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首页> 外文期刊>Journal of Agricultural and Food Chemistry >Dynamic high-resolution H-1 and P-31 NMR spectroscopy and H-1 T-2 measurements in postmortem rabbit muscles using slow magic angle spinning
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Dynamic high-resolution H-1 and P-31 NMR spectroscopy and H-1 T-2 measurements in postmortem rabbit muscles using slow magic angle spinning

机译:使用魔角慢旋转技术对死后兔肌肉进行动态高分辨率H-1和P-31 NMR光谱以及H-1 T-2测量

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摘要

Postmortem changes in rabbit muscle tissue with different glycogen status (normal vs low) were followed continuously from 13 min postmortem until 8 h postmortem and again 20 h postmortem using simultaneous magic angle spinning H-1 and P-31 NMR spectroscopy together with measurement of the transverse relaxation time, T-2, of the muscle water. The 1H metabolite spectra were measured using the phase-altered spinning sidebands (PASS) technique at a spinning rate of 40 Hz. pH values calculated from the P-31 NMR spectra using the chemical shifts of the C-6 line of histidine in the H-1 spectra and the chemical shifts of inorganic phosphate in the P-31 spectra confirmed the different muscle glycogen status in the tissues. High-resolution H-1 spectra obtained from the PASS technique revealed the presence of a new resonance line at similar to6.8 ppm during the postmortem period, which were absent in muscles with low muscle glycogen content. This new resonance line may originate from the aminoprotons in creatine, and its appearance may be a result of a pH effect on the exchange rate between the amino and the water protons and thereby the NMR visibility. Alternatively, the new resonance line may originate from the aromatic protons in tyrosine, and its appearance may be a result of a pH-induced protein unfolding exposing hydrophobic amino acid residues to the aqueous environment. Further studies are needed to evaluate these hypotheses. Finally, distributed analysis of the water T-2 relaxation data revealed three relaxation populations and an increase in the population believed to reflect extramyofibrillar water through the postmortem period. This increase was significantly reduced (p < 0.0001) in samples from animals with low muscle glycogen content, indicating that the pH is controlling the extent of postmortem expulsion of water from myofibrillar structures. The significance of the postmortem increase in the amount extramyofibrillar water on the water-holding capacity was verified by centrifugation, which showed a reduced centrifugation loss in muscles with low preslaughter glycogen status (0.9 vs 1.9%, p = 0.07).
机译:使用同步幻角旋转H-1和P-31 NMR光谱法同时测量不同糖原状态(正常vs低)的兔肌肉组织的死后变化,从死后13分钟到死后8 h,再死后20 h。肌肉水的横向松弛时间T-2。 1H代谢物谱使用相变纺丝边带(PASS)技术以40 Hz的纺丝速率测量。使用H-1光谱中组氨酸的C-6线的化学位移和P-31光谱中的无机磷酸盐的化学位移从P-31 NMR光谱计算得出的pH值证实了组织中不同的肌肉糖原状态。通过PASS技术获得的高分辨率H-1光谱显示,在死后期间出现了一条新的共振线,接近6.8 ppm,在肌肉糖原含量低的肌肉中不存在。这种新的共振线可能源自肌酸中的氨基质子,其出现可能是pH值对氨基与水质子之间的交换速率的影响,从而影响了NMR的可见性。或者,新的共振谱线可能来自酪氨酸中的芳族质子,其出现可能是由于pH诱导的蛋白质解折叠而使疏水氨基酸残基暴露于水性环境的结果。需要进一步的研究来评估这些假设。最后,对水T-2弛豫数据的分布式分析显示了三个弛豫种群,并且据信在死后期间反映肌原纤维外水的种群有所增加。在肌肉糖原含量低的动物的样品中,这种增加显着降低了(p <0.0001),表明pH值控制着从肌原纤维结构中死后排出水的程度。离心证实了肌原纤维后水量的死后增加对持水能力的重要性,这表明屠宰前糖原水平低的肌肉的离心损失减少了(0.9 vs 1.9%,p = 0.07)。

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