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ISOLATION AND CHARACTERIZATION OF NATURALLY OCCURRING HAIRPIN STRUCTURES IN SINGLE-STRANDED DNA OF COLIPHAGE M13.NIYOGI SK; MITRA S.1977; BIOCHEM. BIOPHYS. RES. COMMUNIC.; U.S.A.; DA. 1977; VOL. 79; NO 4; PP. 1037-1044; BIBL. 23 REF.Article

STRUCTURE OF NASCENT REPLICATIVE FORM DNA OF COLIPHAGE M13.SANTANU DASGUPTA; SANKAR MITRA.1978; PROC. NATION. ACAD. SCI. U.S.A.; U.S.A.; DA. 1978; VOL. 75; NO 1; PP. 153-157; BIBL. 35 REF.Article

Production of single-stranded plasmid DNAVIEIRA, J; MESSING, J.Methods in enzymology. 1987, Vol 153, pp 3-11, issn 0076-6879, DArticle

A CASCADE MECHANISM OF TRANSCRIPTION IN BACTERIOPHAGE M13DNA.EDENS L; KONINGS RNH; SCHOENMAKERS JGG et al.1978; VIROLOGY; U.S.A.; DA. 1978; VOL. 86; NO 2; PP. 354-367; BIBL. 1 P. 1/2Article

Repair of thymine guanine and uracil guanine mismatched base-pairs in bacteriophage M13mp18 DNA heteroduplexesSURESH SHENOY; EHRLICH, K. C; EHRLICH, M et al.Journal of molecular biology. 1987, Vol 197, Num 4, pp 617-626, issn 0022-2836Article

Improved oligonucleotide-directed mutagenesis using M13 vectorsCARTER, P.Methods in enzymology. 1987, Vol 154, pp 382-403, issn 0076-6879Article

ELECTRON MICROSCOPIC STUDIES OF BACTERIOPHAGE M13 DNA REPLICATION.ALLISON DP; GANESAN AT; OLSON AC et al.1977; J. VIROL.; U.S.A.; DA. 1977; VOL. 24; NO 2; PP. 673-684; BIBL. 36 REF.Article

1H NMR STUDIES OF THE BINDING OF BACTERIOPHAGE-M13-ENCODED GENE-5 PROTEIN TO OLIGO-(DEOXYADENYLIC ACID)S OF VARYING LENGTHALMA NCM; HARMSEN BJM; VAN BOOM JH et al.1982; EUR. J. BIOCHEM.; ISSN 0014-2956; DEU; DA. 1982; VOL. 122; NO 2; PP. 319-326; BIBL. 32 REF.Article

STUDIES OF ASYMMETRIC MEMBRANE ASSEMBLY.ZWIZINSKI C; WICKNER W.1977; BIOCHIM. BIOPHYS. ACTA; PAYS-BAS; DA. 1977; VOL. 471; NO 2; PP. 169-176; BIBL. 17 REF.Article

PROCOAT, THE PRECURSOR OF M13 COAT PROTEIN, INSERTS POST-TRANSLATIONALLY INTO THE MEMBRANE OF CELLS INFECTED BY WILD-TYPE VIRUSDATE T; WICKNER WT.1981; J. VIROL.; ISSN 0022-538X; USA; DA. 1981; VOL. 37; NO 3; PP. 1087-1089; BIBL. 15 REF.Article

EXPRESSION OF BACTERIOPHAGE M13 DNA IN VIVO. ISOLATION, IDENTIFICATION AND CHARACTERIZATION OF PHAGE-SPECIFIC MRNA SPECIESSMITS MA; SCHOENMAKERS JGG; KONINGS RNH et al.1980; EUR. J. BIOCHEM.; ISSN 0014-2956; DEU; DA. 1980; VOL. 112; NO 2; PP. 309-321; BIBL. 24 REF.Article

ROLE OF M13 GENE 1 PROTEIN IN FILAMENTOUS VIRUS ASSEMBLYSILVER P; WICKNER WT.1980; J. VIROL.; USA; DA. 1980; VOL. 35; NO 1; PP. 256-258; BIBL. 15 REF.Article

MOLECULAR BASIS OF THE AM8H1 LESION IN BACTERIOPHAGE M13BOEKE JD; MODEL P.1979; VIROLOGY; USA; DA. 1979; VOL. 96; NO 1; PP. 299-301; BIBL. 13 REF.Article

