Issue June 2006

category image Volume 23
No. 6 (p 581-685)
June 2006
ISSN 0739-110

Structural and Dynamical Properties of a Full-length HIV-1 Integrase: Molecular Dynamics Simulations (p. 613-624)

The structural and dynamical properties of the complete full-length structure of HIV-1 integrase were investigated using Molecular Dynamics approach. Simulations were carried out for the three systems, core domain only (CORE), full-length structure without (FULL) and with a Mg2+ (FULL+ION) in its active site, aimed to investigate the difference in the molecular properties of the full-length models due to their different construction procedures as well as the effects of the two ends, C- and N-terminal, on those properties in the core domain. The full-length structure was prepared from the two experimental structures of two-domain fragment. The following properties were observed to differ significantly from the previous reports: (i) relative topology formed by an angle between the three domains; (ii) the cavity size defined by the catalytic triad, Asp64, Asp116, and Glu152; (iii) distances and solvation of the Mg2+; and (iv) conformation of the catalytic residues. In addition, the presence of the two terminal domains decreases the mobility of the central core domain significantly.

Key words: Molecular dynamics; HIV-1 integrase; Full-length; Structure.

Atchara Wijitkosoom1,2
Somsak Tonmunphean1
Thanh N. Truong2,*
Supot Hannongbua1,*

1Department of Chemistry
Faculty of Science
Chulalongkorn University
Patumwan, Bangkok 10330 Thailand
2Department of Chemistry
University of Utah
315 So. 1400 East, Rm 2020
Salt Lake City, Utah, 84102 USA
*supot.h@chula.ac.th Truong@chemistry.utah.edu

Purchase Downloadable Full Text PDF of Articles

Corporate User

$100.00

University/Academic User

$50.00

Subscription is more cost effective than purchasing PDFs on-the-fly.  Click here for details.