Council of Scientific and Industrial Research- Unit for Research and Development of Information Products, "Tapovan" NCL Campus, S.No.113, 114, Pashan, Pune 411 008, India.
Council of Scientific and Industrial Research- Unit for Research and Development of Information Products, "Tapovan" NCL Campus, S.No.113, 114, Pashan, Pune 411 008, India.
Int J Biol Macromol. 2018 Mar;108:1045-1052. doi: 10.1016/j.ijbiomac.2017.11.020. Epub 2017 Nov 10.
Despite the wide medical importance of serine protease inhibitors, many of kazal type proteins are still to be explored. These thrombin inhibiting proteins are found in the digestive system of hematophagous organisms mainly Arthropods. We studied one of such protein i.e. Kazal type-1 protein from sand-fly Phlebotomus papatasi as its structure and interaction with thrombin is unclear. Initially, Dipetalin a kazal-follistasin domain protein was run through PSI-BLAST to retrieve related sequences. Using this set of sequence a phylogenetic tree was constructed, which identified a distantly related kazal type-1 protein. A three-dimensional structure was predicted for this protein and was aligned with Rhodniin for further evaluation. To have a comparative understanding of it's binding at the thrombin active site, the aligned kazal model-thrombin and rhodniin-thrombin complexes were subjected to molecular dynamics simulations. Dynamics analysis with reference to main chain RMSD, H-chain residue RMSF and total energy showed rhodniin-thrombin complex as a more stable system. Further, the MM/GBSA method was applied that calculated the binding free energy (ΔG) for rhodniin and kazal model as -220.32kcal/Mol and -90.70kcal/Mol, respectively. Thus, it shows that kazal model has weaker bonding with thrombin, unlike rhodniin.
尽管丝氨酸蛋白酶抑制剂具有广泛的医学重要性,但仍有许多 Kazal 型蛋白有待探索。这些凝血酶抑制蛋白存在于主要是节肢动物的吸血生物的消化系统中。我们研究了来自沙蝇(Phlebotomus papatasi)的一种这样的蛋白质,即 Kazal 型-1 蛋白,因为它的结构和与凝血酶的相互作用尚不清楚。最初,通过 PSI-BLAST 运行 Dipetalin(一种 Kazal-follistasin 结构域蛋白)以检索相关序列。使用这组序列构建了系统发育树,该树鉴定了一种远缘的 Kazal 型-1 蛋白。预测了该蛋白质的三维结构,并与 Rhodniin 进行了对齐以进行进一步评估。为了更深入地了解其在凝血酶活性部位的结合情况,将对齐的 Kazal 模型-凝血酶和 Rhodniin-凝血酶复合物进行了分子动力学模拟。与主链 RMSD、H 链残基 RMSF 和总能量相关的动力学分析表明,Rhodniin-凝血酶复合物是一个更稳定的系统。此外,应用 MM/GBSA 方法计算了 Rhodniin 和 Kazal 模型与凝血酶的结合自由能(ΔG),分别为-220.32kcal/Mol 和-90.70kcal/Mol。因此,这表明与 Rhodniin 不同,Kazal 模型与凝血酶的结合较弱。