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(-)-DHMEQ 通过损害 DNA 结合来抑制经典 NF-κB 的核定位。

Inhibition of canonical NF-κB nuclear localization by (-)-DHMEQ via impairment of DNA binding.

作者信息

Horie Kana, Ma Jun, Umezawa Kazuo

机构信息

Department of Applied Chemistry, Faculty of Science and Technology, Keio University, Yokohama, Japan.

出版信息

Oncol Res. 2015;22(2):105-15. doi: 10.3727/096504014X14146137738628.

Abstract

We previously discovered (-)-DHMEQ as a selective inhibitor of NF-κB, and it was shown to suppress many cancer and inflammation models in animals. (-)-DHMEQ directly binds to NF-κB components to inhibit DNA binding, and moreover, it often inhibits nuclear translocation of NF-κB. The mechanism of inhibiting nuclear translocation has been elucidated for RelB, a main noncanonical NF-κB component. However, it was not elucidated for p65, a main canonical NF-κB component. In the present research, we studied how (-)-DHMEQ inhibits nuclear localization of p65. First, (-)-DHMEQ inhibited p65 nuclear accumulation in adult T-cell leukemia MT-2 cells in which canonical p65 is constitutively activated. But there was no change in the stability and importin-α3 affinity of p65. Then, we prepared a p65 mutant protein with Arg35Ala and Tyr36Ala (AA) mutations having no DNA-binding ability in HeLa cells. The p65 AA mutant showed reduced nuclear localization without changing the stability and importin affinity. Taken together, the mechanism of inhibition is different between RelB and p65, and inhibition of p65 nuclear localization is likely to be due to the inhibition of DNA binding changing the equilibrium between the nuclear and cytoplasmic amounts of p65.

摘要

我们之前发现(-)-DHMEQ是一种NF-κB的选择性抑制剂,并且已证明它能抑制动物体内的多种癌症和炎症模型。(-)-DHMEQ直接与NF-κB组分结合以抑制DNA结合,此外,它还常常抑制NF-κB的核转位。对于主要的非经典NF-κB组分RelB,抑制核转位的机制已得到阐明。然而,对于主要的经典NF-κB组分p65,其机制尚未阐明。在本研究中,我们研究了(-)-DHMEQ如何抑制p65的核定位。首先,(-)-DHMEQ抑制了成体T细胞白血病MT-2细胞中p65的核积累,在该细胞中经典的p65持续激活。但是p65的稳定性和与输入蛋白-α3的亲和力没有变化。然后,我们在HeLa细胞中制备了具有无DNA结合能力的Arg35Ala和Tyr36Ala(AA)突变的p65突变蛋白。p65 AA突变体显示核定位减少,而稳定性和输入蛋白亲和力没有改变。综上所述,RelB和p65之间的抑制机制不同,p65核定位的抑制可能是由于DNA结合的抑制改变了p65在核和细胞质中的量之间的平衡。

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