首页> 外文期刊>Indian Journal of Microbiology >Molecular Modeling and Docking of Microbial Inulinases Towards Perceptive Enzyme-Substrate Interactions
【24h】

Molecular Modeling and Docking of Microbial Inulinases Towards Perceptive Enzyme-Substrate Interactions

机译:微生物菊粉酶的分子建模和对接的感知酶-底物相互作用的对接。

获取原文
获取原文并翻译 | 示例
       

摘要

Inulin is emerging as an extremely rare source of sugar, it is having more sweetening capacity than table sugar, has beneficial effect in diabetic patient. Inulinases mainly produced by the microorganism and it degrades inulin into fructose which is a digestible form. There are more than 58 strains of microorganisms which are involved in the production of inulinases. The present report investigates about the selectivity of inulin by inulinase and its action to produce fructose through molecular docking. We have investigated exo-inulinase and endo-inulinases from Penicillium sp. TN-88(BAC16218) and Penicillium sp. TN-88(BAA19132), respectively with different arrangement of amino acids in the active site which detect the substrate. The protein sequences described above were processed to homology modeling by Swiss model and further they were docked with 1-ketose and fructose-6-phosphate as substrate by DOCK6 software package (dock. compbio. ucsf. edu). The results of the present studies represented that fructose-6-phosphate ((2R,3R,4S) fructose-6-phosphate) was having better interaction with exo-inulinase showing grid score of -40. 288094 and the conserved amino acid Asp-22, Asp 128, Asp 179 and Ser 84 of exo-inulinase are involved in the bonding. In addition to this it was also seen that 1-ketose ((3S,4R)-ketose 1-phosphate) did not shown any interaction with the conserved part of the endo-inulinase.
机译:菊粉是糖的一种极为罕见的来源,它具有比食用糖更多的甜味能力,对糖尿病患者具有有益的作用。菊粉酶主要由微生物产生,并且将菊粉降解为可消化形式的果糖。菊粉酶的生产涉及超过58种微生物菌株。本报告研究了菊粉酶对菊粉的选择性及其通过分子对接产生果糖的作用。我们已经研究了青霉菌属的外-菊粉酶和内-菊糖酶。 TN-88(BAC16218)和青霉菌TN-88(BAA19132)在活性位点分别具有不同的氨基酸排列,可检测底物。通过Swiss模型将上述蛋白质序列加工成同源性模型,然后通过DOCK6软件包(dock.compbio.ucsf.edu)将它们与1-酮糖和果糖6-磷酸对接。本研究的结果表明,果糖6磷酸酯((2R,3R,4S)果糖6磷酸酯)与外切菊粉酶具有更好的相互作用,网格分数为-40。外泌菊糖酶的288094和保守氨基酸Asp-22,Asp 128,Asp 179和Ser 84参与该键合。除此之外,还发现1-酮糖((3S,4R)-酮糖1-磷酸酯)未显示出与内切菊糖酶的保守部分的任何相互作用。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号