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通过过表达研究分析Ufd1l基因产物的细胞内分布及凋亡参与情况。

Analysis of intracellular distribution and apoptosis involvement of the Ufd1l gene product by over-expression studies.

作者信息

Amati Francesca, Condò Ivano, Conti Emanuela, Sangiuolo Federica, Dallapiccola Bruno, Testi Roberto, Novelli Giuseppe

机构信息

Dipartimento di Biopatologia e Diagnostica per Immagini, Università di Roma Tor Vergata, Rome, Italy.

出版信息

Cell Biochem Funct. 2003 Sep;21(3):263-7. doi: 10.1002/cbf.1021.

Abstract

UFD1L is the human homologue of the yeast ubiquitin fusion degradation 1 (Ufd1) gene and maps on chromosome 22q11.2 in the typically deleted region (TDR) for DiGeorge/velocardiofacial syndromes (DGS/VCFS). In yeast, Ufd1 protein is involved in a degradation pathway for ubiquitin fused products (UFD pathway). Several studies have demonstrated that Ufd1 is a component of the Cdc48-Ufd1-Npl4 multiprotein complex which is active in the recognition of several polyubiquitin-tagged proteins and facilitates their presentation to the 26S proteasome for protein degradation or even more specific processing. The multiprotein complex Cdc48-Ufd-Npl4 is also active in mammalian cells. The biochemical role of UFD1L protein in human cells is unknown, even though the interaction between UFD1L and NPL4 proteins has been maintained. In order to clarify this issue, we examined the intracellular distribution of the protein in different mammalian cells and studied its involvement in the Fas and ceramide factors-mediated apoptotic pathways. We established that in mammalian cells, Ufd1l is localized around the nucleus and that it does not interfere with Fas-and ceramide-mediated apoptosis.

摘要

UFD1L是酵母泛素融合降解1(Ufd1)基因的人类同源物,定位于22q11.2染色体上,该区域是DiGeorge/腭心面综合征(DGS/VCFS)典型的缺失区域(TDR)。在酵母中,Ufd1蛋白参与泛素融合产物的降解途径(UFD途径)。多项研究表明,Ufd1是Cdc48-Ufd1-Npl4多蛋白复合物的一个组成部分,该复合物在识别几种多泛素化标记的蛋白质方面具有活性,并促进它们呈递给26S蛋白酶体进行蛋白质降解或更特异性的加工。多蛋白复合物Cdc48-Ufd-Npl4在哺乳动物细胞中也具有活性。尽管UFD1L和NPL4蛋白之间的相互作用得以保留,但UFD1L蛋白在人类细胞中的生化作用尚不清楚。为了阐明这个问题,我们研究了该蛋白在不同哺乳动物细胞中的细胞内分布,并研究了它在Fas和神经酰胺因子介导的凋亡途径中的作用。我们确定,在哺乳动物细胞中,Ufd1l定位于细胞核周围,并且它不干扰Fas和神经酰胺介导的凋亡。

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