AVIAN ERYTHROBLASTOSIS VIRUS - TRANSFORMATION-SPECIFIC SEQUENCES FORM A CONTIGUOUS SEGMENT OF 3.25-KB LOCATED IN THE MIDDLE OF THE 6-KB GENOME

被引:68
作者
LAI, MMC [1 ]
HU, SSF [1 ]
VOGT, PK [1 ]
机构
[1] UNIV SO CALIF, SCH MED, DEPT MICROBIOL, LOS ANGELES, CA 90033 USA
关键词
D O I
10.1016/0042-6822(79)90347-7
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Several foci of chicken embryo fibroblasts transformed by avian erythroblastosis virus (AEV) strain ES-4 were found to produce virus progeny containing the RNA of the replication-defective AEV in excess over the RNA of the helper virus. The size of AEV RNA was determined by methylmercury-agarose gel electrophoresis and electron microscopy to be 28 S or 6 kb. About 40 to 45% of this RNA is homologous by RNA-DNA hybridization to the RNA of other chicken leukosis and sarcoma viruses; the rest of the genome is AEV specific. These AEV specific sequences, which presumably contain the genetic information responsible for transformation form a contiguous stretch of 3.25 kb, located by heteroduplex mapping in the center of the 6 kb genome between two segments of 1.06 kb at the 3′ end and 1.64 kb at the 5′ end which are homologous to the genome of avian sarcoma virus. From the length of the region showing homology between AEV and avian sarcoma virus at the 5′ end of the genome and from the known sequence composition of the AEV-specific 75K protein (Hayman et al., 1979), it can be deduced that the initiation point for the N terminus of the gag protein p19 is located about 1.0 kb from the 5′ end of the genome in avian oncoviruses. Nonproducing AEV-transformed chicken embryo fibroblasts were also isolated. Infectious AEV could be rescued from these cells only with chicken leukosis viruses; unrelated avian retroviruses were ineffective, probably because AEV requires complementation in the gag and pol genes, in addition to env. © 1979.
引用
收藏
页码:366 / 377
页数:12
相关论文
共 43 条
[1]   METHYLMERCURY AS A REVERSIBLE DENATURING AGENT FOR AGAROSE-GEL ELECTROPHORESIS [J].
BAILEY, JM ;
DAVIDSON, N .
ANALYTICAL BIOCHEMISTRY, 1976, 70 (01) :75-85
[2]   MAPPING OF POLY(A) SEQUENCES IN ELECTRON-MICROSCOPE REVEALS UNUSUAL STRUCTURE OF TYPE-C ONCORNAVIRUS RNA MOLECULES [J].
BENDER, W ;
DAVIDSON, N .
CELL, 1976, 7 (04) :595-607
[3]   DEFECTIVENESS OF AVIAN MYELOCYTOMATOSIS VIRUS MC29 - ISOLATION OF LONG-TERM NONPRODUCER CULTURES AND ANALYSIS OF VIRUS-SPECIFIC POLYPEPTIDE-SYNTHESIS [J].
BISTER, K ;
HAYMAN, MJ ;
VOGT, PK .
VIROLOGY, 1977, 82 (02) :431-448
[4]   RATES OF FORMATION AND THERMAL STABILITIES OF RNA-DNA AND DNA-DNA DUPLEXES AT HIGH-CONCENTRATIONS OF FORMAMIDE [J].
CASEY, J ;
DAVIDSON, N .
NUCLEIC ACIDS RESEARCH, 1977, 4 (05) :1539-1552
[5]   NUCLEOTIDE-SEQUENCE RELATIONSHIPS BETWEEN GENOMES OF AN ENDOGENOUS AND AN EXOGENOUS AVIAN TUMOR-VIRUS [J].
COFFIN, JM ;
CHAMPION, M ;
CHABOT, F .
JOURNAL OF VIROLOGY, 1978, 28 (03) :972-991
[6]   INVITRO, THE MAJOR RIBOSOME BINDING-SITE ON ROUS-SARCOMA VIRUS-RNA DOES NOT CONTAIN THE NUCLEOTIDE-SEQUENCE CODING FOR THE N-TERMINAL AMINO-ACIDS OF THE GAG GENE PRODUCT [J].
DARLIX, JL ;
SPAHR, PF ;
BROMLEY, PA ;
JATON, JC .
JOURNAL OF VIROLOGY, 1979, 29 (02) :597-611
[7]   GEL-ELECTROPHORESIS OF AVIAN LEUKOSIS AND SARCOMA VIRAL-RNA IN FORMAMIDE - COMPARISON WITH OTHER VIRAL AND CELLULAR RNA SPECIES [J].
DUESBERG, PH ;
VOGT, PK .
JOURNAL OF VIROLOGY, 1973, 12 (03) :594-599
[9]   CHARACTERISTICS OF 2 NEW AVIAN TUMOR VIRUS SUBGROUPS [J].
DUFF, RG ;
VOGT, PK .
VIROLOGY, 1969, 39 (01) :18-&
[10]  
ENGELBRETH-HOLM J., 1932, ADA PATH ET MICROBIOL SCAND, V9, P293