Defining the ATPase center of bacteriophage T4 DNA packaging machine: Requirement for a catalytic glutamate residue in the large terminase protein gp17

被引:32
作者
Goetzinger, KR [1 ]
Rao, VB [1 ]
机构
[1] Catholic Univ Amer, Dept Biol, Washington, DC 20064 USA
关键词
virus assembly; DNA packaging; terminase; ATPase; Walker B motif;
D O I
10.1016/S0022-2836(03)00636-3
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
Double-stranded DNA packaging in icosahedral bacteriophages is driven by an ATPase-coupled packaging machine constituted by the portal protein and two non-structural packaging/terminase proteins assembled at the unique portal vertex of the empty viral capsid. Recent studies show that the N-terminal ATPase site of bacteriophage T4 large terminase protein gp17 is critically required for DNA packaging. It is likely that this is the DNA translocating ATPase that powers directional translocation of DNA into the viral capsid. Defining this ATPase center is therefore fundamentally important to understand the mechanism of ATP-driven DNA translocation in viruses. Using combinatorial mutagenesis and biochemical approaches, we have defined the catalytic carboxylate residue that is required for ATP hydrolysis. Although the original catalytic carboxylate hypothesis suggested the presence of a catalytic glutamate between the Walker A (SRQLGKT(161-167)) and Walker B (MIYID251-255) motifs, none of the four candidate glutamic acid residues, E198, E208, E220 and E227, is required for function. However, the E256 residue that is immediately adjacent to the putative Walker B aspartic acid residue (D255) exhibited a phenotypic pattern that is consistent with the catalytic carboxylate function. None of the amino acid substitutions, including the highly conservative D and Q, was tolerated. Biochemical analyses showed that the purified E256V, D, and Q mutant gp17s exhibited a complete loss of gp16-stimulated ATPase activity and in vitro DNA packaging activity, whereas their ATP binding and DNA cleavage functions remained intact. The data suggest that the E256 mutants are trapped in an ATP-bound conformation and are unable to catalyze the ATP hydrolysis-transduction cycle that powers DNA translocation. Thus, this study for the first time identified and characterized a catalytic glutamate residue that is involved in the energy transduction mechanism of a viral DNA packaging machine. (C) 2003 Elsevier Ltd. All rights reserved.
引用
收藏
页码:139 / 154
页数:16
相关论文
共 43 条
[1]   SPATIAL PRECISION OF A CATALYTIC CARBOXYLATE OF F1-ATPASE BETA-SUBUNIT PROBED BY INTRODUCING DIFFERENT CARBOXYLATE-CONTAINING SIDE-CHAINS [J].
AMANO, T ;
TOZAWA, K ;
YOSHIDA, M ;
MURAKAMI, H .
FEBS LETTERS, 1994, 348 (01) :93-98
[2]   Isolation and characterization of T4 bacteriophage gp17 terminase, a large subunit multimer with enhanced ATPase activity [J].
Baumann, RG ;
Black, LW .
JOURNAL OF BIOLOGICAL CHEMISTRY, 2003, 278 (07) :4618-4627
[3]   A NOVEL TERMINASE ACTIVITY ASSOCIATED WITH THE DNA PACKAGING PROTEIN-GP17 OF BACTERIOPHAGE-T4 [J].
BHATTACHARYYA, SP ;
RAO, VB .
VIROLOGY, 1993, 196 (01) :34-44
[4]   Modeling of nucleotide binding domains of ABC transporter proteins based on a F1-ATPase/recA topology:: Structural model of the nucleotide binding domains of the Cystic Fibrosis Transmembrane Conductance Regulator (CFTR) [J].
Bianchet, MA ;
Ko, YH ;
Amzel, LM ;
Pedersen, PL .
JOURNAL OF BIOENERGETICS AND BIOMEMBRANES, 1997, 29 (05) :503-524
[5]   DNA PACKAGING AND CUTTING BY PHAGE TERMINASES - CONTROL IN PHAGE-T4 BY A SYNAPTIC MECHANISM [J].
BLACK, LW .
BIOESSAYS, 1995, 17 (12) :1025-1030
[6]  
BLACK LW, 1988, BACTERIOPHAGES, V2, P321
[7]   VIRUS-DNA PACKAGING - THE STRATEGY USED BY PHAGE-LAMBDA [J].
CATALANO, CE ;
CUE, D ;
FEISS, M .
MOLECULAR MICROBIOLOGY, 1995, 16 (06) :1075-1086
[8]   The large subunit of bacteriophage λ's terminase plays a role in DNA translocation and packaging termination [J].
Duffy, C ;
Feiss, M .
JOURNAL OF MOLECULAR BIOLOGY, 2002, 316 (03) :547-561
[9]   DNA PACKAGING BY THE DOUBLE-STRANDED DNA BACTERIOPHAGES [J].
EARNSHAW, WC ;
CASJENS, SR .
CELL, 1980, 21 (02) :319-331
[10]   TERMINASE AND THE RECOGNITION, CUTTING AND PACKAGING OF LAMBDA-CHROMOSOMES [J].
FEISS, M .
TRENDS IN GENETICS, 1986, 2 (04) :100-104