Computational Challenges of Structure-Based Approaches Applied to HIV
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Publisher
Springer International Publishing
Link
http://link.springer.com/content/pdf/10.1007/82_2015_432
Reference71 articles.
1. Adachi M, Ohhara T, Kurihara K, Tamada T, Honjo E, Okazaki N, Arai S, Shoyama Y, Kimura K, Matsumura H (2009) Structure of HIV-1 protease in complex with potent inhibitor KNI-272 determined by high-resolution X-ray and neutron crystallography. Proc Nat Acad Sci 106(12):4641–4646
2. Ala PJ, DeLoskey RJ, Huston EE, Jadhav PK, Lam PY, Eyermann CJ, Hodge CN, Schadt MC, Lewandowski FA, Weber PC (1998) Molecular recognition of cyclic urea HIV-1 protease inhibitors. J Biol Chem 273(20):12325–12331
3. Alvizo O, Mittal S, Mayo SL, Schiffer CA (2012) Structural, kinetic, and thermodynamic studies of specificity designed HIV-1 protease. Protein Sci 21(7):1029–1041
4. Amaro RE, Baron R, McCammon JA (2008) An improved relaxed complex scheme for receptor flexibility in computer-aided drug design. J comput Aided Mol Des 22(9):693–705
5. Baksh MM, Kussrow AK, Mileni M, Finn M, Bornhop DJ (2011) Label-free quantification of membrane-ligand interactions using backscattering interferometry. Nat Biotechnol 29(4):357–360
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