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特异性蛋白1的类泛素化修饰通过改变其定位并增强特异性蛋白1的蛋白水解过程来促进其降解。

Sumoylation of specificity protein 1 augments its degradation by changing the localization and increasing the specificity protein 1 proteolytic process.

作者信息

Wang Yi-Ting, Chuang Jian-Ying, Shen Meng-Ru, Yang Wen-Bin, Chang Wen-Chang, Hung Jan-Jong

机构信息

Institute of Basic Medical Sciences, National Cheng Kung University, Tainan 701, Taiwan.

出版信息

J Mol Biol. 2008 Jul 25;380(5):869-85. doi: 10.1016/j.jmb.2008.05.043. Epub 2008 May 24.

Abstract

Although specificity protein 1 (Sp1) accumulation has been found in various tumor strains, its mechanism is still not very clear. Herein, we found that modification of Sp1 by SUMO-1 facilitates Sp1 degradation. Our findings revealed that, although the amounts of Sp1 and Sp1 mutant (K16R) [Sp1(K16R)] mRNA in cells were equal, the protein level of Sp1(K16R) was higher than that of wild-type Sp1. We also proved that this sumoylation site was not the residue at which ubiquitination occurred. Invitro and in vivo pull-down assays revealed that more sumoylated Sp1 was localized in the cytoplasm, and the interaction between SUMO-1-Sp1 and the proteasome subunit rpt6 in HeLa cells was enhanced. In addition, although Sp1 accumulated in the tumorous cervical tissue, it was not prone to sumoylation. Finally, by overexpression of HA (hemagglutinin)-SUMO-1-Sp1-myc, HA-Sp1-myc, and HA-Sp1(K16R), we found that modification of Sp1 by SUMO-1 was important for Sp1 proteolysis. In conclusion, modification of Sp1 by SUMO-1 altered its localization and then increased its interaction with rpt6. This interaction increased the efficiency of Sp1 proteolytic processing and ubiquitination and then resulted in Sp1 degradation. Therefore, sumoylation of Sp1 is attenuated during tumorigenesis in order to increase Sp1 stability.

摘要

尽管在多种肿瘤细胞系中均发现特异性蛋白1(Sp1)存在积累现象,但其机制仍不甚明了。在此,我们发现小泛素样修饰蛋白1(SUMO-1)对Sp1的修饰促进了Sp1的降解。我们的研究结果显示,尽管细胞中Sp1及其突变体(K16R)[Sp1(K16R)]的mRNA含量相等,但Sp1(K16R)的蛋白水平高于野生型Sp1。我们还证明该类泛素化位点并非发生泛素化修饰的残基。体外和体内下拉实验表明,更多经SUMO化修饰的Sp1定位于细胞质中,且HeLa细胞中SUMO-1-Sp1与蛋白酶体亚基rpt6之间的相互作用增强。此外,尽管Sp1在宫颈肿瘤组织中积累,但其不易发生SUMO化修饰。最后,通过过表达血凝素(HA)-SUMO-1-Sp1- myc、HA-Sp1-myc和HA-Sp1(K16R),我们发现SUMO-1对Sp1的修饰对于Sp1的蛋白水解至关重要。总之,SUMO-1对Sp1的修饰改变了其定位并增强了其与rpt6的相互作用。这种相互作用提高了Sp1蛋白水解加工和泛素化的效率,进而导致Sp1降解。因此,在肿瘤发生过程中Sp1的SUMO化修饰减弱,以提高Sp1的稳定性。

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