AVIAN RETROVIRUS PP32 DNA-BINDING PROTEIN .1. RECOGNITION OF SPECIFIC SEQUENCES ON RETROVIRUS DNA TERMINAL REPEATS

被引:52
作者
MISRA, TK
GRANDGENETT, DP
PARSONS, JT
机构
[1] UNIV VIRGINIA, SCH MED, DEPT MICROBIOL, CHARLOTTESVILLE, VA 22908 USA
[2] ST LOUIS UNIV, MED CTR, INST MOLEC VIROL, ST LOUIS, MO 63110 USA
关键词
D O I
10.1128/JVI.44.1.330-343.1982
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The avian retrovirus pp32 protein possesses a DNA-nicking activity which prefers supercoiled DNA as substrate. The binding of pp32 to avian retrovirus long terminal repeat (LTR) DNA present in both supercoiled and linear forms was studied. The cloned viral DNA was derived from unintegrated Schmidt-Ruppin A (SRA) DNA. A subclone of the viral DNA in pBR322 (termed pPvuII-DG) contains some src sequences, tandem copies of LTR sequences and partial gag sequences in the order src-U3 U5:U3 U5-gag. Binding of pp32 to supercoiled pPvuII-DG DNA followed by digestion of this complex with a multicut restriction enzyme (28 fragments total) permitted pp32 to preferentially retain on nitrocellulose filters 2 viral DNA fragments containing only LTR DNA sequences. pp32 Also preferentially retained 4 plasmid DNA fragments containing either potential promoters or Tn3 left-end inverted repeat sequences. Mapping of the pp32 binding sites on viral LTR DNA was accomplished by using the DNase I footprinting technique. The pp32 protein, but not the avian retrovirus .alpha..beta. DNA polymerase, is able to form a unique protein-DNA complex with selected regions of either SRA or Prague A LTR DNA. Partial DNase I digestion of a 275 base pair SRA DNA fragment complexed with pp32 gives upon electrophoresis in denaturing gels a unique ladder pattern, with regions of diminished DNase I susceptibility from 6 to 10 nucleotides in length, in comparison with control digests in the absence of protein. The binding of pp32 to this fragment also yields enhanced DNase I-susceptible sites that are spaced between the areas protected from DNase I digestion. The protected region of this unique complex was a stretch of 170 .+-. 10 nucleotides that encompasses the presumed viral promoter site in U3, which is adjacent to the src region, extends through U5, and proceeds past the joint into U3 for about 34 base pairs. No specific protection or DNase I enhancement by pp32 was observed in experiments with a 435-base pair SRA DNA fragment derived from a part of U3 and the adjacent src region or a 55-base pair DNA fragment derived from another part of U3. The DNA sequence of Prague DNA at the fused LTR differs from that of SRA DNA. The alteration in the sequence at the juncture of the LTR prevented pp32 from forming a stable complex in this region of the LTR. The results are relevant to 2 aspects of the interaction between pp32 and LTR DNA. First, the pp32 protein in the presence of selected viral DNA restriction fragments possibly forms a higher order oligomer analogous to Escherichia coli DNA gyrase-DNA complexes or eukaryotic nucleosome structures. Second, the specificity of the binding suggests a role for pp32 and the protected DNA sequences in the retrovirus life cycle. The preferred sequences to which pp32 binds include 2 adjacent 15-base pair inverted terminal repeats at the joint between U5 and U3 in SRA DNA. This region is involved in circularization of linear DNA and is perhaps the site that directs integration into cellular DNA.
引用
收藏
页码:330 / 343
页数:14
相关论文
共 40 条
[1]   TRANSPOSABLE ELEMENTS [J].
CALOS, MP ;
MILLER, JH .
CELL, 1980, 20 (03) :579-595
[2]   NUCLEOTIDE-SEQUENCES OF INTEGRATED MOLONEY SARCOMA PROVIRUS LONG TERMINAL REPEATS AND THEIR HOST AND VIRAL JUNCTIONS [J].
DHAR, R ;
MCCLEMENTS, WL ;
ENQUIST, LW ;
VANDEWOUDE, GF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1980, 77 (07) :3937-3941
[3]   DNAASE FOOTPRINTING - SIMPLE METHOD FOR DETECTION OF PROTEIN-DNA BINDING SPECIFICITY [J].
GALAS, DJ ;
SCHMITZ, A .
NUCLEIC ACIDS RESEARCH, 1978, 5 (09) :3157-3170
[4]   DETAILED MODEL OF REVERSE TRANSCRIPTION AND TESTS OF CRUCIAL ASPECTS [J].
GILBOA, E ;
MITRA, SW ;
GOFF, S ;
BALTIMORE, D .
CELL, 1979, 18 (01) :93-100
[5]   VIRUS-CODED DNA ENDONUCLEASE FROM AVIAN RETROVIRUS [J].
GOLOMB, M ;
GRANDGENETT, DP ;
MASON, W .
JOURNAL OF VIROLOGY, 1981, 38 (02) :548-555
[6]   PURIFICATION OF REVERSE-TRANSCRIPTASE FROM AVIAN RETROVIRUSES USING AFFINITY-CHROMATOGRAPHY ON HEPARIN-SEPHAROSE [J].
GOLOMB, M ;
VORA, AC ;
GRANDGENETT, DP .
JOURNAL OF VIROLOGICAL METHODS, 1980, 1 (03) :157-165
[7]  
GOLOMB M, 1979, J BIOL CHEM, V254, P1606
[8]   32,000-DALTON NUCLEIC ACID-BINDING PROTEIN FROM AVIAN RETRAVIRUS CORES POSSESSES DNA ENDONUCLEASE ACTIVITY [J].
GRANDGENETT, DP ;
VORA, AC ;
SCHIFF, RD .
VIROLOGY, 1978, 89 (01) :119-132
[9]   THE NATURE OF THE COMPLEXES FORMED BETWEEN THE INT PROTEIN AND DNA [J].
HAMILTON, D ;
YUAN, R ;
KIKUCHI, Y .
JOURNAL OF MOLECULAR BIOLOGY, 1981, 152 (01) :163-169
[10]   MOLECULAR-CLONING OF AVIAN-SARCOMA VIRUS CLOSED CIRCULAR DNA - STRUCTURAL AND BIOLOGICAL CHARACTERIZATION OF 3 RECOMBINANT CLONES [J].
HIGHFIELD, PE ;
RAFIELD, LF ;
GILMER, TM ;
PARSONS, JT .
JOURNAL OF VIROLOGY, 1980, 36 (01) :271-279