scholarly article | Q13442814 |
P356 | DOI | 10.1093/NAR/20.2.179 |
P953 | full work available at URL | http://academic.oup.com/nar/article-pdf/20/2/179/7074561/20-2-179.pdf |
https://europepmc.org/articles/PMC310352 | ||
https://europepmc.org/articles/PMC310352?pdf=render | ||
P932 | PMC publication ID | 310352 |
P698 | PubMed publication ID | 1741244 |
P5875 | ResearchGate publication ID | 21415033 |
P2093 | author name string | I. Taylor | |
J. Patel | |||
K. Firman | |||
G. Kneale | |||
P2860 | cites work | A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding | Q25938984 |
DNA recognition by a new family of type I restriction enzymes: a unique relationship between two different DNA specificities | Q33930317 | ||
Evidence for a repeating domain in type I restriction enzymes | Q33931332 | ||
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Increased protein flexibility leads to promiscuous protein-DNA interactions in type IC restriction-modification systems | Q35923842 | ||
EcoA: the first member of a new family of type I restriction modification systems. Gene organization and enzymatic activities | Q36424348 | ||
EcoR124 and EcoR124/3: the first members of a new family of type I restriction and modification systems | Q36427335 | ||
Genetic recombination can generate altered restriction specificity | Q37570816 | ||
Time-resolved fluorescence of bacteriophage Pf1 DNA-binding protein. Determination of oligonucleotide and polynucleotide binding parameters | Q38352476 | ||
Anilinonaphthalene sulfonate as a probe of membrane composition and function. | Q40244445 | ||
Binding of recrystallized and chromatographically purified 8-anilino-1-naphthalenesulfonate to Escherichia coli lac repressor | Q40964110 | ||
Basis for changes in DNA recognition by the EcoR124 and EcoR124/3 type I DNA restriction and modification enzymes | Q41994610 | ||
Conservation of complex DNA recognition domains between families of restriction enzymes | Q44918995 | ||
Reassortment of DNA recognition domains and the evolution of new specificities | Q48342551 | ||
Sequence diversity among related genes for recognition of specific targets in DNA molecules | Q48398543 | ||
A new method for stoichiometric analysis of proteins in complex mixture--reevaluation of the stoichiometry of E. coli ribosomal proteins. | Q50878552 | ||
EcoRV restriction endonuclease binds all DNA sequences with equal affinity | Q67997671 | ||
Interactions at the nucleic acid binding site of the avian retroviral nucleocapsid protein: studies utilizing the fluorescent probe 4,4'-bis(phenylamino)(1,1'-binaphthalene)-5,5'-disulfonic acid | Q68636383 | ||
Spectrophotometric determination of tryptophan and tyrosine in peptides and proteins based on new color reactions | Q69741730 | ||
Tryptophan and 8-anilino-1-naphthalenesulfonate compete for binding to trp repressor | Q69785902 | ||
P433 | issue | 2 | |
P407 | language of work or name | English | Q1860 |
P921 | main subject | genetics | Q7162 |
P304 | page(s) | 179-186 | |
P577 | publication date | 1992-01-01 | |
1992-01-25 | |||
P1433 | published in | Nucleic Acids Research | Q135122 |
P1476 | title | Purification and biochemical characterisation of the EcoR124 type I modification methylase | |
Purification and biochemical characterisation of theEcoR124 type I modification methylase | |||
P478 | volume | 20 |
Q58615373 | A Type I Restriction-Modification System Associated with Subspecies Separation |
Q40415571 | A deletion mutant of the type IC restriction endonuclease EcoR1241 expressing a novel DNA specificity |
Q57753824 | A residue of motif III positions the helicase domains of motor subunit HsdR in restriction-modification enzyme EcoR124I |
Q33851803 | ATP-dependent restriction enzymes |
Q54521339 | Characterization of an EcoR124I restriction-modification enzyme produced from a deleted form of the DNA-binding subunit, which results in a novel DNA specificity. |
Q41311755 | Chemistry and biology of DNA methyltransferases |
Q34178514 | Complex restriction enzymes: NTP-driven molecular motors |
