Investigation on bioactive protection of the amino acids derived from LEA protein on insulin by molecular simulation
Nowadays heat-sensitive protein medicines are increasingly showing their importance in the treatment of various diseases. Their popularisation and application are meeting a great challenge because of their heat lability. In this study, human insulin as a heat-sensitive protein medicine and 66 amino...
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Published in: | Molecular simulation Vol. 39; no. 10; pp. 780 - 787 |
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Taylor & Francis
01-09-2013
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Abstract | Nowadays heat-sensitive protein medicines are increasingly showing their importance in the treatment of various diseases. Their popularisation and application are meeting a great challenge because of their heat lability. In this study, human insulin as a heat-sensitive protein medicine and 66 amino acids derived from a Group 3 late embryogenesis abundant protein fragment as a complex bioactive protectant, were chosen to be investigated to determine whether these amino acids can be used to protect the insulin from denaturation due to drying. The experiments were carried out by using a replica exchange molecular dynamics (REMD) simulation and GROMACS software with Gromos96 (53a6) force field. The REMD results indicate that those amino acids can effectively prevent the reversal between hydrophilic and hydrophobic surface. Both the configurations and secondary structures of the protected insulin were preserved very well. The H-bonding and electrostatic interactions between the insulin and the protectant play key roles in the bioactive protection of insulin. These results agree well with the water replacement hypothesis. All the results prove that these amino acids are a perfect bioactive protectant for heat-sensitive protein medicines. |
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AbstractList | Nowadays heat-sensitive protein medicines are increasingly showing their importance in the treatment of various diseases. Their popularisation and application are meeting a great challenge because of their heat lability. In this study, human insulin as a heat-sensitive protein medicine and 66 amino acids derived from a Group 3 late embryogenesis abundant protein fragment as a complex bioactive protectant, were chosen to be investigated to determine whether these amino acids can be used to protect the insulin from denaturation due to drying. The experiments were carried out by using a replica exchange molecular dynamics (REMD) simulation and GROMACS software with Gromos96 (53a6) force field. The REMD results indicate that those amino acids can effectively prevent the reversal between hydrophilic and hydrophobic surface. Both the configurations and secondary structures of the protected insulin were preserved very well. The H-bonding and electrostatic interactions between the insulin and the protectant play key roles in the bioactive protection of insulin. These results agree well with the water replacement hypothesis. All the results prove that these amino acids are a perfect bioactive protectant for heat-sensitive protein medicines. |
Author | Guo, Baisong Zhai, Zhen Liu, Yaru Liu, Li Li, Daixi Zhang, Yan Liu, Baolin Yu, Huaxing Yang, Chunsheng |
Author_xml | – sequence: 1 givenname: Daixi surname: Li fullname: Li, Daixi email: dxli75@126.com organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 2 givenname: Baisong surname: Guo fullname: Guo, Baisong organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 3 givenname: Baolin surname: Liu fullname: Liu, Baolin organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 4 givenname: Zhen surname: Zhai fullname: Zhai, Zhen organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 5 givenname: Yan surname: Zhang fullname: Zhang, Yan organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 6 givenname: Yaru surname: Liu fullname: Liu, Yaru organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 7 givenname: Huaxing surname: Yu fullname: Yu, Huaxing organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 8 givenname: Li surname: Liu fullname: Liu, Li organization: Institute of Biothermal Engineering, University of Shanghai for Science and Technology – sequence: 9 givenname: Chunsheng surname: Yang fullname: Yang, Chunsheng organization: Shanghai Tofflon Science and Technology Co., Ltd |
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SubjectTerms | Amino acids amino acids derived from late embryogenesis abundant protein bioactive protection Denaturation Drying human insulin Insulin Medical services Medicine Proteins replica exchange molecular dynamics simulation Simulation |
Title | Investigation on bioactive protection of the amino acids derived from LEA protein on insulin by molecular simulation |
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