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Deoxyribonuclease I generates single-stranded gaps in chromatin deoxyribonucleic acid.
Biochemistry. 1980 Jun 24;19(13):2977-92
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Preferential in vitro assembly of nucleosome cores on some AT-rich regions of SV40 DNA.
Nucleic Acids Res. 1979 Oct 10;7(3):705-13
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The appearance of DNase I hypersensitive sites at the 5' end of the late SV40 genes is correlated with the transcriptional switch.
Nucleic Acids Res. 1981 Nov 25;9(22):5949-64
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The extracellular nuclease from Alteromonas espejiana: an enzyme highly specific for nonduplex structure in nominally duplex DNA.
Gene Amplif Anal. 1981;2:169-203
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SV40 viral minichromosome: preferential exposure of the origin of replication as probed by restriction endonucleases.
Nucleic Acids Res. 1978 Oct;5(10):3469-77
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Selective extraction of polyoma DNA from infected mouse cell cultures.
J Mol Biol. 1967 Jun 14;26(2):365-9
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Chromatin structure and gene activity: the role of nonhistone chromosomal proteins.
CRC Crit Rev Biochem. 1982;13(1):1-86
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Absence of nucleosomes in a fraction of SV40 chromatin between the origin of replication and the region coding for the late leader RNA.
Cell. 1980 May;20(1):65-73
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Active chromatin.
Nature. 1982 May 27;297(5864):289-95
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Subunit structure of simian-virus-40 minichromosome.
Eur J Biochem. 1976 Nov 15;70(2):543-53
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Another potential artifact in the study of nucleosome phasing by chromatin digestion with micrococcal nuclease.
Cell. 1983 Apr;32(4):1205-15
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Histone H5 can increase the internucleosome spacing in dinucleosomes to nativelike values.
Biochemistry. 1983 Apr 12;22(8):1783-9
PMID: 6849886
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Nucleosomal DNA is digested to repeats of 10 bases by exonuclease III.
Cell. 1978 Feb;13(2):281-93
PMID: 627037
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Intracellular forms of simian virus 40 nucleoprotein complexes. I. Methods of isolation and characterization in CV-1 cells.
J Virol. 1979 Feb;29(2):612-23
PMID: 219250
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Chromatin structure: deduced from a minichromosome.
Science. 1975 Mar 28;187(4182):1202-3
PMID: 17754289
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Preferential association of newly synthesized histones with replicating SV40 DNA.
Cell. 1977 Dec;12(4):947-51
PMID: 202394
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Chromatin assembly. Relationship of chromatin structure to DNA sequence during simian virus 40 replication.
J Biol Chem. 1981 Aug 25;256(16):8821-8
PMID: 6267052
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Simian virus 40 tandem repeated sequences as an element of the early promoter.
Proc Natl Acad Sci U S A. 1981 Feb;78(2):943-7
PMID: 6262784
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Fine structure of the regulatory region of simian virus 40 minichromosomes revealed by DNAase I digestion.
J Mol Biol. 1982 Sep 15;160(2):133-46
PMID: 6294304
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Simian virus 40 encapsidation: characterization of early intermediates.
J Virol. 1982 Sep;43(3):830-9
PMID: 6292464
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Quantitation of transcribing native simian virus 40 minichromosomes extracted from CV1 cells late in infection.
J Virol. 1981 Apr;38(1):82-90
PMID: 6264116
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DNAase I-hypersensitive sites of chromatin.
Cell. 1981 Dec;27(3 Pt 2):413-5
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The binding site on SV40 DNA for a T antigen-related protein.
Cell. 1978 Jan;13(1):165-79
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Yeast centromere DNA is in a unique and highly ordered structure in chromosomes and small circular minichromosomes.
Cell. 1982 Jun;29(2):305-17
PMID: 6288253
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A sequence of the yeast 2 micron DNA plasmid chromosome near the origin of replication is exposed to restriction endonuclease digestion.
J Mol Biol. 1982 Sep 25;160(3):397-410
PMID: 6296393
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Nuclease-sensitive sites in the two major intracellular simian virus 40 nucleoproteins.
J Virol. 1983 Jun;46(3):1034-8
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Studies of simian virus 40 DNA. VII. A cleavage map of the SV40 genome.
J Mol Biol. 1973 Aug 5;78(2):363-76
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A dominant role for DNA secondary structure in forming hypersensitive structures in chromatin.
Cell. 1983 Apr;32(4):1191-203
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Structure and function of the promoter-enhancer region of polyoma and SV40.
Cold Spring Harb Symp Quant Biol. 1983;47 Pt 2:935-44
PMID: 6305593
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Mapping of SV40 DNA replication origin region binding sites for the SV40 T antigen by protection against exonuclease III digestion.
Cell. 1980 Jun;20(2):411-22
PMID: 6248243
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Formation of a nucleosome-free region in SV40 minichromosomes is dependent upon a restricted segment of DNA.
Virology. 1982 Jul 30;120(2):340-8
PMID: 6285607
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Origin of DNA replication in papovavirus chromatin is recognized by endogenous endonuclease.
Proc Natl Acad Sci U S A. 1978 Dec;75(12):5964-8
PMID: 216004
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Endonuclease-sensitive regions in SV40 chromatin from cells infected with duplicated mutants.
Virology. 1980 Jul 30;104(2):462-73
PMID: 6249038
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Higher order structure of simian virus 40 chromatin.
Science. 1978 Aug 4;201(4354):406-15
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Random location and absence of movement of the nucleosomes on SV 40 nucleoprotein complex isolated from infected cells.
Biochem Biophys Res Commun. 1976 Dec 6;73(3):548-54
PMID: 188418
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The isolation of simian virus 40 variants with specifically altered genomes.
Proc Natl Acad Sci U S A. 1974 Mar;71(3):942-6
PMID: 4362640
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Alternative interactions of the SV40 A protein with DNA.
Virology. 1981 Nov;115(1):75-87
PMID: 6270902
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Sites in simian virus 40 chromatin which are preferentially cleaved by endonucleases.
Cell. 1978 Dec;15(4):1511-8
PMID: 215331
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The regulation of yeast mating-type chromatin structure by SIR: an action at a distance affecting both transcription and transposition.
Cell. 1982 Sep;30(2):567-78
PMID: 6215985
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A nucleosome-free region in SV40 minichromosomes.
Nature. 1980 May 22;285(5762):263-5
PMID: 6246449
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Binding of a simian virus 40 T antigen-related protein to DNA.
J Mol Biol. 1981 Jan 25;145(3):471-88
PMID: 6267291
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A stretch of "late" SV40 viral DNA about 400 bp long which includes the origin of replication is specifically exposed in SV40 minichromosomes.
Cell. 1979 Feb;16(2):453-66
PMID: 222461