Flaps Morph for HIV Protease

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Line 33: Line 33:
2 chains
2 chains
</td><td>
</td><td>
-
12.3 Å
+
12.25 Å
</td><td>
</td><td>
I10L, N25D, V36M, L46M, V54I, V62I, P63L, V71A, A82V, V84I, M90L
I10L, N25D, V36M, L46M, V54I, V62I, P63L, V71A, A82V, V84I, M90L
Line 47: Line 47:
1 chain
1 chain
</td><td>
</td><td>
-
xxx Å
+
12.2 Å
</td><td>
</td><td>
K7Q
K7Q

Revision as of 18:24, 22 February 2020

Wide-Open HIV Protease Crystal Structures

PDB ID

Year

Resolution

Asymm. Unit

I50 dist.

Mutations

1tw7

2005

1.3 Å

2 chains

12.25 Å

I10L, N25D, V36M, L46M, V54I, V62I, P63L, V71A, A82V, V84I, M90L

2pc0

2007

1.4 Å

1 chain

12.2 Å

K7Q


  • I did not finish examining hits via google for 'hiv protease flaps animation'





  1. Heal JW, Jimenez-Roldan JE, Wells SA, Freedman RB, Romer RA. Inhibition of HIV-1 protease: the rigidity perspective. Bioinformatics. 2012 Feb 1;28(3):350-7. doi: 10.1093/bioinformatics/btr683. PMID:22291339 doi:http://dx.doi.org/10.1093/bioinformatics/btr683
  2. Martin P, Vickrey JF, Proteasa G, Jimenez YL, Wawrzak Z, Winters MA, Merigan TC, Kovari LC. "Wide-open" 1.3 A structure of a multidrug-resistant HIV-1 protease as a drug target. Structure. 2005 Dec;13(12):1887-95. PMID:16338417 doi:10.1016/j.str.2005.11.005
  3. Tozzini V, Trylska J, Chang CE, McCammon JA. Flap opening dynamics in HIV-1 protease explored with a coarse-grained model. J Struct Biol. 2007 Mar;157(3):606-15. doi: 10.1016/j.jsb.2006.08.005. Epub 2006 , Aug 23. PMID:17029846 doi:http://dx.doi.org/10.1016/j.jsb.2006.08.005

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Eric Martz

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