首页> 美国卫生研究院文献>Scientific Reports >Phthalide Derivatives from Angelica Sinensis Decrease Hemoglobin Oxygen Affinity: A New Allosteric-Modulating Mechanism and Potential Use as 23-BPG Functional Substitutes
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Phthalide Derivatives from Angelica Sinensis Decrease Hemoglobin Oxygen Affinity: A New Allosteric-Modulating Mechanism and Potential Use as 23-BPG Functional Substitutes

机译:当归的邻苯二甲酸酯衍生物降低血红蛋白氧亲和力:一种新的变构调节机制和23-BPG功能替代物的潜在用途。

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摘要

Angelica sinensis (AS), one of the most versatile herbal medicines remains widely used due to its multi-faceted pharmacologic activities. Besides its traditional use as the blood-nourishing tonic, its anti-hypertensive, anti-cardiovascular, neuroprotective and anti-cancer effects have been reported. Albeit the significant therapeutic effects, how AS exerts such diverse efficacies from the molecular level remains elusive. Here we investigate the influences of AS and four representative phthalide derivatives from AS on the structure and function of hemoglobin (Hb). From the spectroscopy and oxygen equilibrium experiments, we show that AS and the chosen phthalides inhibited the oxygenated Hb from transforming into the high-affinity “relaxed” (R) state, decreasing Hb’s oxygen affinity. It reveals that phthalides cooperate with the endogenous Hb modulator, 2,3-bisphosphoglycerate (2,3-BPG) to synergetically regulate Hb allostery. From the docking modeling, phthalides appear to interact with Hb mainly through its α1/α2 interface, likely strengthening four (out of six) Hb “tense” (T) state stabilizing salt-bridges. A new allosteric-modulating mechanism is proposed to rationalize the capacity of phthalides to facilitate Hb oxygen transport, which may be inherently correlated with the therapeutic activities of AS. The potential of phthalides to serve as 2,3-BPG substitutes/supplements and their implications in the systemic biology and preventive medicine are discussed.
机译:当归(AS)是最通用的草药之一,由于其多方面的药理活性而仍被广泛使用。除了其传统的补血滋补作用外,据报道还具有抗高血压,抗心血管,神经保护和抗癌作用。尽管具有显着的治疗效果,但AS如何从分子水平发挥如此多样的功效仍然难以捉摸。在这里,我们研究了AS和AS中的四种代表性邻苯二甲酸酯衍生物对血红蛋白(Hb)的结构和功能的影响。通过光谱和氧平衡实验,我们发现AS和所选的酞化物抑制了氧化的Hb转变成高亲和力的“松弛”(R)状态,从而降低了Hb的氧亲和力。它表明,酞化物与内源性Hb调节剂2,3-双磷酸甘油酸酯(2,3-BPG)协同作用,共同调节Hb的变构作用。从对接模型来看,邻苯二甲酸盐似乎主要通过Hb的α1/α2界面与Hb相互作用,可能会增强四个Hb的“紧张”(T)状态稳定盐桥。提出了一种新的变构调节机制,以合理化邻苯二甲酸盐促进Hb氧转运的能力,这可能与AS的治疗活性内在相关。讨论了作为2,3-BPG替代品/补充剂的邻苯二甲酸盐的潜力及其在全身生物学和预防医学中的意义。

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