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新型肿瘤抑制因子AIMP3/p18与ATM相互作用所需的三维结构及残基的确定

Determination of three-dimensional structure and residues of the novel tumor suppressor AIMP3/p18 required for the interaction with ATM.

作者信息

Kim Kyung-Jin, Park Min Chul, Choi So Jung, Oh Young Sun, Choi Eung-Chil, Cho Hyo Je, Kim Myung Hee, Kim Soo-Hyun, Kim Dong Wook, Kim Sunghoon, Kang Beom Sik

机构信息

Pohang Accelerator Laboratory, Pohang University of Science and Technology, Pohang 790-784, Korea.

出版信息

J Biol Chem. 2008 May 16;283(20):14032-40. doi: 10.1074/jbc.M800859200. Epub 2008 Mar 14.

Abstract

Although AIMP3/p18 is normally associated with the multi-tRNA synthetase complex via its specific interaction with methionyl-tRNA synthetase, it also works as a tumor suppressor by interacting with ATM, the upstream kinase of p53. To understand the molecular interactions of AIMP3 and the mechanisms involved, we determined the crystal structure of AIMP3 at 2.0-angstroms resolution and identified its potential sites of interaction with ATM. AIMP3 contains two distinct domains linked by a 7-amino acid (Lys57-Ser63) peptide, which contains a 3(10) helix. The 56-amino acid N-terminal domain consists of two helices into which three antiparallel beta strands are inserted, and the 111-amino acid C-terminal domain contains a bundle of five helices (Thr64-Tyr152) followed by a coiled region (Pro153-Leu169). Structural analyses revealed homologous proteins such as yeast glutamyl-tRNA synthetase, Arc1p, EF1Bgamma, and glutathione S-transferase and suggested two potential molecular binding sites. Moreover, mutations at the C-terminal putative binding site abolished the interaction between AIMP3 and ATM and the ability of AIMP3 to activate p53. Thus, this work identified the two potential molecular interaction sites of AIMP3 and determined the residues critical for its tumor-suppressive activity through the interaction with ATM.

摘要

尽管AIMP3/p18通常通过与甲硫氨酰-tRNA合成酶的特异性相互作用与多tRNA合成酶复合物相关联,但它也通过与p53的上游激酶ATM相互作用而发挥肿瘤抑制作用。为了了解AIMP3的分子相互作用及其涉及的机制,我们确定了分辨率为2.0埃的AIMP3晶体结构,并确定了其与ATM潜在的相互作用位点。AIMP3包含两个由7个氨基酸(Lys57-Ser63)肽连接的不同结构域,该肽包含一个3(10)螺旋。56个氨基酸的N端结构域由两个螺旋组成,其中插入了三条反平行的β链,111个氨基酸的C端结构域包含一束五个螺旋(Thr64-Tyr152),后面跟着一个卷曲区域(Pro153-Leu169)。结构分析揭示了酵母谷氨酰胺-tRNA合成酶、Arc1p、EF1Bγ和谷胱甘肽S-转移酶等同源蛋白,并提出了两个潜在的分子结合位点。此外,C端假定结合位点的突变消除了AIMP3与ATM之间的相互作用以及AIMP3激活p53的能力。因此,这项工作确定了AIMP3的两个潜在分子相互作用位点,并通过与ATM的相互作用确定了对其肿瘤抑制活性至关重要的残基。

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