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真核起始因子4E结合蛋白1中调控基序的分析。

Analysis of the regulatory motifs in eukaryotic initiation factor 4E-binding protein 1.

作者信息

Lee Vivian H Y, Healy Timothy, Fonseca Bruno D, Hayashi Amanda, Proud Christopher G

机构信息

Department of Biochemistry and Molecular Biology, University of British Columbia, Vancouver, BC, Canada.

出版信息

FEBS J. 2008 May;275(9):2185-99. doi: 10.1111/j.1742-4658.2008.06372.x. Epub 2008 Apr 1.

Abstract

Mammalian target of rapamycin complex 1 (mTORC1) phosphorylates proteins such as eukaryotic initiation factor 4E-binding protein 1 (4E-BP1) and the S6 kinases. These substrates contain short sequences, termed TOR signalling (TOS) motifs, which interact with the mTORC1 component raptor. Phosphorylation of 4E-BP1 requires an additional feature, termed the RAIP motif (Arg-Ala-Ile-Pro). We have analysed the interaction of 4E-BP1 with raptor and the amino acid residues required for functional RAIP and TOS motifs, as assessed by raptor binding and the phosphorylation of 4E-BP1 in human cells. Binding of 4E-BP1 to raptor strongly depends on an intact TOS motif, but the RAIP motif and additional C-terminal features of 4E-BP1 also contribute to this interaction. Mutational analysis of 4E-BP1 reveals that isoleucine is a key feature of the RAIP motif, that proline is also very important and that there is greater tolerance for substitution of the first two residues. Within the TOS motif, the first position (phenylalanine in the known motifs) is most critical, whereas a wider range of residues function in other positions (although an uncharged aliphatic residue is preferred at position three). These data provide important information on the structural requirements for efficient signalling downstream of mTORC1.

摘要

雷帕霉素靶蛋白复合物1(mTORC1)可使真核起始因子4E结合蛋白1(4E-BP1)和S6激酶等蛋白质磷酸化。这些底物含有短序列,称为TOR信号(TOS)基序,可与mTORC1组分 Raptor相互作用。4E-BP1的磷酸化需要一个额外的特征,称为RAIP基序(精氨酸-丙氨酸-异亮氨酸-脯氨酸)。我们通过Raptor结合以及人细胞中4E-BP1的磷酸化情况,分析了4E-BP1与Raptor的相互作用以及功能性RAIP和TOS基序所需的氨基酸残基。结果表明,4E-BP1与Raptor的结合强烈依赖于完整的TOS基序,但RAIP基序以及4E-BP1的额外C末端特征也有助于这种相互作用。对4E-BP1的突变分析表明,异亮氨酸是RAIP基序的关键特征,脯氨酸也非常重要,并且前两个残基的替代具有更大的耐受性。在TOS基序中,第一个位置(已知基序中的苯丙氨酸)最为关键,而其他位置则有更广泛的残基发挥作用(尽管第三位优先选择不带电荷的脂肪族残基)。这些数据为mTORC1下游有效信号传导的结构要求提供了重要信息。

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