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La ricerca find articoli where soggetti phrase all words 'RESTRICTION-MODIFICATION SYSTEM' sort by level,fasc_key/DESCEND, pagina_ini_num/ASCEND ha restituito 93 riferimenti
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    1. Highlander, SK
      Molecular genetic analysis of virulence in Mannheimia (Pasteurella) haemolytica

      FRONTIERS IN BIOSCIENCE
    2. Kita, K; Tsuda, J; Nishigaki, R
      Characterization and overproduction of EcoO109I methyltransferase

      BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY
    3. Hegna, IK; Bratland, H; Kolsto, AB
      BceS1, a new addition to the type III restriction and modification family

      FEMS MICROBIOLOGY LETTERS
    4. Madsen, A; Josephsen, J
      The LlaGI restriction and modification system of Lactococcus lactis W10 consists of only one single polypeptide

      FEMS MICROBIOLOGY LETTERS
    5. Furmanek, B; Gromek, K; Sektas, M; Kaczorowski, T
      Isolation and characterization of type IIS restriction endonuclease from Neisseria cuniculi ATCC 14688

      FEMS MICROBIOLOGY LETTERS
    6. Matveyev, AV; Young, KT; Meng, A; Elhai, J
      DNA methyltransferases of the cyanobacterium Anabaena PCC 7120

      NUCLEIC ACIDS RESEARCH
    7. Vanamee, ES; Santagata, S; Aggarwal, AK
      FokI requires two specific DNA sites for cleavage

      JOURNAL OF MOLECULAR BIOLOGY
    8. Vitkute, J; Stankevicius, K; Tamulaitiene, G; Maneliene, Z; Timinskas, A; Berg, DE; Janulaitis, A
      Specificities of eleven different DNA methyltransferases of Helicobacter pylori strain 26695

      JOURNAL OF BACTERIOLOGY
    9. Seegers, JFML; van Sinderen, D; Fitzgerald, GF
      Molecular characterization of the lactococcal plasmid pCIS3: natural stacking of specificity subunits of a type I restriction/modification system in a single lactococcal strain

      MICROBIOLOGY-UK
    10. Zatkovic, B; Molnarova, V; Kmet, V; Javorsky, P; Pristas, P
      Diversity of DNA sequences among restriction endonucleases producing Selenomonas ruminantium isolates detected by enterobacteriial repetitive intergenic consensus based polymerase chain reaction (ERIC-PCR)

      ANAEROBE
    11. Styriak, I; Pristas, P; Javorsky, P
      Lack of GATC sites in the genome of Streptococcus bovis bacteriophage F4

      RESEARCH IN MICROBIOLOGY
    12. Vasquez, CC; Saavedra, CP; Pichuantes, SE
      Nucleotide sequence of the gene encoding the BstLVI DNA methyltransferase:Comparison with other amino-DNA methyltransferases

      CURRENT MICROBIOLOGY
    13. Friedrich, T; Fatemi, M; Gowhar, H; Leismann, O; Jeltsch, A
      Specificity of DNA binding and methylation by the M.FokI DNA methyltransferase

      BIOCHIMICA ET BIOPHYSICA ACTA-PROTEIN STRUCTURE AND MOLECULAR ENZYMOLOGY
    14. Madsen, A; Westphal, C; Josephsen, J
      Characterization of a novel plasmid-encoded HsdS subunit, S.LlaW12I, from Lactococcus lactis W12

      PLASMID
    15. Bujnicki, JM
      Homology modelling of the DNA 5mC methyltransferase M.BssHII. Is permutation of functional subdomains common to all subfamilies of DNA methyltransferases?

      INTERNATIONAL JOURNAL OF BIOLOGICAL MACROMOLECULES
    16. Ffrench-Constant, RH; Waterfield, N; Burland, V; Perna, NT; Daborn, PJ; Bowen, D; Blattner, FR
      A genomic sample sequence of the entomopathogenic bacterium Photorhabdus luminescens W14: Potential implications for virulence

      APPLIED AND ENVIRONMENTAL MICROBIOLOGY
    17. Tsutakawa, SE; Morikawa, K
      New recognition mode for a TG mismatch: The atomic structure of a very short patch repair endonuclease-DNA complex

      COLD SPRING HARBOR SYMPOSIA ON QUANTITATIVE BIOLOGY
    18. Belavin, PA; Netesova, NA; Gutorov, VV; Golikova, LN; Abdurashitov, MA; Gonchar, DA; Degtyarev, SK
      Multiplicity of site-specific DNA methyltransferases of the BstF5I restriction-modification system

