Narayan Vikram, Eckert Mirjam, Zylicz Alicja, Zylicz Maciej, Ball Kathryn L
Cancer Research UK Interferon and Cell Signalling Group, Cell Signalling Unit, Institute of Genetics and Molecular Medicine, University of Edinburgh, Edinburgh EH4 2XR, Scotland, United Kingdom.
J Biol Chem. 2009 Sep 18;284(38):25889-99. doi: 10.1074/jbc.M109.019505. Epub 2009 Jun 5.
Our understanding of the post-translational processes involved in regulating the interferon regulatory factor-1 (IRF-1) tumor suppressor protein is limited. The introduction of mutations within the C-terminal Mf1 domain (amino acids 301-325) impacts on IRF-1-mediated gene repression and growth suppression as well as the rate of IRF-1 degradation. However, nothing is known about the proteins that interact with this region to modulate IRF-1 function. A biochemical screen for Mf1-interacting proteins has identified an LXXLL motif that is required for binding of Hsp70 family members and cooperation with Hsp90 to regulate IRF-1 turnover and activity. These conclusions are supported by the finding that Hsp90 inhibitors suppress IRF-1-dependent transcription shortly after treatment, although at later time points inhibition of Hsp90 leads to an Hsp70-dependent depletion of nuclear IRF-1. Conversely, the half-life of IRF-1 is increased by Hsp90 in an ATPase-dependent manner leading to the accumulation of nuclear but not cytoplasmic IRF-1. This study begins to elucidate the role of the Mf1 domain of IRF-1 in orchestrating the recruitment of regulatory factors that can impact on both its turnover and transcriptional activity.
我们对参与调节干扰素调节因子-1(IRF-1)肿瘤抑制蛋白的翻译后过程的了解有限。在C末端Mf1结构域(氨基酸301 - 325)内引入突变会影响IRF-1介导的基因抑制和生长抑制以及IRF-1的降解速率。然而,对于与该区域相互作用以调节IRF-1功能的蛋白质却一无所知。一项针对与Mf1相互作用蛋白的生化筛选鉴定出一个LXXLL基序,它是Hsp70家族成员结合以及与Hsp90协同调节IRF-1周转和活性所必需的。这些结论得到以下发现的支持:Hsp90抑制剂在处理后不久就会抑制IRF-1依赖性转录,尽管在稍后的时间点抑制Hsp90会导致核IRF-1以Hsp70依赖性方式耗竭。相反,Hsp90以ATP酶依赖性方式增加IRF-1的半衰期,导致核内而非细胞质中IRF-1的积累。这项研究开始阐明IRF-1的Mf1结构域在协调募集可影响其周转和转录活性的调节因子方面的作用。