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Engineering Encodable Lanthanide-Binding Tags into Loop Regions of Proteins

机译:将可编码的镧系元素结合标签工程化为蛋白质的环状区域

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摘要

Lanthanide-binding tags (LBTs) are valuable tools for investigation of protein structure, function, and dynamics by NMR spectroscopy, X-ray crystallography, and luminescence studies. We have inserted LBTs into three different loop positions (denoted L, R, and S) of the model protein interleukin-1β (IL1β) and varied the length of the spacer between the LBT and the protein (denoted 1-3). Luminescence studies demonstrate that all nine constructs bind Tb~(3+) tightly in the low nanomolar range. No significant change in the fusion protein occurs from insertion of the LBT, as shown by two X-ray crystallographic structures of the IL1β-S1 and IL1β-L3 constructs and for the remaining constructs by comparing the ~1H- N heteronuclear single-quantum coherence NMR spectra with that of the wild-type IL1β. Additionally, binding of LBT-loop IL1β proteins to their native binding partner in vitro remains unaltered. X-ray crystallographic phasing was successful using only the signal from the bound lanthanide. Large residual dipolar couplings (RDCs) could be determined by NMR spectroscopy for all LBT-loop constructs and revealed that the LBT-2 series were rigidly incorporated into the interleukin-1β structure. The paramagnetic NMR spectra of loop-LBT mutant ILlβ-R2 were assigned and the Δ_X tensor components were calculated on the basis of RDCs and pseudocontact shifts. A structural model of the IL1β-R2 construct was calculated using the paramagnetic restraints. The current data provide support that encodable LBTs serve as versatile biophysical tags when inserted into loop regions of proteins of known structure or predicted via homology modeling.
机译:镧系元素结合标签(LBT)是通过NMR光谱,X射线晶体学和发光研究研究蛋白质结构,功能和动力学的有价值的工具。我们已将LBT插入模型蛋白白介素1β(IL1β)的三个不同环位置(表示为L,R和S),并改变了LBT和蛋白之间的间隔区长度(表示为1-3)。发光研究表明,所有九种构建体均在低纳摩尔范围内紧密结合Tb〜(3+)。 IL1β-S1和IL1β-L3构建体的两个X射线晶体学结构表明,融合蛋白没有因LBT插入而发生显着变化,其余的构建体通过比较〜1H-N异核单量子相干性而显示出NMR光谱与野生型IL1β相同。另外,在体外LBT-环IL1β蛋白与其天然结合伴侣的结合保持不变。仅使用结合的镧系元素的信号即可成功进行X射线晶体学定相。可以通过NMR光谱法确定所有LBT环构建体的大残留偶极偶联(RDC),并揭示LBT-2系列被牢固地整合到白介素1β结构中。分配了Loop-LBT突变体IL1β-R2的顺磁NMR谱,并基于RDC和伪接触位移计算了Δ_X张量分量。使用顺磁性约束来计算IL1β-R2构建体的结构模型。当前数据提供支持,当将可编码的LBT插入已知结构或通过同源性建模预测的蛋白质的环区域时,它们可作为通用的生物物理标签。

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  • 来源
    《Journal of the American Chemical Society》 |2011年第4期|p.808-819|共12页
  • 作者单位

    Institute for Organic Chemistry and Chemical Biology, Center for Biomolecular Magnetic Resonance, Johann Wolfgang Goethe-University of Frankfuert, Max-von-Laue-Strasse 7, 60438 Frankfuert, Germany;

    Departments of Chemistry and Biology, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Department of Chemistry, Boston University, 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States;

    Institute for Organic Chemistry and Chemical Biology, Center for Biomolecular Magnetic Resonance, Johann Wolfgang Goethe-University of Frankfuert, Max-von-Laue-Strasse 7, 60438 Frankfuert, Germany;

    Department of Chemistry, Boston University, 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States;

    Department of Chemistry, Boston University, 590 Commonwealth Avenue, Boston, Massachusetts 02215, United States;

    Departments of Chemistry and Biology, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, Massachusetts 02139, United States;

    Institute for Organic Chemistry and Chemical Biology, Center for Biomolecular Magnetic Resonance, Johann Wolfgang Goethe-University of Frankfuert, Max-von-Laue-Strasse 7, 60438 Frankfuert, Germany;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
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  • 正文语种 eng
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  • 入库时间 2022-08-18 03:14:05

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