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Atox1缺失对顺铂细胞药理学的影响。

Effects of the loss of Atox1 on the cellular pharmacology of cisplatin.

作者信息

Safaei Roohangiz, Maktabi Mohammad H, Blair Brian G, Larson Christopher A, Howell Stephen B

机构信息

Moores UCSD Cancer Center, University of California, San Diego, 3855 Health Sciences Drive, La Jolla, CA 92093-0819, United States.

出版信息

J Inorg Biochem. 2009 Mar;103(3):333-41. doi: 10.1016/j.jinorgbio.2008.11.012. Epub 2008 Nov 30.

Abstract

Previous work has demonstrated that the copper (Cu) transporters Ctr1, Atp7a and Atp7b regulate the cellular pharmacology of cisplatin (CDDP) by mediating its uptake and efflux. It was also shown that, in the process of uptake by Ctr1, CDDP triggers the rapid proteasomal degradation of its own transporter. The current study examined the role of the metallochaperone Atox1 in the regulation of uptake, efflux and subcellular distribution of CDDP by using a pair of fibroblast cell lines established from Atox1(+/+) and Atox1(-/-) mice. Atox1 is a metallochaperone that is known to play a central role in distributing Cu within the cells and was recently shown to act as a Cu-dependent transcription factor. Loss of Atox1 increased Cu accumulation and reduced efflux. In contrast, loss of Atox1 reduced the influx of CDDP and subsequent accumulation in vesicular compartments and in DNA. Loss of Atox1 was found to block the CDDP-induced down regulation of Ctr1. Ctr1 was found to be polyubiquitinated in an Atox1-dependent manner during CDDP exposure. In conclusion, Atox1 is required for the polyubiquitination of Ctr1 and the Ctr1-mediated uptake of CDDP.

摘要

先前的研究表明,铜(Cu)转运蛋白Ctr1、Atp7a和Atp7b通过介导顺铂(CDDP)的摄取和外排来调节其细胞药理学。研究还表明,在Ctr1摄取过程中,CDDP会触发其自身转运蛋白的快速蛋白酶体降解。本研究通过使用从Atox1(+/+)和Atox1(-/-)小鼠建立的一对成纤维细胞系,研究了金属伴侣蛋白Atox1在调节CDDP摄取、外排和亚细胞分布中的作用。Atox1是一种金属伴侣蛋白,已知在细胞内铜的分布中起核心作用,最近还被证明可作为一种铜依赖性转录因子。Atox1的缺失会增加铜的积累并减少外排。相反,Atox1的缺失会减少CDDP的内流以及随后在囊泡区室和DNA中的积累。研究发现,Atox1的缺失会阻断CDDP诱导的Ctr1下调。在CDDP暴露期间,发现Ctr以Atox1依赖的方式发生多聚泛素化。总之,Atox1是Ctr1多聚泛素化和Ctr1介导的CDDP摄取所必需的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/88ae/2919289/949073c6be84/nihms-223870-f0001.jpg

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