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Predicting the clinical lethality of osteogenesis imperfecta from collagen glycine mutations

机译:从胶原蛋白甘氨酸突变预测成骨不全的临床致死率

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Osteogenesis imperfecta (OI), or brittle bone disease, often results from missense mutation of one of the conserved glycine residues present in the repeating Gly-X-Y sequence characterizing the triple-helical region of type I collagen. A composite model was developed for predicting the clinical lethality resulting from glycine mutations in the alpha 1 chain of type I collagen. The lethality of mutations in which bulky amino acids are substituted for glycine is predicted by their position relative to the N-terminal end of the triple helix. The effect of a Gly -> Ser mutation is modeled by the relative thermostability of the Gly-X-Y triplet on the carboxy side of the triplet containing the substitution. This model also predicts the lethality of Gly -> Ser and Gly -> Cys mutations in the alpha 2 chain of type I collagen. The model was validated with an independent test set of six novel Gly -> Ser mutations. The hypothesis derived from the model of an asymmetric interaction between a Gly -> Ser mutation and its neighboring residues was tested experimentally using collagen-like peptides. Consistent with the prediction, a significant decrease in stability, calorimetric enthalpy, and folding time was observed for a peptide with a low-stability triplet C-terminal to the mutation compared to a similar peptide with the low-stability triplet on the N-terminal side. The computational and experimental results together relate the position-specific effects of Gly -> Ser mutations to the local structural stability of collagen and lend insight into the etiology of OI.
机译:成骨不全症(OI)或脆性骨病通常是由重复性Gly-X-Y序列中存在的一个保守的甘氨酸残基之一的错义突变导致的,该序列代表I型胶原的三螺旋区。开发了一个复合模型来预测由I型胶原蛋白的alpha 1链中的甘氨酸突变引起的临床致死率。通过其相对于三重螺旋的N-末端的位置来预测其中大量氨基酸被甘氨酸替代的突变的致死性。 Gly-> Ser突变的影响是通过在含有取代基的三联体的羧基侧,Gly-X-Y三联体的相对热稳定性来模拟的。该模型还预测了I型胶原的alpha 2链中Gly-> Ser和Gly-> Cys突变的致死性。该模型通过六个新的Gly-> Ser突变的独立测试集进行了验证。使用胶原蛋白样肽通过实验测试了从Gly-> Ser突变与其邻近残基之间的不对称相互作用模型得出的假设。与预测一致,与在N端具有低稳定性三联体的类似肽相比,在突变的C端具有低稳定性的三联体的肽的稳定性,量热焓和折叠时间显着降低侧。计算和实验结果一起将Gly-> Ser突变的位置特异性作用与胶原蛋白的局部结构稳定性联系在一起,并有助于了解OI的病因。

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