Vertical-scanning mutagenesis of a critical tryptophan in the "minor groove binding track" of HIV-1 reverse transcriptase - Major groove DNA adducts identify specific protein interactions in the minor groove

被引:30
作者
Latham, GJ
Forgacs, E
Beard, WA
Prasad, R
Bebenek, K
Kunkel, TA
Wilson, SH
Lloyd, RS
机构
[1] Univ Texas, Med Branch, Sealy Ctr Mol Sci, Galveston, TX 77555 USA
[2] NIEHS, Mol Genet Lab, NIH, Res Triangle Pk, NC 27709 USA
[3] NIEHS, Struct Biol Lab, NIH, Res Triangle Pk, NC 27709 USA
关键词
D O I
10.1074/jbc.M000279200
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
Biochemical and molecular modeling studies of human immunodeficiency virus type 1 reverse transcriptase (RT) have revealed that a structural element, the minor groove binding track (MGBT), is important for both replication frameshift fidelity and processivity, The MGBT interactions occur in the DNA minor groove from the second through sixth base pair from the primer 3'-terminus where the DNA undergoes a structural transition from A-like to B-form DNA Alanine-scanning mutagenesis had previously demonstrated that Gly(262) and Trp(266) of the MGBT contributes important DNA interactions. To probe the molecular interactions occurring in this critical region, eight mutants of RT were studied in which alternate residues were substituted for Trp(266) These enzymes were characterized in primer extension assays in which the template DNA was adducted at a single adenine by either R- or S-enantiomers of styrene oxide. These lesions failed to block DNA polymerization by wild-type RT, yet the Trp(266) mutants and an alanine mutant of Gly(262) terminated synthesis on styrene oxide-adducted templates. Significantly, the sites of termination occurred primarily 1 and 3 bases following adduct bypass, when the lesion was positioned in the major groove of the template-primer stem. These results indicate that residue 266 serves as a "protein sensor" of altered minor groove interactions and identifies which base pair interactions are altered by these lesions. In addition, the major groove lesion must alter important structural transitions in the template-primer stem, such as minor groove widening, that allow RT access to the minor groove.
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页码:15025 / 15033
页数:9
相关论文
共 36 条
[1]  
ABBOTTS J, 1988, J BIOL CHEM, V263, P15094
[2]   Vertical-scanning mutagenesis of a critical tryptophan in the minor groove binding track of HIV-1 reverse transcriptase - Molecular nature of polymerase-nucleic acid interactions [J].
Beard, WA ;
Bebenek, K ;
Darden, TA ;
Li, L ;
Prasad, R ;
Kunkel, TA ;
Wilson, SH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1998, 273 (46) :30435-30442
[3]   Role of the ''helix clamp'' in HIV-1 reverse transcriptase catalytic cycling as revealed by alanine-scanning mutagenesis [J].
Beard, WA ;
Minnick, DT ;
Wade, CL ;
Prasad, R ;
Won, RL ;
Kumar, A ;
Kunkel, TA ;
Wilson, SH .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1996, 271 (21) :12213-12220
[4]  
BEARD WA, 1994, J BIOL CHEM, V269, P28091
[5]   REDUCED FRAMESHIFT FIDELITY AND PROCESSIVITY OF HIV-1 REVERSE-TRANSCRIPTASE MUTANTS CONTAINING ALANINE SUBSTITUTIONS IN HELIX-H OF THE THUMB SUBDOMAIN [J].
BEBENEK, K ;
BEARD, WA ;
CASASFINET, JR ;
KIM, HR ;
DARDEN, TA ;
WILSON, SH ;
KUNKEL, TA .
JOURNAL OF BIOLOGICAL CHEMISTRY, 1995, 270 (33) :19516-19523
[6]   A minor groove binding track in reverse transcriptase [J].
Bebenek, K ;
Beard, WA ;
Darden, TA ;
Li, LP ;
Prasad, R ;
Luxon, BA ;
Gorenstein, DG ;
Wilson, SH ;
Kunkel, TA .
NATURE STRUCTURAL BIOLOGY, 1997, 4 (03) :194-197
[7]   STRUCTURE OF HIV-1 REVERSE-TRANSCRIPTASE IN A COMPLEX WITH THE NONNUCLEOSIDE INHIBITOR ALPHA-APA-R-95845 AT 2.8-ANGSTROM RESOLUTION [J].
DING, J ;
DAS, K ;
TANTILLO, C ;
ZHANG, W ;
CLARK, AD ;
JESSEN, S ;
LU, X ;
HSIOU, Y ;
JACOBOMOLINA, A ;
ANDRIES, K ;
PAUWELS, R ;
MOEREELS, H ;
KOYMANS, L ;
JANSSEN, PAJ ;
SMITH, RH ;
KOEPKE, MK ;
MICHEJDA, CJ ;
HUGHES, SH ;
ARNOLD, E .
STRUCTURE, 1995, 3 (04) :365-379
[8]   Structure and functional implications of the polymerase active site region in a complex of HIV-1 RT with a double-stranded DNA template-primer and an antibody Fab fragment at 2.8 Å resolution [J].
Ding, JP ;
Das, K ;
Hsiou, Y ;
Sarafianos, SG ;
Clark, AD ;
Jacobo-Molina, A ;
Tantillo, C ;
Hughes, SH ;
Arnold, E .
JOURNAL OF MOLECULAR BIOLOGY, 1998, 284 (04) :1095-1111
[9]   Crystal structure of a bacteriophage T7 DNA replication complex at 2.2 Å resolution [J].
Doublié, S ;
Tabor, S ;
Long, AM ;
Richardson, CC ;
Ellenberger, T .
NATURE, 1998, 391 (6664) :251-258
[10]   MAJOR GROOVE (R)-ALPHA-(N-6-ADENYL)STYRENE OXIDE ADDUCTS IN AN OLIGODEOXYNUCLEOTIDE CONTAINING THE HUMAN N-RAS CODON-61 SEQUENCE - CONFORMATIONS OF THE R(61,2) AND R(61,3) SEQUENCE ISOMERS FROM H-1-NMR [J].
FENG, BB ;
ZHOU, L ;
PASSARELLI, M ;
HARRIS, CM ;
HARRIS, TM ;
STONE, MP .
BIOCHEMISTRY, 1995, 34 (43) :14021-14036