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首页> 外文期刊>Biochemistry >Recombinant Butelase-Mediated Cyclization of the p53-Binding Domain of the Oncoprotein MdmX-Stabilized Protein Conformation as a Promising Model for Structural Investigation
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Recombinant Butelase-Mediated Cyclization of the p53-Binding Domain of the Oncoprotein MdmX-Stabilized Protein Conformation as a Promising Model for Structural Investigation

机译:重组丁基酶介导的癌蛋白MDMX稳定蛋白兼容性的P53结合结构域的环化作为结构调查的有希望模型

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摘要

Cyclization of the polypeptide backbone has proven to be a powerful strategy for enhancing protein stability for fundamental research and pharmaceutical application. The use of such an approach is restricted by how well a targeted polypeptide can be efficiently ligated. Recently, an Asx-specific peptide ligase identified from a tropical cyclotide-producing plant and named butelase 1 exhibited excellent cyclization kinetics that cannot be matched by other known ligases, including intein, PATG, PCY1, and sortase A. In this work, we aimed to examine whether butelase 1 facilitated conformational stability for structural investigation First we successfullly expressed recombined butelase 1 (rBTase) in the yeast Pichia pastoris. Next, rBTase was shown to be highly efficient in the cyclization of the p53-binding domain (N-terminal domain) of murine double minute X (N-MdmX), an important target for designing anticancer drugs. The cyclized N-MdmX (cMdmX) exhibited increased conformational stability and improved interaction with the ligand compared with those of noncyclized N-MdmX. Importantly, the thermal melting process was completely reversible, contrary to noncyclized N-MdmX, and the melting temperature (T-m) of cMdmX was increased to 47 from 43 degrees C. This stable conformation of cMdmX was further confirmed by N-15-H-1 heteronuclear single-quantum coherence nuclear magnetic resonance (NMR) spectroscopy. The complex of cMdmX and the ligand was tested for protein crystallization, and several promising findings were revealed. Therefore, our work not only provides a recombinant version of butelase 1 but also suggests a conventional approach for preparing stable protein samples for both protein crystallization and NMR structural investigation.
机译:已证明多肽骨架的环化是一种强大的策略,可提高基本研究和药物应用的蛋白质稳定性。这种方法的使用受到靶向多肽的有效连接的程度的限制。最近,从热带旋转的生产植物和命名的丁基酶1中鉴定的ASX特异性肽连接酶表现出优异的环化动力学,其不能与其他已知的连接酶相匹配,包括Intein,Patg,PCY1和Sortase A.在这项工作中,我们瞄准了为了检查丁基酶1是否促进结构调查的构象稳定性首先,我们在酵母Pichia巴氏菌中成功地表达了重组丁基酶1(RBTase)。接下来,在鼠双微米X(N-MDMX)的P53结合结构域(N-末端域)的环化中显示RBTase高效,这是设计抗癌药物的重要靶标。与非含有N-MDMX的那些,环状的N-MDMX(CMDMX)表现出增加的构象稳定性和与配体的改善相互作用。重要的是,热熔过程完全可逆,与非环状N-MDMX相反,CMDMX的熔化温度(Tm)从43℃增加到47.通过N-15-H-进一步证实CMDMX的这种稳定的构象。 1异核单量子相干核磁共振(NMR)光谱。测试CMDMX和配体的复合物用于蛋白质结晶,并揭示了几种有望的结果。因此,我们的工作不仅提供了丁基酶1的重组版本,而且表明常规方法用于制备蛋白质结晶和NMR结构调查的稳定蛋白质样品。

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  • 来源
    《Biochemistry》 |2019年第27期|共11页
  • 作者单位

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Chinese Acad Sci Wuhan Inst Phys &

    Math State Key Lab Magnet Resonance &

    Atom &

    Mol Phys Natl Ctr Magnet Resonance Wuhan Wuhan 430071 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

    Hubei Univ Technol Hubei Key Lab Ind Microbiol Minist Educ Key Lab Ind Fermentat Wuhan 430068 Hubei Peoples R China;

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  • 正文语种 eng
  • 中图分类 生物化学;
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