Cohen Shai, Ciechanover Aaron, Kravtsova-Ivantsiv Yelena, Lapid Dana, Lahav-Baratz Shirly
Cancer and Vascular Biology Research Center, The Rappaport Faculty of Medicine and Research Institute, Technion - Israel Institute of Technology, Haifa 31096, Israel.
Biochem Biophys Res Commun. 2009 Nov 13;389(2):205-10. doi: 10.1016/j.bbrc.2009.08.074. Epub 2009 Aug 18.
p105 plays dual roles in NF-kappaB signaling: in its precursor form it inhibits NF-kappaB activation, but limited processing by the ubiquitin system generates the p50 active subunit of the transcription factor. Here we show that ABIN-1, an A20-binding protein that is also known to attenuate NF-kappaB activation, inhibits p105 processing. p105 and ABIN-1 physically interact with one another, but the binding is not necessary for inhibition of processing. Rather, it appears to stabilize ABIN-1 and to increase its level, which further augments its inhibitory effect. Deletion of the processing inhibitory domain (PID) of p105 abrogates the inhibition which also requires the ABIN homology domain (AHD)-2 of ABIN-1. Together, the effects of ABIN-1 on p105 processing and of p105 on stabilizing ABIN-1 act to potentiate the NF-kappaB inhibitory activity of ABIN-1.
p105在核因子-κB(NF-κB)信号传导中发挥双重作用:以前体形式存在时,它抑制NF-κB激活,但泛素系统对其进行的有限加工会产生转录因子的p50活性亚基。我们在此表明,ABIN-1,一种已知也能减弱NF-κB激活的A20结合蛋白,可抑制p105的加工。p105与ABIN-1在物理上相互作用,但这种结合对于加工抑制并非必需。相反,它似乎能稳定ABIN-1并增加其水平,从而进一步增强其抑制作用。删除p105的加工抑制结构域(PID)可消除这种抑制,这也需要ABIN-1的ABIN同源结构域(AHD)-2。总之,ABIN-1对p105加工的作用以及p105对稳定ABIN-1的作用,共同增强了ABIN-1的NF-κB抑制活性。