首页> 美国卫生研究院文献>Springer Open Choice >1H and 13C NMR spectroscopic studies of the ferriheme resonances of three low-spin complexes of wild-type nitrophorin 2 and nitrophorin 2(V24E) as a function of pH
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1H and 13C NMR spectroscopic studies of the ferriheme resonances of three low-spin complexes of wild-type nitrophorin 2 and nitrophorin 2(V24E) as a function of pH

机译:1H和13C NMR光谱研究了三种野生型硝酸盐蛋白2和硝酸盐蛋白2(V24E)的低旋复合物的铁血红素共振随pH的变化

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摘要

The ferriheme resonances of the low-spin (S = 1/2) complexes of wild-type (wt) nitrophorin 2 (NP2) and its heme pocket mutant NP2(V24E) with imidazole (ImH), histamine (Hm), and cyanide (CN) as the sixth ligand have been investigated by NMR spectroscopy as a function of pH (4.0–7.5). For the three wt NP2 complexes, the ratio of the two possible heme orientational isomers, >A and >B, remains almost unchanged (ratio of >A:>B approximately 1:6 to 1:5) over this wide pH range. However, strong chemical exchange cross peaks appear in the nuclear Overhauser effect spectroscopy/exchange spectroscopy (NOESY/EXSY) spectra for the heme methyl resonances at low pH (pH* 4.0–5.5), which indicate chemical exchange between two species. We have shown these to be two different exogenous ImH or Hm orientations that are denoted >B and >B′, with the ImH plane nearly parallel and perpendicular to the ImH plane of the protein-provided His57, respectively. The wt NP2–CN complex also shows EXSY cross peaks due to chemical exchange, which is shown to be a result of interchange between two ruffling distortions of the heme. The same ruffling distortion interchange is also responsible for the ImH and Hm chemical exchange. For the three NP2(V24E) ligand complexes, no EXSY cross peaks are observed, but the >A:>B ratios change dramatically with pH. The fact that heme favors the >A orientation highly for NP2(V24E) at low pH as compared with wt NP2 is believed to be due to the steric effect of the V24E mutation. The existence of the >B′ species at lower pH for wt NP2 complexes and the increase in >A heme orientation at lower pH for NP2(V24E) are believed to be a result of a change in structure near Glu53 when it is protonated at low pH. 1H{13C} heteronuclear multiple quantum coherence (HMQC) spectra are very helpful for the assignment of heme and nearby protein side chain resonances.Electronic supplementary materialThe online version of this article (doi:10.1007/s00775-009-0551-3) contains supplementary material, which is available to authorized users.
机译:野生型(wt)硝基蛋白2(NP2)及其血红素口袋突变体NP2(V24E)与咪唑(ImH),组胺(Hm)和氰化物的低旋(S = 1/2)配合物的铁血红素共振(CN -)作为第六个配体已通过NMR光谱法研究了pH(4.0-7.5)的函数。对于这三种wt NP2络合物,两种可能的血红素取向异构体> A 和> B 的比率几乎保持不变(> A 的比率:在此宽pH范围内> B 大约为1:6至1:5)。但是,在低pH值(pH * 4.0-5.5)下,血红素甲基共振的核Overhauser效应光谱/交换光谱(NOESY / EXSY)光谱中出现了很强的化学交换交叉峰,这表明两个物种之间发生了化学交换。我们已经证明这是两种不同的外源性ImH或Hm方向,分别表示为> B 和> B ',其中ImH平面几乎平行于蛋白质的ImH平面并垂直于蛋白质分别提供了His57。 wt NP2-CN络合物还由于化学交换而显示EXSY交叉峰,这表明是血红素的两个波纹变形之间互换的结果。相同的波纹变形互换也负责ImH和Hm化学交换。对于这三个NP2(V24E)配体配合物,未观察到EXSY交叉峰,但> A :> B 的比率随pH值发生显着变化。与wt NP2相比,血红素在低pH条件下高度支持NP2(V24E)的> A 方向这一事实被认为是由于V24E突变的空间效应所致。 wt NP2复合物在较低pH下存在> B '物种,而NP2(V24E)在较低pH下> A 血红素方向的增加被认为是由于在低pH下质子化时,Glu53附近的结构发生变化。 1 H { 13 C}异核多量子相干(HMQC)谱对于血红素和附近蛋白质侧链共振的分配非常有帮助。电子补充材料文章(doi:10.1007 / s00775-009-0551-3)包含补充材料,授权用户可以使用。

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