The LLSGIV stretch of the N-terminal region of HIV-1 gp41 is critical for binding to a model peptide, T20

被引:42
作者
Trivedi, VD [1 ]
Cheng, SF [1 ]
Wu, CW [1 ]
Karthikeyan, R [1 ]
Chen, CJ [1 ]
Chang, DK [1 ]
机构
[1] Acad Sinica, Inst Chem, Taipei 11529, Taiwan
来源
PROTEIN ENGINEERING | 2003年 / 16卷 / 04期
关键词
binding site; coiled coil; conformational transition; inhibitory peptide; inner and outer helix regions;
D O I
10.1093/proeng/gzg036
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
A number of peptides and peptide analogs derived from the membrane proximal region of gp41 ectodomain are found to be effective inhibitors of human immunodeficiency virus type 1 (HIV-1)-mediated fusion events. One of them, T20 (aa 638-673), was found disordered and sparingly soluble in water, but became soluble upon mixing with selected, structured peptides from the amino terminal heptad repeat (HR1) region of gp41 using a simple and sensitive method of reduction in the scattering of T20 suspension. From the results on mapping the locus of interaction with T20 by employing partially overlapping peptides derived from HR1, it was concluded that the LLSGIV segment was a critical docking site for the C-terminal peptide of gp41 in its putative inhibitory action consistent with a previous fluorescence study. It was also found that peptides capable of solubilizing T20 dispersion have a high content of helix, as well as beta-strand, conformation in aqueous solution. Specificity of T20/HR1-derived peptide binding was ascertained by using a scrambled sequence of a T20-active peptide and a plateau in scattering reduction of T20 suspension with variation in the concentration of a T20-active HR1 peptide. Implications on the mechanism of T20 inhibition and the sequence of folding of the gp41 core structure are discussed.
引用
收藏
页码:311 / 317
页数:7
相关论文
共 47 条
[1]   TRIMERIC SUBDOMAIN OF THE SIMIAN IMMUNODEFICIENCY VIRUS GLYCOPROTEIN [J].
BLACKLOW, SC ;
LU, M ;
KIM, P .
BIOCHEMISTRY, 1995, 34 (46) :14955-14962
[2]   Three-dimensional solution structure of the 44 kDa ectodomain of SIV gp41 [J].
Caffrey, M ;
Cai, ML ;
Kaufman, J ;
Stahl, SJ ;
Wingfield, PT ;
Covell, DG ;
Gronenborn, AM ;
Clore, GM .
EMBO JOURNAL, 1998, 17 (16) :4572-4584
[3]   EFFECTS OF AMINO-ACID CHANGES IN THE EXTRACELLULAR DOMAIN OF THE HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 GP41 ENVELOPE GLYCOPROTEIN [J].
CAO, J ;
BERGERON, L ;
HELSETH, E ;
THALI, M ;
REPKE, H ;
SODROSKI, J .
JOURNAL OF VIROLOGY, 1993, 67 (05) :2747-2755
[4]   Core structure of gp41 from the HIV envelope glycoprotein [J].
Chan, DC ;
Fass, D ;
Berger, JM ;
Kim, PS .
CELL, 1997, 89 (02) :263-273
[5]   Evidence that a prominent cavity in the coiled coil of HIV type 1 gp41 is an attractive drug target [J].
Chan, DC ;
Chutkowski, CT ;
Kim, PS .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (26) :15613-15617
[6]   HIV entry and its inhibition [J].
Chan, DC ;
Kim, PS .
CELL, 1998, 93 (05) :681-684
[7]   Biophysical characterization of the structure of the amino-terminal region of gp41 of HIV-1 - Implications on viral fusion mechanism [J].
Chang, DK ;
Cheng, SF ;
Trivedi, VD .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (09) :5299-5309
[8]   A MOLECULAR CLASP IN THE HUMAN-IMMUNODEFICIENCY-VIRUS (HIV) TYPE-1 TM PROTEIN DETERMINES THE ANTI-HIV ACTIVITY OF GP41 DERIVATIVES - IMPLICATION FOR VIRAL FUSION [J].
CHEN, CH ;
MATTHEWS, TJ ;
MCDANAL, CB ;
BOLOGNESI, DP ;
GREENBERG, ML .
JOURNAL OF VIROLOGY, 1995, 69 (06) :3771-3777
[9]   RETROVIRAL ENVELOPE GLYCOPROTEINS CONTAIN A LEUCINE ZIPPER-LIKE REPEAT [J].
DELWART, EL ;
MOSIALOS, G ;
GILMORE, T .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 1990, 6 (06) :703-706
[10]   How do viruses enter cells? The HIV coreceptors teach us a lesson of complexity [J].
Dimitrov, DS .
CELL, 1997, 91 (06) :721-730