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1

4,000원

Computer-aided drug design uses computational chemistry to discover, enhance, or study drugs and related biologically active molecules. It is now proved to be effective in reducing costs and speeding up drug discovery. In this short review, we discussed on the importance of combining molecular docking and molecular dynamics simulation methodologies. We also reviewed the importance of protein flexibility, refinement of docked complexes using molecular dynamics and the use of free energy calculations for the calculation of accurate binding energies has been reviewed.

2

4,000원

Structure-based drug design possibly benefit from in silico methods that precisely predict the binding affinity of small molecules to target macromolecules. There are many limitations arise from the difficulty of predicting the binding affinity of a small molecule to a biological target with the current scoring functions. There is thus a strong interest in novel methodologies based on MD simulations that claim predictions of greater accuracy than current scoring functions, helpful for a regular use designed for drug discovery in the pharmaceutical industry. Herein, we report a short review on free energy calculations using MMPBSA method a useful method in structure based drug discovery.

3

Computational Analysis of the 3-D structure of Human GPR87 Protein: Implications for Structure-Based Drug Design

Rani, Mukta, Nischal, Anuradha, Sahoo, Ganesh Chandra, Khattri, Sanjay

[Kisti 연계] 아시아태평양암예방학회 Asian Pacific journal of cancer prevention : APJCP Vol.14 No.12 2013 pp.7473-7482

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원문보기

The G-protein coupled receptor 87 (GPR87) is a recently discovered orphan GPCR which means that the search of their endogenous ligands has been a novel challenge. GPR87 has been shown to be overexpressed in squamous cell carcinomas (SCCs) or adenocarcinomas in lungs and bladder. The 3D structure of GPR87 was here modeled using two templates (2VT4 and 2ZIY) by a threading method. Functional assignment of GPR87 by SVM revealed that along with transporter activity, various novel functions were predicted. The 3D structure was further validated by comparison with structural features of the templates through Verify-3D, ProSA and ERRAT for determining correct stereochemical parameters. The resulting model was evaluated by Ramachandran plot and good 3D structure compatibility was evidenced by DOPE score. Molecular dynamics simulation and solvation of protein were studied through explicit spherical boundaries with a harmonic restraint membrane water system. A DRY-motif (Asp-Arg-Tyr sequence) was found at the end of transmembrane helix3, where GPCR binds and thus activation of signals is transduced. In a search for better inhibitors of GPR87, in silico modification of some substrate ligands was carried out to form polar interactions with Arg115 and Lys296. Thus, this study provides early insights into the structure of a major drug target for SCCs.

4

On the Crystal Structure of a human Cell Division Cycle Controlling Protein Kinase(CDK2) and Structure-Based Drug Design

Kim, Sung-Hou-

[Kisti 연계] 한국응용약물학회 한국응용약물학회 학술대회논문집 1994 pp.41-49

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원문보기

The most common conventional method of discovering a drug involves a massive screening of a large number of compounds in chemical libraries or in the extracts from natural sources such as plants or microbial broths followed by chemical modification of one or more active compounds to improve their properties as a drug. When the three-dimensional structure of the target molecule for which the drug is searched is known the drug discovery process can be significantly simplified, This is especially true when the three-dimensional structure of a complex between the target and a lead compound is known. In this lecture our experience on the structure-based drug design for human CDK2(cyclin-dependent protein kinase 2) will be discussed with special emphasis on the strength and weakness of this approach of drug discovery. The regulation of the activity of CDK2 plays an important role in the cell proliferation of normal and cancer cells.

5

Structure-based Drug Design by NMR

전영호, 문재웅, 김국현, 노성구, 김진환, 강성수, 김상수

[Kisti 연계] 한국자기공명학회 한국자기공명학회 학술대회논문집 1999 p.6

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6

Discovery of FAK Inhibitors Using Structure Based Drug Design

Nam, Ky-Youb, Jin, Dong-Hoon, No, Kyoung Tai, Ahn, Soon Kil

[Kisti 연계] 대한화학회 Bulletin of the Korean Chemical Society Vol.35 No.11 2014 pp.3156-3157

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