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Suggestion of suitable animal models for in vivo studies of protein tyrosine phosphatase 1b (PTP1B) inhibitors using computational approaches

机译:建议使用计算方法对蛋白质酪氨酸磷酸酶1b(PTP1B)抑制剂进行体内研究的合适动物模型

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摘要

PTP1B is a prototypic enzyme of the superfamily protein tyrosine phosphatases (PTPs) which are critical regulators of tyrosine phosphorylation-dependent signaling events. It is a highly plausible candidate for designing therapeutic inhibitors of obesity and type 2 diabetes (T2D). In this study, a detailed comparative analysis to reveal the evolutionary relationship of human PTP1B among related vertebrates has been addressed.The phylogenetic trees were constructed with maximum likelihood algorithm by PhyML package on the basis of multiple sequence alignment (MSA) by ClustalΩ and T-coffee. Mutational variability of the sequences corresponding to the 3D structure (pdb: 2vev) was analyzed with Consurf software. The comparative analysis by inhibitor docking to different models was made to confirm the suitability of models.As a result, the PTP1B or PTP non-receptor type 1 homologies show high conservativity where about 70% positions on primary structures are conserved. Within PTP domain (3–277), the most variable positions are 12, 13, 19 and 24 which is a part of the second aryl binding site. Moreover, there are important evolutional mutations that can change the conformation of the proteins, for instance, hydrophilic N139 changed to hydrophobic Gly (mPTP1B); E132 to proline in the hydrophobic core structure or Y46 to cystein in pTyr recognition loop. These variations/differences should be taken into account for rational inhibitor design and in choosing suitable animal models for drug testing and evaluation. Moreover, our study suggests critically potential models which are Heterocephalus glaber, Tupaia chinensis, Sus scrofa, and Rattus norvegicus in addition to the best one Macaca fascicularis. Among these models, the H.glaber and R.norvegicus are preferable over M.musculus thanks to their similarity in binding affinity and binding modes to investigated PTP1B inhibitors.Electronic supplementary materialThe online version of this article (doi:10.1186/2193-1801-3-380) contains supplementary material, which is available to authorized users.
机译:PTP1B是超家族蛋白酪氨酸磷酸酶(PTP)的原型酶,酪氨酸磷酸酶是酪氨酸磷酸化依赖性信号转导事件的关键调节剂。它是设计肥胖症和2型糖尿病(T2D)治疗抑制剂的高度合理的候选方案。本研究针对人类PTP1B在相关脊椎动物之间的进化关系进行了详细的比较分析。系统进化树是通过PhyML软件包以最大似然算法通过ClustalΩ和T-的多序列比对(MSA)构建的。咖啡。用Consurf软件分析对应于3D结构(pdb:2vev)的序列的突变变异性。通过抑制剂对接至不同模型进行比较分析,以确认模型的适用性。结果,PTP1B或PTP 1型非受体同源性显示出高保守性,其中一级结构上约70%的位置被保留。在PTP结构域(3-277)中,变化最大的位置是12、13、19和24,这是第二个芳基结合位点的一部分。此外,还有重要的进化突变可以改变蛋白质的构象,例如,亲水性N139变为疏水性Gly(mPTP1B); E132在脯氨酸的疏水核心结构中脯氨酸或Y46在pTyr识别环中的半胱氨酸。为了合理设计抑制剂,并在选择合适的动物模型进行药物测试和评估时,应考虑这些变化/差异。此外,我们的研究表明,除了最好的一种猕猴以外,潜在的临界模型还包括:Heterocephalus glaber,Tupia chinensis,Sus scrofa和Rattus norvegicus。在这些模型中,H.glaber和R.norvegicus优于M.musculus,因为它们在结合亲和力和结合模式上与研究的PTP1B抑制剂相似。电子补充材料本文的在线版本(doi:10.1186 / 2193-1801- 3-380)包含补充材料,授权用户可以使用。

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