      MOLECULAR BIOLOGY
    19. Abdurashitov, MA; Netesova, NA; Golikova, LN; Gutorov, VV; Belavin, PA; Degtyarev, SK
      The second methyltransferase of the BstF5I restriction-modification systemis homologous to the C-terminal domains of FokI and StsI methylases

      MOLECULAR BIOLOGY
    20. Watson, MA; Gowers, DM; Halford, SE
      Alternative geometries of DNA looping: an analysis using the SfiI endonuclease

      JOURNAL OF MOLECULAR BIOLOGY
    21. Tsutakawa, SE; Muto, T; Kawate, T; Jingami, H; Kunishima, N; Ariyoshi, M; Kohda, D; Nakagawa, M; Morikawa, K
      Crystallographic and functional studies of very short patch repair endonuclease

      MOLECULAR CELL
    22. Molnarova, V; Pristas, P; Javorsky, P
      Prevalence of CTGCAG recognizing restriction and modification systems in ruminal selenomonades

      ANAEROBE
    23. Danilevich, VN; Livshits, VA
      Plasmid carrying the temperature-sensitive mutation in the DNA-methylase gene of the PstI system: Effect on host cells at nonpermissive temperature

      RUSSIAN JOURNAL OF GENETICS
    24. Radlinska, M; Bujnicki, JM; Piekarowicz, A
      Structural characterization of two tandemly arranged DNA methyltransferasegenes from Neisseria gonorrhoeae MS11: N4-cytosine specific M.NgoMXV and nonfunctional 5-cytosine-type M.NgoMorf2P

      PROTEINS-STRUCTURE FUNCTION AND GENETICS
    25. Metcalf, WW
      Genetic analysis in the domain Archaea

      METHODS MICROBIOLOGY, VOL 29
    26. Rice, MR; Koons, MD; Blumenthal, RM
      Substrate recognition by the Pvull endonuclease: binding and cleavage of CAG(5m)CTG sites

      NUCLEIC ACIDS RESEARCH
    27. Bujnicki, JM; Radlinska, M
      Molecular evolution of DNA-(cytosine-N4) methyltransferases: evidence for their polyphyletic origin

      NUCLEIC ACIDS RESEARCH
    28. Gomez, P; Ribas-Aparicio, RM; Pelaez, AI; Rodicio, MR
      Characterization of IS1389, a new member of the IS3 family of insertion sequences isolated from Xanthomonas campestris pv. amaranthicola

      ARCHIVES OF MICROBIOLOGY
    29. Josephsen, J; Petersen, A; Neve, H; Nielsen, EW
      Development of lytic Lactococcus lactis bacteriophages in a Cheddar cheeseplant

      INTERNATIONAL JOURNAL OF FOOD MICROBIOLOGY
    30. Jeltsch, A
      Circular permutations in the molecular evolution of DNA methyltransferases

      JOURNAL OF MOLECULAR EVOLUTION
    31. Hurd, PJ; Whitmarsh, AJ; Baldwin, GS; Kelly, SM; Waltho, JP; Price, NC; Connolly, BA; Hornby, DP
      Mechanism-based inhibition of C5-cytosine DNA methyltransferases by 2-H pyrimidinone

      JOURNAL OF MOLECULAR BIOLOGY
    32. Jeltsch, A; Christ, F; Fatemi, M; Roth, M
      On the substrate specificity of DNA methyltransferases - Adenine-N-6 DNA methyltransferases also modify cytosine residues at position N-4

      JOURNAL OF BIOLOGICAL CHEMISTRY
    33. FRIEDRICH T; ROTH M; HELMKRUSE S; JELTSCH A
      FUNCTIONAL MAPPING OF THE ECORV DNA METHYLTRANSFERASE BY RANDOM MUTAGENESIS AND SCREENING FOR CATALYTICALLY INACTIVE MUTANTS

      Biological chemistry
    34. DEGTYAREV SK; NETESOVA NA; CHIZHIKOV VE; ABDURASHITOV MA
      CLONING AND CHARACTERIZATION OF THE GENE ENCODING M-CENTER-DOT-FAUI DNA METHYLTRANSFERASE

      Biological chemistry
    35. MERKIENE E; VILKAITIS G; KLIMASAUSKAS S
      A PAIR OF SINGLE-STRAND AND DOUBLE-STRAND DNA CYTOSINE N4 METHYLTRANSFERASES FROM BACILLUS-CENTROSPORUS

