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首页> 外文期刊>Biochemistry >Direct Mass Spectrometric Determination of the Stoichiometry and Binding Affinity of the Complexes between Nucleocapsid Protein and RNA Stem-Loop Hairpins of the HIV-1 PHI-Recognition Element
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Direct Mass Spectrometric Determination of the Stoichiometry and Binding Affinity of the Complexes between Nucleocapsid Protein and RNA Stem-Loop Hairpins of the HIV-1 PHI-Recognition Element

机译:直接质谱法测定HIV-1 PHI识别元素核衣壳蛋白和RNA茎环发夹之间的复合物的化学计量和结合亲和力

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摘要

The formation of noncovalent complexes between the HIV-1 nucleocapsid protein p7 (NC) and RNA hairpins SL2-SL4 of the PHI-recognition element was investigated by direct infusion electrospray ionization-Fourier transform mass spectrometry (ESI-FTMS). The high resolution afforded by this method provided the unambiguous characterization of the stoichiometry and composition of complexes formed by multiple equilibria in solution. For each hairpin, the formation of a 1:1 complex was found to be the primary binding mode in solutions of intermediate salt content (150 mM ammonium acetate). Binding of multiple units of NC was observed with lower affinity and a maximum stoichiometry matchinig the limit calculated from the number of nucleotides in the construct and the size of the footprint of NC onto single-stranded nucleic acids, thus implying the defolding of the hairpin three-dimensional (3D) structure. Dissociation constants of 62 (+-) 22 nM, 178 (+-) 64 nM, and 1.3 (+-) 0.5 muM were determined for SL2, SL3-2, and SL4, respectively, which are similar to values obtained by spectroscopic and calorimetric methods with the additional confidence offered by a direct, rather than inferred, knowledge of the binding stoichiometry. Competitive binding experiments carried out in solutions of intermediate ionic strength, which has the effect of weakening the electrostatic interactions in solution, provided a direct way of evaluating the stabilizing contributions of H-bonding and hydrophobic interactions that are more sensitive to the sequence and structural context of H-bonding and hydrophobic interactions that are more sensitive to the sequence and structural context of the different hairpisn. Teh relative scale of binding affinity obtained in this environment reflects the combination of contributions provided by the different structures of both the tetraloop and the duoble-stranded stem. The importance of the stem 3D structure in modulating the binding activity was tested by a competitive binding experiment that included the SL3-2 RNA construct, a DNA analogue of SL3 (SL3_(DNA)), and a DNA analogue in which all four loop bases were replaced with abasic nucleotides (SL3_(abasic)). NC was found to bind the A-type double-stranded stem of SL3-2 RNA at least 30 times more tightly than the B-type helical structure of SL3_(DNA). Eliminating the stabilization provided by the interactions with the tetraloop bases made the binding of SL3_(abasic) approx 50 times weaker than that of SL3_(DNA).
机译:通过直接输注电喷雾电离 - 傅里叶变换质谱法(ESI-FTMS),研究了HIV-1核衣壳蛋白P7(NC)和PHI识别元件的RNA发夹SL2-SL4之间的非共价复合物。通过该方法提供的高分辨率提供了通过溶液中多重均衡形成的化学计量和组成的明确表征。对于每个发夹,发现形成1:1的复合物是中间盐含量(乙酸150mm)的溶液中的主要结合模式。用较低亲和力和最大的化学计量匹配的最大亲和力和从构建体中的核苷酸的数量计算的极限和Nc占地面积的尺寸,从而观察到从单链核酸的尺寸计算的限制,从而暗示发夹三个 - 二维(3D)结构。 SL2,SL3-2和SL4分别测定62(+ - )22nm,178(+ - )64nm和1.3(+ - )0.5mum的解离常数,其类似于通过光谱和含量获得的值通过直接提供的额外信心而不是推断的具有额外信心,而不是推断出结合化学计量。在中间离子强度溶液中进行的竞争结合实验,其具有弱化溶液中的静电相互作用的效果,提供了对序列和结构背景更敏感的H键合和疏水相互作用的直接方法H键合和疏水相互作用对不同发夹的序列和结构背景更敏感。在该环境中获得的结合亲和力的相对规模反映了通过四级级和二孔链茎的不同结构提供的贡献的组合。通过包括SL3-2 RNA构建体的竞争结合实验,SL3(SL3_(DNA))的DNA类似物,以及所有四个环碱的DNA类似物,通过包括SL3-2 RNA构建体的竞争结合实验来测试茎3D结构在调节结合活性。被脱脂核苷酸(SL3_(Abasic)取代)。发现NC将SL3-2 RNA的A型双链茎结合至少30倍,比SL3_(DNA)的B型螺旋结构更紧密。消除与Tetraloop碱基的相互作用提供的稳定化使得SL3_(Abasic)的结合比SL3_(DNA)的约50倍。

著录项

  • 来源
    《Biochemistry》 |2003年第36期|共10页
  • 作者

    Nathan Hagan; Daniele Fabris;

  • 作者单位

    Department of Chemistry and Biochemistry University of Maryland Balitmore County Baltimore Maryland 21250;

    Department of Chemistry and Biochemistry University of Maryland Balitmore County Baltimore Maryland 21250;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

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