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首页> 外文期刊>Scientific reports. >Hydroxyproline Ring Pucker Causes Frustration of Helix Parameters in the Collagen Triple Helix
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Hydroxyproline Ring Pucker Causes Frustration of Helix Parameters in the Collagen Triple Helix

机译:羟脯氨酸环褶皱导致胶原三螺旋中螺旋参数的挫败

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Collagens, the most abundant proteins in mammals, are defined by their triple-helical structures and distinctive Gly-Xaa-Yaa repeating sequence, where Xaa is often proline and Yaa, hydroxyproline (Hyp/O). It is known that hydroxyproline in the Yaa position stabilises the triple helix, and that lack of proline hydroxylation in vivo leads to dysfunctional collagen extracellular matrix assembly, due to a range of factors such as a change in hydration properties. In addition, we note that in model peptides, when Yaa is unmodified proline, the Xaa proline has a strong propensity to adopt an endo ring conformation, whilst when Yaa is hydroxyproline, the Xaa proline adopts a range of endo and exo conformations. Here we use a combination of solid-state NMR spectroscopy and potential energy landscape modelling of synthetic triple-helical collagen peptides to understand this effect. We show that hydroxylation of the Yaa proline causes the Xaa proline ring conformation to become metastable, which in turn confers flexibility on the triple helix.
机译:胶原蛋白是哺乳动物中最丰富的蛋白质,由其三螺旋结构和独特的Gly-Xaa-Yaa重复序列定义,其中Xaa通常是脯氨酸,而Yaa是羟脯氨酸(Hyp / O)。已知在Yaa位置上的羟脯氨酸稳定了三螺旋,并且由于多种因素(例如水合性质的变化),体内脯氨酸羟化的缺乏导致功能异常的胶原细胞外基质组装。另外,我们注意到在模型肽中,当Yaa是未修饰的脯氨酸时,Xaa脯氨酸具有很强的内环构象倾向,而当Yaa是羟基脯氨酸时,Xaa脯氨酸则具有一定范围的内和外构象。在这里,我们结合使用固态NMR光谱和合成三螺旋胶原蛋白肽的势能图建模来了解这种效果。我们显示Yaa脯氨酸的羟基化会导致Xaa脯氨酸环构象变得亚稳,进而赋予三重螺旋弹性。

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