      Biological chemistry
    36. STEIN DC; GUNN JS; PIEKAROWICZ A
      SEQUENCE SIMILARITIES BETWEEN THE GENES ENCODING THE S.NGOI AND HAEIIRESTRICTION MODIFICATION SYSTEMS/

      Biological chemistry
    37. Radlinska, M; Piekarowicz, A
      Cloning and characterization of the gene encoding a new DNA methyltransferase from Neisseria gonorrhoeae

      BIOLOGICAL CHEMISTRY
    38. SAAVEDRA C; GONZALEZ E; VASQUEZ C
      STUDIES ON THE HETEROLOGOUS EXPRESSION OF BSTVI RESTRICTION-ENDONUCLEASE IN ESCHERICHIA-COLI

      Biochemistry and molecular biology international
    39. Nielsen, EW
      Long term use of a cheddar starter and development of phages with homologyto its bacteria

      INTERNATIONAL DAIRY JOURNAL
    40. MOSCOSO H; SAAVEDRA C; LOYOLA C; PICHUANTES S; VASQUEZ C
      BIOCHEMICAL-CHARACTERIZATION OF TELLURITE-REDUCING ACTIVITIES OF BACILLUS-STEAROTHERMOPHILUS-V

      Research in microbiology (Paris)
    41. Kaczorowski, T; Szybalski, W
      Genomic DNA sequencing by SPEL-6 primer walking using hexamer ligation

      GENE
    42. DROTSCHMANN K; ARONSHTAM A; FRITZ HJ; MARINUS MG
      THE ESCHERICHIA-COLI MUTL PROTEIN STIMULATES BINDING OF VSR AND MUTS TO HETERODUPLEX DNA

      Nucleic acids research
    43. Schulze, C; Jeltsch, A; Franke, I; Urbanke, C; Pingoud, A
      Crosslinking the EcoRV restriction endonuclease across the DNA-binding site reveals transient intermediates and conformational changes of the enzyme during DNA binding and catalytic turnover

      EMBO JOURNAL
    44. ZAKHAROVA MV; PERTZEV AV; KRAVETZ AN; BELETSKAYA IV; SHLYAPNIKOV MG; SOLONIN AS
      COMPLETE NUCLEOTIDE-SEQUENCE OF THE HSD PLASMID PECO29 AND IDENTIFICATION OF ITS FUNCTIONAL REGIONS

      Biochimica et biophysica acta, N. Gene structure and expression
    45. MADSEN A; JOSEPHSEN J
      CLONING AND CHARACTERIZATION OF THE LACTOCOCCAL PLASMID-ENCODED TYPE-II RESTRICTION MODIFICATION SYSTEM, LLADII/

      Applied and environmental microbiology
    46. ZHANG YP; NELSON M; NIETFELDT J; XIA YN; BURBANK D; ROPP S; VANETTEN JL
      CHLORELLA VIRUS NY-2A ENCODES AT LEAST 12 DNA ENDONUCLEASE METHYLTRANSFERASE GENES/

      Virology
    47. LANIO T; JELTSCH A; PINGOUD A
      TOWARDS THE DESIGN OF RARE CUTTING RESTRICTION ENDONUCLEASES - USING DIRECTED EVOLUTION TO GENERATE VARIANTS OF ECORV DIFFERING IN THEIR SUBSTRATE-SPECIFICITY BY 2 ORDERS OF MAGNITUDE

      Journal of Molecular Biology
    48. JELTSCH A; FRIEDRICH T; ROTH M
      KINETICS OF METHYLATION AND BINDING OF DNA BY THE ECORV ADENINE-N-6 METHYLTRANSFERASE

      Journal of Molecular Biology
    49. LEISMANN O; ROTH M; FRIEDRICH T; WENDE W; JELTSCH A
      THE FLAVOBACTERIUM-OKEANOKOITES ADENINE-N-6-SPECIFIC DNA-METHYLTRANSFERASE M.FOKI IS A TANDEM ENZYME OF 2 INDEPENDENT DOMAINS WITH VERY DIFFERENT KINETIC-PROPERTIES

      European journal of biochemistry
    50. MIYAHARA M; ISHIWATA N; YOSHIDA Y
      STYD4I RESTRICTION-MODIFICATION SYSTEM OF SALMONELLA-TYPHI D4 - CLONING AND SEQUENCE-ANALYSIS

