Structural and phylogenetic analysis of adenovirus hexons by use of high-resolution X-ray crystallographic, molecular modeling, and sequence-based methods

被引:178
作者
Rux, JJ [1 ]
Kuser, PR [1 ]
Burnett, RM [1 ]
机构
[1] Wistar Inst Anat & Biol, Philadelphia, PA 19104 USA
关键词
D O I
10.1128/JVI.77.17.9553-9566.2003
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
A major impediment to the use of adenovirus as a gene therapy vector and for vaccine applications is the host immune response to adenovirus hexon-the major protein component of the icosahedral capsid. A solution may lie in novel vectors with modified or chimeric hexons designed to evade the immune response. To facilitate this approach, we have distinguished the portion of hexon that all serotypes have in common from the hypervariable regions that are responsible for capsid diversity and type-specific immunogenicity. The common hexon core-conserved because it forms the viral capsid-sets boundaries to the regions where modifications the newly refined crystal structures of human adenovirus types 2 (Ad2) and Ad5 hexon. Comparison of the two hexon models, which are the most accurate so far, reveals that over 90% of the residues in each have three-dimensional positions that closely match. Structures for more distant hexons were predicted by building molecular models of human Ad4, chimpanzee adenovirus (AdC68), and fowl adenovirus 1 (FAV1 or CELO). The five structures were then used to guide the alignment of the 40 full-length (>900 residues) hexon sequences in public databases. Distance- and parsimony-based phylogenetic trees are consistent and reveal evolutionary relationships between adenovirus types that parallel those of their animal hosts. The combination of crystallography, molecular modeling, and phylogenetic analysis defines a conserved molecular core that can serve as the armature for the directed design of novel hexons.
引用
收藏
页码:9553 / 9566
页数:14
相关论文
共 80 条
[21]   Targeted gene delivery by tropism-modified adenoviral vectors [J].
Douglas, JT ;
Rogers, BE ;
Rosenfeld, ME ;
Michael, SI ;
Feng, MZ ;
Curiel, DT .
NATURE BIOTECHNOLOGY, 1996, 14 (11) :1574-1578
[22]   Replication-defective vector based on a chimpanzee adenovirus [J].
Farina, SF ;
Gao, GP ;
Xiang, ZQ ;
Rux, JJ ;
Burnett, RM ;
Alvira, MR ;
Marsh, J ;
Ertl, HCJ ;
Wilson, JM .
JOURNAL OF VIROLOGY, 2001, 75 (23) :11603-11613
[23]  
Felsenstein J., 1989, CLADISTICS, V5, P164, DOI DOI 10.1111/J.1096-0031.1989.TB00562.X
[24]   STRUCTURAL PROTEINS OF ADENOVIRUS .5. SIZE AND STRUCTURE OF ADENOVIRUS TYPE-2 HEXON [J].
FRANKLIN, RM ;
PETTERSSON, U ;
AKERVALL, K ;
STRANDBERG, B ;
PHILIPSON, L .
JOURNAL OF MOLECULAR BIOLOGY, 1971, 57 (03) :383-+
[25]   Adenovirus type 5 and 7 capsid chimera: Fiber replacement alters receptor tropism without affecting primary immune neutralization epitopes [J].
Gall, J ;
KassEisler, A ;
Leinwand, L ;
FalckPedersen, E .
JOURNAL OF VIROLOGY, 1996, 70 (04) :2116-2123
[26]   Construction and characterization of hexon-chimeric adenoviruses: Specification of adenovirus serotype [J].
Gall, JGD ;
Crystal, RG ;
Falck-Pedersen, E .
JOURNAL OF VIROLOGY, 1998, 72 (12) :10260-10264
[27]  
Goldman CK, 1997, CANCER RES, V57, P1447
[28]   STEPWISE DISMANTLING OF ADENOVIRUS-2 DURING ENTRY INTO CELLS [J].
GREBER, UF ;
WILLETTS, M ;
WEBSTER, P ;
HELENIUS, A .
CELL, 1993, 75 (03) :477-486
[29]   SWISS-MODEL and the Swiss-PdbViewer: An environment for comparative protein modeling [J].
Guex, N ;
Peitsch, MC .
ELECTROPHORESIS, 1997, 18 (15) :2714-2723
[30]   Targeting of adenoviral vectors through a bispecific single-chain antibody [J].
Haisma, HJ ;
Grill, J ;
Curiel, DT ;
Hoogeland, S ;
van Beusechem, VW ;
Pinedo, HM ;
Gerritsen, WR .
CANCER GENE THERAPY, 2000, 7 (06) :901-904