THE ROLE OF ESCHERICHIA COLI DNAG FUNCTION IN COLIPHAGE M13 DNA SYNTHESIS.SANTANU DASGUPTA; SANKAR MITRA.1976; EUROP. J. BIOCHEM.; GERM.; DA. 1976; VOL. 67; NO 1; PP. 47-51; BIBL. 21 REF.Article

CONSTRUCTION OF GAPPED CIRCULAR DNA FROM PHAGE M13 BY IN VITRO HYBRIDIZATIONCOURAGE TEBBE U; KEMPER B.1982; BIOCHIM. BIOPHYS. ACTA; ISSN 0006-3002; NLD; DA. 1982; VOL. 697; NO 1; PP. 1-5; BIBL. 12 REF.Article

REPLICATION OF BACTERIOPHAGE M13. XV: LOCATION OF THE SPECIFIC NICK IN M13 REPLICATIVE FORM II ACCUMULATED IN ESCHERICHIA COLI POLAEXLNOMURA N; RAY DS.1980; J. VIROL.; USA; DA. 1980; VOL. 34; NO 1; PP. 162-167; BIBL. 24 REF.Article

A VERSATILE PRIMER FOR DNA SEQUENCING IN THE M13MP2 CLONING SYSTEMHEIDECKER G; MESSING J; GRONENBORN B et al.1980; GENE; NLD; DA. 1980; VOL. 10; NO 1; PP. 69-73; BIBL. 10 REF.Article

CLONING OF A FUNCTIONAL REPLICATION ORIGIN OF PHAGE G4 INTO THE GENOME OF PHAGE M13KAGUNI J; RAY DS.1979; J. MOLEC. BIOL.; GBR; DA. 1979; VOL. 135; NO 4; PP. 863-878; BIBL. 2 P.Article

NUCLEOTIDE SEQUENCE OF THE GENES III, VI AND I OF BACTERIOPHAGE M13VAN WEZENBEEK P; SCHOENMAKERS JGG.1979; NUCLEIC ACIDS RES.; GBR; DA. 1979; VOL. 6; NO 8; PP. 2799-2818; BIBL. 40 REF.Article

A PAST AND SIMPLE METHOD FOR SEQUENCING DNA CLONED IN THE SINGLE-STRANDED BACTERIOPHAGE M13SCHREIER PH; CORTESE R.1979; J. MOLEC. BIOL.; GBR; DA. 1979; VOL. 129; NO 1; PP. 169-172; BIBL. 10 REF.Article

THE ROLE OF DNA POLYMERASE 1-ASSOCIATED 5'-EXONUCLEASE IN REPLICATION OF COLIPHAGE M13 REPLICATIVE-FORM DNA.SANTANU DASGUPTA; SANKAR MITRA.1977; BIOCHEM. BIOPHYS. RES. COMMUNIC.; U.S.A.; DA. 1977; VOL. 78; NO 3; PP. 1108-1113; BIBL. 12 REF.Article

THE ROLE OF ESCHERICHIA COLI DNA A GENE AND ITS INTEGRATIVE SUPPRESSION IN M13 COLIPHAGE DNA SYNTHESIS.SANKAR MITRA; STALLIONS DR.1976; EUROP. J. BIOCHEM.; GERM.; DA. 1976; VOL. 67; NO 1; PP. 37-45; BIBL. 25 REF.Article

Binding of IKe gene 5 protein to polynucleotides. Fluorescence binding experiments of IKe gene 5 protein and mutual cooperativity of IKe and M13 gene 5 proteinsDE JONG, E. A. M; HARMSEN, B. J. M; KONINGS, R. N. H et al.Biochemistry (Easton). 1987, Vol 26, Num 7, pp 2039-2046, issn 0006-2960Article

OLIGONUCLEOTIDE-DIRECTED MUTAGENESIS OF GENE IX OF BACTERIOPHAGE M13SIMONS GFM; VEENEMAN GH; KONINGS RNH et al.1982; NUCLEIC ACIDS RES.; ISSN 0305-1048; GBR; DA. 1982; VOL. 10; NO 3; PP. 821-832; BIBL. 31 REF.Article

REPLICATION OF M13 ORIC BACTERIOPHAGES IN AN ESCHERICHIA COLI REP MUTANT IS DEPENDENT ON THE CLONED ESCHERICHIA COLI REPLICATION ORIGINKAGUNI LS; KAGUNI JM; RAY DS et al.1981; J. BACTERIOL.; ISSN 0021-9193; USA; DA. 1981; VOL. 145; NO 2; PP. 974-979; BIBL. 36 REF.Article

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