      Biological & pharmaceutical bulletin
    51. SCHAFER A; TAUCH A; DROSTE N; PUHLER A; KALINOWSKI J
      THE CORYNEBACTERIUM-GLUTAMICUM CGLIM GENE ENCODING A 5-CYTOSINE METHYLTRANSFERASE ENZYME CONFERS A SPECIFIC DNA METHYLATION PATTERN IN AN MCRBC-DEFICIENT ESCHERICHIA-COLI STRAIN

      Gene
    52. CAO WG; LU J; BARANY F
      NUCLEOTIDE-SEQUENCES AND GENE ORGANIZATION OF TAQI ENDONUCLEASE ISOSCHIZOMERS FROM THERMUS SP. SM32 AND THERMUS-FILIFORMIS TOK6A1

      Gene
    53. RINA M; CAUFRIER F; MARKAKI M; MAVROMATIS K; KOKKINIDIS M; BOURIOTIS V
      CLONING AND CHARACTERIZATION OF THE GENE ENCODING PSPPI METHYLTRANSFERASE FROM THE ANTARCTIC PSYCHROTROPH PSYCHROBACTER SP. STRAIN TA137 - PREDICTED INTERACTIONS WITH DNA AND ORGANIZATION OF THE VARIABLE REGION

      Gene
    54. DEGTYAREV SK; NETESOVA NA; ABDURASHITOV MA; SHEVCHENKO AV
      PRIMARY STRUCTURE AND STRAND SPECIFICITY OF BSTF5I-1 DNA METHYLTRANSFERASE WHICH RECOGNIZES 5'-GGATG-3'

      Gene
    55. DUBEY AK; BHATTACHARYA SK
      ANGLE AND LOCUS OF THE BEND INDUCED BY THE MSPI DNA METHYLTRANSFERASEIN A SEQUENCE-SPECIFIC COMPLEX WITH DNA

      Nucleic acids research
    56. GOMEZ P; RIBASAPARICIO RM; PELAEZ AI; GOMEZ A; RODICIO MR
      ISOLATION AND NUCLEOTIDE-SEQUENCE OF THE GENE ENCODING THE XAMI DNA METHYLTRANSFERASE OF XANTHOMONAS-CAMPESTRIS PV AMARANTHICOLA

      Biochimica et biophysica acta, N. Gene structure and expression
    57. MASTER SS; BLUMENTHAL RM
      A GENETIC AND FUNCTIONAL-ANALYSIS OF THE UNUSUALLY LARGE VARIABLE REGION IN THE M-CENTER-DOT-ALUI DNA-(CYTOSINE C5)-METHYLTRANSFERASE

      MGG. Molecular & general genetics
    58. ROCHEPEAU P; SELINGER LB; HYNES MF
      TRANSPOSON-LIKE STRUCTURE OF A NEW PLASMID-ENCODED RESTRICTION-MODIFICATION SYSTEM IN RHIZOBIUM-LEGUMINOSARUM VF39SM

      MGG. Molecular & general genetics
    59. XU Q; PEEK RM; MILLER GG; BLASER MJ
      THE HELICOBACTER-PYLORI GENOME IS MODIFIED AT CATG BY THE PRODUCT OF HPYIM

      Journal of bacteriology
    60. PINGOUD A; JELTSCH A
      RECOGNITION AND CLEAVAGE OF DNA BY TYPE-II RESTRICTION ENDONUCLEASES

      European journal of biochemistry
    61. MATVIENKO NN; ZHELEZNAYA LA; ZELINSKAYA NV; MATVIENKO NI
      SITE-SPECIFIC DNA-METHYLASE M-CENTER-DOT-BSPST5I METHYLATES ONLY ONE STRAND OF THE RECOGNIZED SITE

      Biochemistry
    62. AHMAD I; RAO DN
      CHEMISTRY AND BIOLOGY OF DNA METHYLTRANSFERASES

      Critical reviews in biochemistry and molecular biology
    63. SUZUKI T; SUGIMOTO E; TAHARA Y; YAMADA Y
      CLONING AND NUCLEOTIDE-SEQUENCE OF APALI RESTRICTION-MODIFICATION SYSTEM FROM ACETOBACTER-PASTEURIANUS IFO-13753

