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小鼠NF-ATx1 N端结构域中的两个独立的钙调神经磷酸酶结合区域将钙调神经磷酸酶招募至小鼠NF-ATx1。

Two independent calcineurin-binding regions in the N-terminal domain of murine NF-ATx1 recruit calcineurin to murine NF-ATx1.

作者信息

Liu J, Masuda E S, Tsuruta L, Arai N, Arai K

机构信息

Department of Molecular and Developmental Biology, Institute of Medical Science, University of Tokyo, Japan.

出版信息

J Immunol. 1999 Apr 15;162(8):4755-61.

Abstract

Intracellular calcium regulates events controlling nuclear translocation of nuclear factor of activated T cells (NF-AT). Calcium-dependent phosphatase calcineurin (CN) plays a central role in this process. Structural and functional analyses of the N-terminal domain of murine NF-ATx1, a member of the NF-AT family, have defined two distinct CN binding regions (CNBRs), CNBR1 and CNBR2, which are located in the region preceding the SP boxes of serine/proline-rich sequences and the region between the SP boxes and Rel similarity domain, respectively. The binding of murine NF-ATx1 (mNF-ATx1) to CN was abolished by deletion of these two regions, yet was unaffected by the individual deletion. In contrast, the nuclear translocation of mNF-ATx1 was much reduced when only CNBR2 was removed. Luciferase assay revealed that both regions are required for mNF-ATx1-dependent activation of the murine IL-2 promoter. Most importantly, recombinant CNBR2 bound CN with a higher affinity, and when expressed in Jurkat cells, it functioned as a dominant negative mutant that prevented the transcription driven by exogenous mNF-ATx1, probably by interfering with the function of CN. We propose that activation of mNF-ATx1 can be modulated through two distinct CN target regions. Our findings provide a new opportunity for pharmacological intervention with Ca2+-dependent signaling events.

摘要

细胞内钙调节控制活化T细胞核因子(NF-AT)核转位的事件。钙依赖性磷酸酶钙调神经磷酸酶(CN)在此过程中起核心作用。对NF-AT家族成员小鼠NF-ATx1的N端结构域进行的结构和功能分析确定了两个不同的CN结合区域(CNBRs),即CNBR1和CNBR2,它们分别位于富含丝氨酸/脯氨酸序列的SP盒之前的区域以及SP盒与Rel相似结构域之间的区域。删除这两个区域可消除小鼠NF-ATx1(mNF-ATx1)与CN的结合,但单个删除则不影响结合。相反,仅去除CNBR2时,mNF-ATx1的核转位会大大减少。荧光素酶测定表明,这两个区域都是mNF-ATx1依赖的小鼠IL-2启动子激活所必需的。最重要的是,重组CNBR2与CN的结合亲和力更高,并且在Jurkat细胞中表达时,它起显性负突变体的作用,可能通过干扰CN的功能来阻止外源mNF-ATx1驱动的转录。我们提出,mNF-ATx1的激活可以通过两个不同的CN靶区域进行调节。我们的发现为钙依赖性信号事件的药物干预提供了新的机会。

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