首页> 美国卫生研究院文献>BioMed Research International >Mutation Spectrum in TPO Gene of Bangladeshi Patients with Thyroid Dyshormonogenesis and Analysis of the Effects of Different Mutations on the Structural Features and Functions of TPO Protein through In Silico Approach
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Mutation Spectrum in TPO Gene of Bangladeshi Patients with Thyroid Dyshormonogenesis and Analysis of the Effects of Different Mutations on the Structural Features and Functions of TPO Protein through In Silico Approach

机译:孟加拉国甲状腺功能异常发生患者TPO基因的突变谱以及不同突变对TPO蛋白结构特征和功能影响的计算机模拟分析

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摘要

Although thyroid dyshormonogenesis (TDH) accounts for 10-20% of congenital hypothyroidism (CH), the molecular etiology of TDH is unknown in Bangladesh. Thyroid peroxidase (TPO) is most frequently associated with TDH and the present study investigated the spectrum of TPO mutations in Bangladeshi patients and analyzed the effects of mutations on TPO protein structure through in silico approach. Sequencing-based analysis of TPO gene revealed four mutations in 36 diagnosed patients with TDH including three nonsynonymous mutations, namely, p.Ala373Ser, p.Ser398Thr, and p.Thr725Pro, and one synonymous mutation p.Pro715Pro. Homology modelling-based analysis of predicted structures of MPO-like domain (TPO142-738) and the full-length TPO protein (TPO1-933) revealed differences between mutant and wild type structures. Molecular docking studies were performed between predicted structures and heme. TPO1-933 predicted structure showed more reliable results in terms of interactions with the heme prosthetic group as the binding energies were -11.5 kcal/mol, -3.2 kcal/mol, -11.5 kcal/mol, and -7.9 kcal/mol for WT, p.Ala373Ser, p.Ser398Thr, and p.Thr725Pro, respectively, implying that p.Ala373Ser and p.Thr725Pro mutations were more damaging than p.Ser398Thr. However, for the TPO142-738 predicted structures, the binding energies were -11.9 kcal/mol, -10.8 kcal/mol, -2.5 kcal/mol, and -5.3 kcal/mol for the wild type protein, mutant proteins with p.Ala373Ser, p.Ser398Thr, and p.Thr725Pro substitutions, respectively. However, when the interactions between the crucial residues including residues His239, Arg396, Glu399, and His494 of TPO protein and heme were taken into consideration using both TPO1-933 and TPO142-738 predicted structures, it appeared that p.Ala373Ser and p.Thr725Pro could affect the interactions more severely than the p.Ser398Thr. Validation of the molecular docking results was performed by computer simulation in terms of quantum mechanics/molecular mechanics (QM/MM) and molecular dynamics (MD) simulation. In conclusion, the substitutions mutations, namely, p.Ala373Ser, p.Ser398Thr, and p.Thr725Pro, had been involved in Bangladeshi patients with TDH and molecular docking-based study revealed that these mutations had damaging effect on the TPO protein activity.
机译:尽管甲状腺功能不全症(TDH)占先天性甲状腺功能减退症(CH)的10-20%,但孟加拉国尚不知道TDH的分子病因。甲状腺过氧化物酶(TPO)与TDH最常见,本研究调查了孟加拉国患者TPO突变的光谱,并通过计算机方法分析了突变对TPO蛋白质结构的影响。 TPO基因的基于序列的分析显示,在36位经诊断的TDH患者中有四个突变,包括三个非同义突变,即p.Ala373Ser,p.Ser398Thr和p.Thr725Pro,以及一个同义突变p.Pro715Pro。基于同源建模的MPO样域(TPO142-738)和全长TPO蛋白(TPO1-933)预测结构的分析揭示了突变型和野生型结构之间的差异。在预测的结构和血红素之间进行了分子对接研究。 TPO1-933预测的结构在与血红素修复基团的相互作用方面显示出更可靠的结果,因为WT的结合能为-11.5 kcal / mol,-3.2 kcal / mol,-11.5 kcal / mol和-7.9 kcal / mol。 p.Ala373Ser,p.Ser398Thr和p.Thr725Pro分别表示p.Ala373Ser和p.Thr725Pro突变比p.Ser398Thr更具破坏性。然而,对于TPO142-738预测的结构,对于野生型蛋白,具有p.Ala373Ser的突变蛋白,结合能为-11.9 kcal / mol,-10.8 kcal / mol,-2.5 kcal / mol和-5.3 kcal / mol。 ,p.Ser398Thr和p.Thr725Pro替换。但是,当同时使用TPO1-933和TPO142-738预测结构考虑TPO蛋白和血红素的关键残基(包括His239,Arg396,Glu399和His494残基)之间的相互作用时,似乎p.Ala373Ser和p.Thr725Pro可能比p.Ser398Thr更严重地影响相互作用。分子对接结果的验证是通过计算机模拟对量子力学/分子力学(QM / MM)和分子动力学(MD)进行模拟的。总之,孟加拉国TDH患者参与了p.Ala373Ser,p.Ser398Thr和p.Thr725Pro的替代突变,基于分子对接的研究表明这些突变对TPO蛋白活性具有破坏性作用。

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