      Bioscience, biotechnology, and biochemistry
    64. SUZUKI T; SUGIMOTO E; TAHARA Y; YAMADA Y
      CLONING AND NUCLEOTIDE-SEQUENCE OF THE AGEI METHYLASE GENE FROM AGROBACTERIUM-GELATINOVORUM IAM-12617, A MARINE BACTERIUM

      Bioscience, biotechnology, and biochemistry
    65. STRIEBEL HM; KESSLER C
      NOVEL SPECIFIC ENDONUCLEASE ACTIVITY RECOGNIZING A 10-BP SEQUENCE

      Gene
    66. LAIGRET F; GAURIVAUD P; BOVE JM
      THE UNIQUE ORGANIZATION OF THE RPOB REGION OF SPIROPLASMA-CITRI - A RESTRICTION AND MODIFICATION SYSTEM GENE IS ADJACENT TO RPOB

      Gene
    67. JELTSCH A; SOBOTTA T; PINGOUD A
      STRUCTURE PREDICTION OF THE ECORV DNA METHYLTRANSFERASE BASED ON MUTANT PROFILING, SECONDARY STRUCTURE-ANALYSIS, COMPARISON WITH KNOWN STRUCTURES OF METHYLTRANSFERASES AND ISOLATION OF CATALYTICALLY INACTIVE SINGLE MUTANTS

      Protein engineering
    68. HORST JP; FRITZ HJ
      COUNTERACTING THE MUTAGENIC EFFECT OF HYDROLYTIC DEAMINATION OF DNA 5-METHYLCYTOSINE RESIDUES AT HIGH-TEMPERATURE - DNA MISMATCH N-GLYCOSYLASE MIG.MTH OF THE THERMOPHILIC ARCHAEON METHANOBACTERIUM-THERMOAUTOTROPHICUM THF

      EMBO journal
    69. JELTSCH A; WENZ C; STAHL F; PINGOUD A
      LINEAR DIFFUSION OF THE RESTRICTION-ENDONUCLEASE ECORV ON DNA IS ESSENTIAL FOR THE IN-VIVO FUNCTION OF THE ENZYME

      EMBO journal
    70. ALVAREZ MA; GOMEZ A; GOMEZ P; BROOKS JE; RODICIO MR
      COMPARATIVE-ANALYSIS OF EXPRESSION OF THE SAL-I RESTRICTION-MODIFICATION SYSTEM IN ESCHERICHIA-COLI AND STREPTOMYCES

      MGG. Molecular & general genetics
    71. AHMAD I; RAO DN
      FUNCTIONAL-ANALYSIS OF CONSERVED MOTIFS IN ECOP15I DNA METHYLTRANSFERASE

      Journal of Molecular Biology
    72. KIM SC; SKOWRON PM; SZYBALSKI W
      STRUCTURAL REQUIREMENTS FOR FOKI-DNA INTERACTION AND OLIGODEOXYRIBONUCLEOTIDE-INSTRUCTED CLEAVAGE

      Journal of Molecular Biology
    73. BANDARU B; GOPAL J; BHAGWAT AS
      OVERPRODUCTION OF DNA CYTOSINE METHYLTRANSFERASES CAUSES METHYLATION AND C-]T MUTATIONS AT NONCANONICAL SITES

      The Journal of biological chemistry
    74. GARVEY P; VANSINDEREN D; TWOMEY DP; HILL C; FITZGERALD GF
      MOLECULAR-GENETICS OF BACTERIOPHAGE AND NATURAL PHAGE DEFENSE SYSTEMSIN THE GENUS LACTOCOCCUS

      International dairy journal
    75. TIMINSKAS A; BUTKUS V; JANULAITIS A
      SEQUENCE MOTIFS CHARACTERISTIC FOR DNA [CYTOSINE-N4] AND DNA [ADENINE-N6] METHYLTRANSFERASES - CLASSIFICATION OF ALL DNA METHYLTRANSFERASES

      Gene
    76. ADAMS GM; BLUMENTHAL RM
      GENE PVUIIW - A POSSIBLE MODULATOR OF PVUII ENDONUCLEASE SUBUNIT ASSOCIATION

      Gene
    77. WILKINSON CRM; BARTLETT R; NURSE P; BIRD AP
      THE FISSION YEAST GENE PMT1(+) ENCODES A DNA METHYLTRANSFERASE HOMOLOG

      Nucleic acids research
    78. LEE KF; KAM KM; SHAW PC
      A BACTERIAL METHYLTRANSFERASE M.ECOHK31I REQUIRES 2 PROTEINS FOR IN-VITRO METHYLATION

