Relationship between capsid protein (VP2) sequence and pathogenicity of Aleutian mink disease parvovirus (ADV): A possible role for raccoons in the transmission of ADV infections

被引:84
作者
Oie, KL
Durrant, G
Wolfinbarger, JB
Martin, D
Costello, F
Perryman, S
Hogan, D
Hadlow, WJ
Bloom, ME
机构
[1] NIAID, ROCKY MT LABS, PERSISTENT VIRAL DIS LAB, HAMILTON, MT 59840 USA
[2] NIAID, ROCKY MT LABS, MICROBIAL STRUCT & FUNCT LAB, HAMILTON, MT 59840 USA
[3] UTAH FUR BREEDERS AGR COOPERAT, SANDY, UT 84070 USA
关键词
D O I
10.1128/JVI.70.2.852-861.1996
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Aleutian mink disease parvovirus (ADV) DNA was identified by PCR in samples from mink and raccoons on commercial ranches during an outbreak of Aleutian disease (AD). Comparison of DNA sequences of the hypervariable portion of VP2, the major capsid protein of ADV, indicated that both mink and raccoons were infected by a new isolate of ADV, designated ADV-TR. Because the capsid proteins of other parvoviruses play a prominent role in the determination of viral pathogenicity and host range, we decided to examine the relationship between the capsid protein sequences and pathogenicity of ADV. Comparison of the ADV-TR hypervariable region sequence with sequences of other isolates of ADV revealed that ADV-TR was 94 to 100% related to the nonpathogenic type 1 ADV-G at both the DNA and amino acid levels but less than 90% related to other pathogenic ADVs like the type 2 ADV-Utah, the type 3 ADV-ZK8, or ADV-Pullman. This finding indicated that a virus with a type 1 hypervariable region could be pathogenic. To perform a more comprehensive analysis, the complete VP2 sequence of ADV-TR was obtained and compared with that of the 647-amino-acid VP2 of ADV-G and the corresponding VP2 sequences of the pathogenic ADV-Utah, ADV-Pullman, and ADV-ZK8, Although the hypervariable region amino acid sequence of ADV-TR was identical to that of ADV-G, there were 12 amino acid differences between ADV-G and ADV-TR. Each of these differences was at a position where other pathogenic isolates also differed from ADV-G. Thus, although ADV-TR had the hypervariable sequence of the nonpathogenic type 1 ADV-G, the remainder of the VP2 sequence resembled sequences of other pathogenic ADVs. Under experimental conditions, ADV-TR and ADV-Utah were highly pathogenic and induced typical AD in trios of both Aleutian and non-Aleutian mink, whereas ADV-Pullman was pathogenic only for Aleutian mink and ADV-G was noninfectious. Trios of raccoons experimentally inoculated with ADV-TR and ADV-Utah all became infected with ADV, but only a single ADV-Pullman-inoculated raccoon showed evidence of infection. Furthermore, none of the ADV isolates induced pathological findings of AD in raccoons. Finally, when a preparation of ADV-TR prepared from infected raccoon lymph nodes was inoculated into mink and raccoons, typical AD was induced in Aleutian and non-Aleutian mink, but raccoons failed to show serological or pathological evidence of infection. These results indicated that raccoons can become infected with ADV and may have a role in the transmission of virus to mink but that raccoon-to-raccoon transmission of ADV is unlikely.
引用
收藏
页码:852 / 861
页数:10
相关论文
共 74 条
[1]   STRUCTURE DETERMINATION OF FELINE PANLEUKOPENIA VIRUS EMPTY PARTICLES [J].
AGBANDJE, M ;
MCKENNA, R ;
ROSSMANN, MG ;
STRASSHEIM, ML ;
PARRISH, CR .
PROTEINS-STRUCTURE FUNCTION AND GENETICS, 1993, 16 (02) :155-171
[2]  
ALEXANDERSEN S, 1990, APMIS, V98, P4
[3]   ACUTE INTERSTITIAL PNEUMONIA IN MINK KITS - EXPERIMENTAL REPRODUCTION OF THE DISEASE [J].
ALEXANDERSEN, S .
VETERINARY PATHOLOGY, 1986, 23 (05) :579-588
[4]   PASSIVE TRANSFER OF ANTIVIRAL ANTIBODIES RESTRICTS REPLICATION OF ALEUTIAN MINK DISEASE PARVOVIRUS INVIVO [J].
ALEXANDERSEN, S ;
LARSEN, S ;
COHN, A ;
UTTENTHAL, A ;
RACE, RE ;
AASTED, B ;
HANSEN, M ;
BLOOM, ME .
JOURNAL OF VIROLOGY, 1989, 63 (01) :9-17
[5]  
ALEXANDERSEN S, 1985, ACTA PATH MICRO IM B, V93, P195
[6]   INSITU MOLECULAR HYBRIDIZATION FOR DETECTION OF ALEUTIAN MINK DISEASE PARVOVIRUS DNA BY USING STRAND-SPECIFIC PROBES - IDENTIFICATION OF TARGET-CELLS FOR VIRAL REPLICATION IN CELL-CULTURES AND IN MINK KITS WITH VIRUS-INDUCED INTERSTITIAL PNEUMONIA [J].
ALEXANDERSEN, S ;
BLOOM, ME ;
WOLFINBARGER, J ;
RACE, RE .
JOURNAL OF VIROLOGY, 1987, 61 (08) :2407-2419
[7]   ACUTE INTERSTITIAL PNEUMONIA IN MINK KITS INOCULATED WITH DEFINED ISOLATES OF ALEUTIAN MINK DISEASE PARVOVIRUS [J].
ALEXANDERSEN, S ;
LARSEN, S ;
AASTED, B ;
UTTENTHAL, A ;
BLOOM, ME ;
HANSEN, M .
VETERINARY PATHOLOGY, 1994, 31 (02) :216-228
[8]   DETAILED TRANSCRIPTION MAP OF ALEUTIAN MINK DISEASE PARVOVIRUS [J].
ALEXANDERSEN, S ;
BLOOM, ME ;
PERRYMAN, S .
JOURNAL OF VIROLOGY, 1988, 62 (10) :3684-3694
[9]   PATHOGENESIS OF ALEUTIAN MINK DISEASE PARVOVIRUS INFECTION - EFFECTS OF SUPPRESSION OF ANTIBODY-RESPONSE ON VIRAL MESSENGER-RNA LEVELS AND ON DEVELOPMENT OF ACUTE DISEASE [J].
ALEXANDERSEN, S ;
STORGAARD, T ;
KAMSTRUP, N ;
AASTED, B ;
PORTER, DD .
JOURNAL OF VIROLOGY, 1994, 68 (02) :738-749
[10]   EVIDENCE OF RESTRICTED VIRAL REPLICATION IN ADULT MINK INFECTED WITH ALEUTIAN DISEASE OF MINK PARVOVIRUS [J].
ALEXANDERSEN, S ;
BLOOM, ME ;
WOLFINBARGER, J .
JOURNAL OF VIROLOGY, 1988, 62 (05) :1495-1507