Q90578974 | Crystal structure of a novel domain of the motor subunit of the Type I restriction enzyme EcoR124 involved in complex assembly and DNA binding |
Q36930943 | Crystallization and preliminary X-ray diffraction analysis of the HsdR subunit of a putative type I restriction enzyme from Vibrio vulnificus YJ016 |
Q39719338 | DNA binding and subunit interactions in the type I methyltransferase M.EcoR124I. |
Q33890885 | DNA translocation blockage, a general mechanism of cleavage site selection by type I restriction enzymes |
Q40794101 | DNA-binding induces a major structural transition in a type I methyltransferase. |
Q37698622 | Diversity of DNA methyltransferases that recognize asymmetric target sequences |
Q47969980 | Expression and characterisation of the N-terminal fragment of the HsdS subunit of M.EcoR124I. |
Q35651000 | Functional coupling of duplex translocation to DNA cleavage in a type I restriction enzyme |
Q40855229 | Genomic structure of the human DNA methyltransferase gene |
Q39718396 | High resolution footprinting of a type I methyltransferase reveals a large structural distortion within the DNA recognition site |
Q54528870 | Identification of the EcoKI and EcoR124I Type I restriction--modification enzyme subunits by non-equilibrium pH gradient two-dimensional gel electrophoresis. |
Q40938302 | Initiation of translocation by Type I restriction-modification enzymes is associated with a short DNA extrusion |
Q38330725 | Interaction of the type I methyltransferase M.EcoR124I with modified DNA substrates: sequence discrimination and base flipping |
Q57755573 | Interdomain communication in the endonuclease/motor subunit of type I restriction-modification enzyme EcoR124I |
Q34069195 | Macroevolution by transposition: drastic modification of DNA recognition by a type I restriction enzyme following Tn5 transposition |
Q38312705 | Measuring motion on DNA by the type I restriction endonuclease EcoR124I using triplex displacement |
Q24555228 | Nucleoside triphosphate-dependent restriction enzymes |
Q24805170 | On the DNA cleavage mechanism of Type I restriction enzymes |
Q24795142 | Protein-polymer nano-machines. Towards synthetic control of biological processes |
Q38336583 | Protein-protein and protein-DNA interactions in the type I restriction endonuclease R.EcoR124I. |
Q24671538 | Purification and characterisation of a novel DNA methyltransferase, M.AhdI |
Q42127857 | Purification, crystallization and preliminary X-ray analysis of the HsdR subunit of the EcoR124I endonuclease from Escherichia coli |
Q38535176 | Recycling of protein subunits during DNA translocation and cleavage by Type I restriction-modification enzymes |
Q40817110 | Shape and subunit organisation of the DNA methyltransferase M.AhdI by small-angle neutron scattering |
Q40790792 | Structural and functional analysis of the engineered type I DNA methyltransferase EcoR124I(NT) |
Q34228621 | Structural and functional analysis of the symmetrical Type I restriction endonuclease R.EcoR124I(NT). |
Q27683016 | Structural characterization of a modification subunit of a putative type I restriction enzyme from Vibrio vulnificus YJ016 |
Q42062102 | Structural model for the multisubunit Type IC restriction-modification DNA methyltransferase M.EcoR124I in complex with DNA. |
Q34244324 | Structure and operation of the DNA-translocating type I DNA restriction enzymes |
Q38315094 | Substrate recognition and selectivity in the type IC DNA modification methylase M.EcoR124I. |
Q39719072 | The HsdR subunit of R.EcoR124II: cloning and over-expression of the gene and unexpected properties of the subunit |
Q27656647 | The fragment structure of a putative HsdR subunit of a type I restriction enzyme from Vibrio vulnificus YJ016: implications for DNA restriction and translocation activity |
Q38992836 | The helical domain of the EcoR124I motor subunit participates in ATPase activity and dsDNA translocation. |
Q43227878 | The interrelationship of helicase and nuclease domains during DNA translocation by the molecular motor EcoR124I. |
Q24548508 | Type I restriction systems: sophisticated molecular machines (a legacy of Bertani and Weigle) |
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