      Nucleic acids research
    79. SANDERSON KE; HESSEL A; RUDD KE
      GENETIC-MAP OF SALMONELLA-TYPHIMURIUM, EDITION-VIII

      Microbiological reviews
    80. SABELNIKOV AG; GREENBERG B; LACKS SA
      AN EXTENDED -10-PROMOTER ALONE DIRECTS TRANSCRIPTION OF THE DPNII OPERON OF STREPTOCOCCUS-PNEUMONIAE

      Journal of Molecular Biology
    81. ROBERTS RJ
      AN AMAZING DISTORTION IN DNA INDUCED BY A METHYLTRANSFERASE (NOBEL LECTURE)

      Angewandte Chemie, International Edition in English
    82. NWANKWO DO; MORAN LS; SLATKO BE; WAITEREES PA; DORNER LF; BENNER JS; WILSON GG
      CLONING, ANALYSIS AND EXPRESSION OF THE HINDIII R-M-ENCODING GENES

      Gene
    83. SKOWRON P; KACZOROWSKI T; TUCHOLSKI J; PODHAJSKA AJ
      ATYPICAL DNA-BINDING PROPERTIES OF CLASS-IIS RESTRICTION ENDONUCLEASES - EVIDENCE FOR RECOGNITION OF THE COGNATE SEQUENCE BY A FOKI MONOMER(VOL 125, PG 1, 1993)

      Gene
    84. DORNER LF; SCHILDKRAUT I
      DIRECT SELECTION OF BINDING PROFICIENT CATALYTIC DEFICIENT VARIANTS OF BAMHI ENDONUCLEASE

      Nucleic acids research
    85. NOYERWEIDNER M; WALTER J; TERSCHUREN PA; CHAI SH; TRAUTNER TA
      M.PHI-3TII - A NEW MONOSPECIFIC DNA (CYTOSINE-C5) METHYLTRANSFERASE WITH PRONOUNCED AMINO-ACID-SEQUENCE SIMILARITY TO A FAMILY OF ADENINE-N6-DNA-METHYLTRANSFERASES

      Nucleic acids research
    86. NOYERWEIDNER M; WALTER J; TERSCHUREN PA; CHAI SH; TRAUTNER TA
      M.PHI-3TII - A NEW MONOSPECIFIC DNA (CYTOSINE-C5) METHYLTRANSFERASE WITH PRONOUNCED AMINO-ACID-SEQUENCE SIMILARITY TO A FAMILY OF ADENINE-N6-DNA-METHYLTRANSFERASES

      Nucleic acids research
    87. KUMAR S; CHENG XD; KLIMASAUSKAS S; MI S; POSFAI J; ROBERTS RJ; WILSON GG
      THE DNA (CYTOSINE-5) METHYLTRANSFERASES

      Nucleic acids research
    88. WILLCOCK DF; DRYDEN DTF; MURRAY NE
      A MUTATIONAL ANALYSIS OF THE 2 MOTIFS COMMON TO ADENINE METHYLTRANSFERASES

      EMBO journal
    89. ROBERTS RJ
      AN AMAZING DISTORTION IN DNA INDUCED BY A METHYLTRANSFERASE

      Bioscience reports
    90. CHOI SH; LEACH JE
      IDENTIFICATION OF THE XORII METHYLTRANSFERASE GENE AND A VSR HOMOLOG FROM XANTHOMONAS-ORYZAE PV ORYZAE

      MGG. Molecular & general genetics
    91. KINDER SA; BADGER JL; BRYANT GO; PEPE JC; MILLER VL
      CLONING OF THE YENI RESTRICTION-ENDONUCLEASE AND METHYLTRANSFERASE FROM YERSINIA-ENTEROCOLITICA SEROTYPE O8 AND CONSTRUCTION OF A TRANSFORMABLE R(-)M(+) MUTANT

      Gene
    92. GUYOT JB; GRASSI J; HAHN U; GUSCHLBAUER W
      THE ROLE OF THE PRESERVED SEQUENCES OF DAM METHYLASE

      Nucleic acids research
    93. WAUGH DS; SAUER RT
      SINGLE AMINO-ACID SUBSTITUTIONS UNCOUPLE THE DNA-BINDING AND STRAND SCISSION ACTIVITIES OF FOK-I ENDONUCLEASE

      Proceedings of the National Academy of Sciences of the United Statesof America


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Documento generato il 29/05/20 alle ore 08:03:45