaphases localized the NPL4 gene on the most telomeric region of chromosome 17q. Northern blots analysis on foetal and adult human tissues revealed a major approximately 4.5 kb transcript most abundant in heart, brain, kidney and skeletal muscle. In order to test a potential relationship between nuclear transport defects and some aspect of the DGS/VCFS phenotype, we also exclude the presence of mutations in the NPL4 coding sequence in a subset of patients with DGS/VCFS and no detectable 22q11 deletion or mutations at the UFD1L locus.
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