Amplification of a complete simian immunodeficiency virus genome from fecal RNA of a wild chimpanzee

被引:49
作者
Santiago, ML
Bibollet-Ruche, F
Bailes, E
Kamenya, S
Muller, MN
Lukasik, M
Pusey, AE
Collins, DA
Wrangham, RW
Goodall, J
Shaw, GM
Sharp, PM
Hahn, BH
机构
[1] Univ Alabama Birmingham, Dept Med, Birmingham, AL 35294 USA
[2] Univ Alabama Birmingham, Dept Microbiol, Birmingham, AL 35294 USA
[3] Howard Hughes Med Inst, Birmingham, AL 35294 USA
[4] Univ Nottingham, Queens Med Ctr, Genet Inst, Nottingham NG7 2UH, England
[5] Jane Goodall Int Tanzania, Gombe Stream Res Ctr, Kigoma, Tanzania
[6] Harvard Univ, Dept Anthropol, Cambridge, MA 02138 USA
[7] Univ Minnesota, Dept Ecol Evolut & Behav, St Paul, MN 55108 USA
[8] Jane Goodall Inst, Silver Spring, MD 20911 USA
关键词
D O I
10.1128/JVI.77.3.2233-2242.2003
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Current knowledge of the genetic diversity of simian immunodeficiency virus (SIVcpz) infection of wild chimpanzees (Pan troglodytes) is incomplete since few isolates, mostly from captive apes from Cameroon and Gabon, have been characterized; yet this information is critical for understanding the origins of human immunodeficiency virus type 1 (HIV-1) and the circumstances leading to the HIV-1 pandemic. Here, we report the first full-length SIVcpz sequence (TAN1) from a wild chimpanzee (Pan troglodytes schweinfurthii) from Gombe National Park (Tanzania), which was obtained noninvasively by amplification of virion RNA from fecal samples collected under field conditions. Using reverse transcription-PCR and a combination of generic and strain-specific primers, we amplified 13 subgenomic fragments which together spanned the entire TAN1 genome (9,326 bp). Distance and phylogenetic tree analyses identified TAN1 unambiguously as a member of the HIV-1/SIVcpz group of viruses but also revealed an extraordinary degree of divergence from all previously characterized SIVcpz and HIV-1 strains. In Gag, Poll, and Env proteins, TAN1 differed from west-central African SIVcpz and HIV-1 strains on average by 36, 30, and 51% of amino acid sequences, respectively, approaching distance values typically found for SIVs from different primate species. The closest relative was SIVcpzANT, also from a P. t. schweinfurthii ape, which differed by 30, 25, and 44%, respectively, in these same protein sequences but clustered with TAN1 in all major coding regions in a statistically highly significant manner. These data indicate that east African chimpanzees, like those from west-central Africa, are naturally infected by SIVcpz but that their viruses comprise a second, divergent SIVcpz lineage which appears to have evolved in relative isolation for an extended period of time. Our data also demonstrate that noninvasive molecular epidemiological studies of SIVcpz in wild chimpanzees are feasible and that such an approach may prove essential for unraveling the evolutionary history of SIVcpz/HIV-1 as well as that of other pathogens naturally infecting wild primate populations.
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页码:2233 / 2242
页数:10
相关论文
共 47 条
[1]   HIV-1 group O infection in Cameroon, 1986-1998 [J].
Ayouba, A ;
Mauclère, P ;
Martin, PMV ;
Cunin, P ;
Mfoupouendoun, J ;
Njinku, B ;
Souquières, S ;
Simon, F .
EMERGING INFECTIOUS DISEASES, 2001, 7 (03) :466-467
[2]  
BAILES E, 2002, MOL EPIDEMIOLOGY HUM, P65
[3]   Short communication - Molecular characterization of the envelope transmembrane glycoprotein of 13 new human immunodeficiency virus type 1 group O strains from six different African countries [J].
Bibollet-Ruche, F ;
Peeters, M ;
Mboup, S ;
Ekaza, E ;
Gandji, R ;
Torimiro, J ;
Mpoudi, EN ;
Amblard, J ;
Dibanga, G ;
Saidou, M ;
Esu-Williams, E ;
Haesevelde, MV ;
Saman, E ;
Delaporte, E .
AIDS RESEARCH AND HUMAN RETROVIRUSES, 1998, 14 (14) :1281-1285
[4]   Simian immunodeficiency virus infection in a patas monkey (Erythrocebus patas): Evidence for cross-species transmission from African green monkeys (Cercopithecus aethiops sabaeus) in the wild [J].
BibolletRuche, F ;
GalatLuong, A ;
Cuny, G ;
SarniManchado, P ;
Galat, G ;
Durand, JP ;
Pourrut, X ;
Veas, F .
JOURNAL OF GENERAL VIROLOGY, 1996, 77 :773-781
[5]   A recombinant human immunodeficiency virus type 1 envelope glycoprotein complex stabilized by an intermolecular disulfide bond between the gp120 and gp41 subunits is an antigenic mimic of the trimeric virion-associated structure [J].
Binley, JM ;
Sanders, RW ;
Clas, B ;
Schuelke, N ;
Master, A ;
Guo, Y ;
Kajumo, F ;
Anselma, DJ ;
Maddon, PJ ;
Olson, WC ;
Moore, JP .
JOURNAL OF VIROLOGY, 2000, 74 (02) :627-643
[6]  
Butynski Thomas M., 2001, P3
[7]   env Sequences of simian immunodeficiency viruses from chimpanzees in Cameroon are strongly related to those of human immunodeficiency virus group N from the same geographic area [J].
Corbet, S ;
Müller-Trutwin, MC ;
Versmisse, P ;
Delarue, S ;
Ayouba, A ;
Lewis, J ;
Brunak, S ;
Martin, P ;
Brun-Vezinet, F ;
Simon, F ;
Barre-Sinoussi, F ;
Mauclere, P .
JOURNAL OF VIROLOGY, 2000, 74 (01) :529-534
[8]   Characterization of a novel simian immunodeficiency virus with a vpu gene from greater spot-nosed monkeys (Cercopithecus nictitans) provides new insights into simian/human immunodeficiency virus phylogeny [J].
Courgnaud, V ;
Salemi, M ;
Pourrut, X ;
Mpoudi-Ngole, E ;
Abela, B ;
Auzel, P ;
Bibollet-Ruche, F ;
Hahn, B ;
Vandamme, AM ;
Delaporte, E ;
Peeters, M .
JOURNAL OF VIROLOGY, 2002, 76 (16) :8298-8309
[9]   MUTATIONAL ANALYSIS OF CELL-CYCLE ARREST, NUCLEAR-LOCALIZATION, AND VIRION PACKAGING OF HUMAN-IMMUNODEFICIENCY-VIRUS TYPE-1 VPR [J].
DIMARZIO, P ;
CHOE, S ;
EBRIGHT, M ;
KNOBLAUCH, R ;
LANDAU, NR .
JOURNAL OF VIROLOGY, 1995, 69 (12) :7909-7916
[10]   Gene flow in wild chimpanzee populations: what genetic data tell us about chimpanzee movement over space and time [J].
Gagneux, P ;
Gonder, MK ;
Goldberg, TL ;
Morin, PA .
PHILOSOPHICAL TRANSACTIONS OF THE ROYAL SOCIETY B-BIOLOGICAL SCIENCES, 2001, 356 (1410) :889-897