首页> 美国卫生研究院文献>Protein Science : A Publication of the Protein Society >Identification of a α‐helical molten globule intermediate and structural characterization of β‐cardiotoxin an all β‐sheet protein isolated from the venom of Ophiophagus hannah (king cobra)
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Identification of a α‐helical molten globule intermediate and structural characterization of β‐cardiotoxin an all β‐sheet protein isolated from the venom of Ophiophagus hannah (king cobra)

机译:从螺旋藻的眼镜蛇毒中分离出的所有β-折叠蛋白鉴定出α-螺旋熔融小球中间体和β-心脏毒素的结构特征

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摘要

β‐Cardiotoxin is a novel member of the snake venom three‐finger toxin (3FTX) family. This is the first exogenous protein to antagonize β‐adrenergic receptors and thereby causing reduction in heart rates (bradycardia) when administered into animals, unlike the conventional cardiotoxins as reported earlier. 3FTXs are stable all β‐sheet peptides with 60–80 amino acid residues. Here, we describe the three‐dimensional crystal structure of β‐cardiotoxin together with the identification of a molten globule intermediate in the unfolding pathway of this protein. In spite of the overall structural similarity of this protein with conventional cardiotoxins, there are notable differences observed at the loop region and in the charge distribution on the surface, which are known to be critical for cytolytic activity of cardiotoxins. The molten globule intermediate state present in the thermal unfolding pathway of β‐cardiotoxin was however not observed during the chemical denaturation of the protein. Interestingly, circular dichroism (CD) and NMR studies revealed the presence of α‐helical secondary structure in the molten globule intermediate. These results point to substantial conformational plasticity of β‐cardiotoxin, which might aid the protein in responding to the sometimes conflicting demands of structure, stability, and function during its biological lifetime.
机译:β-心脏毒素是蛇毒三指毒素(3FTX)家族的新型成员。这是第一种拮抗β-肾上腺素能受体的外源性蛋白质,与早期报道的常规心毒素不同,当向动物给药时,它会导致心率降低(心动过缓)。 3FTX对所有具有60-80个氨基酸残基的β-折叠肽都是稳定的。在这里,我们描述了β-心脏毒素的三维晶体结构,并鉴定了该蛋白解折叠途径中的熔融小球中间体。尽管该蛋白与常规的心脏毒素在结构上总体上相似,但在环区和表面电荷分布上仍观察到明显的差异,这对于心肌毒素的细胞溶解活性至关重要。然而,在蛋白质化学变性过程中未观察到β-心毒素热解折叠路径中存在的熔融小球中间状态。有趣的是,圆二色性(CD)和NMR研究表明在熔融小球中间体中存在α螺旋二级结构。这些结果表明,β-心脏毒素具有显着的构象可塑性,这可能有助于蛋白质在其生物寿命中响应有时冲突的结构,稳定性和功能需求。

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