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DNA Modifying Enzymes & Cloning Technologies

Advances in molecular biology require constant innovation and forward progress in the tools and techniques at the core of the field. New England Biolabs is committed to providing a wide variety of essential reagents that serve to advance the frontier of DNA-based manipulations.

NEB’s enzymology expertise sets it apart from competitors, allowing us to produce enzymes for molecular biology that deliver; our highly pure enzymes, over 250 of which are recombinant, offer exceptional performance and value.
NEB offers a comprehensive list of tools and reagents for DNA manipulation. These include ligases, nucleases, methyltransferases, DNA repair proteins, recombinases and more.

NEBcloner is a guide for selecting appropriate products and viewing protocols for steps in the cloning workflow.

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DNA Modifying Enzymes & Cloning Technologies

9°N™ Reverse Gyrase

APOBEC3A

DNA Gyrase (E. coli)

Monarch® DNase I, Lyophilized

NEBExpress® Salt Active Nuclease, GMP Grade

Nucleoside Digestion Mix

TET2

Argonautes

Tth Argonaute (TtAgo)

Closed-ended DNA & Protelomerases

EnClose® Cell-free dbDNA™ Synthesis Kit

EnClose® TelA Protelomerase

EnClose® TelN Protelomerase

DNA Ligases

9°N™ DNA Ligase

Blunt/TA Ligase Master Mix

E. coli DNA Ligase

ElectroLigase®

HiFi Taq DNA Ligase

Hi-T4™ DNA Ligase

Immobilized T4 DNA Ligase

Instant Sticky-end Ligase Master Mix

NEBNext® Quick Ligation Module

NEBridge® Ligase Master Mix

Quick Ligation™ Kit

Salt-T4® DNA Ligase

SplintR® Ligase

StickTogether™ DNA Ligase Buffer

T3 DNA Ligase

T4 DNA Ligase

T4 DNA Ligase Reaction Buffer

T7 DNA Ligase

Taq DNA Ligase

Taq DNA Ligase Reaction Buffer

Thermostable 5´ App DNA/RNA Ligase

DNA Repair Enzymes and Structure-specific Endonucleases

Afu Uracil-DNA Glycosylase (UDG)

Antarctic Thermolabile UDG

APE 1

Authenticase®

Endonuclease III (Nth)

Endonuclease IV

Endonuclease V

Endonuclease VIII

EnGen® Mutation Detection Kit

Fpg

hAAG

hSMUG1

Mismatch Endonuclease I

PreCR® Repair Mix

RecA

T4 PDG (T4 Endonuclease V)

T7 Endonuclease I

Thermolabile USER® II Enzyme

Thermostable Endonuclease Q

Thermostable FEN1

Thermostable OGG

Thermostable USER® III Enzyme

Thymine-DNA Glycosylase (TDG)

Topoisomerase I (E. coli)

Tth Endonuclease IV

Uracil Glycosylase Inhibitor (UGI)

Uracil-DNA Glycosylase (UDG)

USER® Enzyme

WarmStart® Afu Uracil-DNA Glycosylase (UDG)

Base Modifying Enzymes

AluI Methyltransferase

APOBEC3A

BamHI Methyltransferase

CpG Methyltransferase (M.SssI)

EcoGII Methyltransferase

EcoRI Methyltransferase

GpC Methyltransferase (M.CviPI)

HaeIII Methyltransferase

Hhal Methyltransferase

HpaII Methyltransferase

MspI Methyltransferase

TaqI Methyltransferase

TET2

Exonucleases and Non-specific Endonucleases

DNase I (RNase-free)

DNase I Reaction Buffer

DNase I-XT

DNase I-XT Reaction Buffer

Duplex DNase

Exonuclease I (E. coli)

Exonuclease I Reaction Buffer

Exonuclease III (E. coli)

Exonuclease T

Exonuclease V (RecBCD)

Exonuclease VII

Exonuclease VIII, truncated

Lambda Exonuclease

Micrococcal Nuclease

Msz Exonuclease I

Mung Bean Nuclease

NEBExpress® Salt Active Nuclease

Nuclease P1

RecJf

T5 Exonuclease

T7 Endonuclease I

T7 Exonuclease

Thermolabile Exonuclease I

Phosphatases

Antarctic Phosphatase

Antarctic Phosphatase Reaction Buffer

Apyrase

Pyrophosphatase, Inorganic (E. coli)

Pyrophosphatase, Inorganic (yeast)

Quick CIP

Shrimp Alkaline Phosphatase (rSAP)

Thermostable Inorganic Pyrophosphatase

Recombinases

Cre Recombinase

ssDNA Binding Proteins

ET SSB

RecA

T4 Gene 32 Protein

Kinases

5-hydroxymethyluridine DNA Kinase

T4 Polynucleotide Kinase

T4 Polynucleotide Kinase (3' phosphatase minus)

T4 Polynucleotide Kinase Reaction Buffer

DNA Labeling

DNA Polymerase I (E. coli)

Klenow Fragment (3´→5´ exo-)

Streptavidin

T4 Polynucleotide Kinase

Terminal Transferase

Therminator™ DNA Polymerase

Other

Cryogenic Cold Storage Box

DNA Gyrase (E. coli)

EnClose® TelN Protelomerase

M13KO7 Helper Phage

β-Agarase I

Argonautes

Tth Argonaute (TtAgo)

Closed-ended DNA & Protelomerases

EnClose® Cell-free dbDNA™ Synthesis Kit

EnClose® TelA Protelomerase

EnClose® TelN Protelomerase

DNA Ligases

9°N™ DNA Ligase

Blunt/TA Ligase Master Mix

E. coli DNA Ligase

ElectroLigase®

HiFi Taq DNA Ligase

Hi-T4™ DNA Ligase

Immobilized T4 DNA Ligase

Instant Sticky-end Ligase Master Mix

NEBNext® Quick Ligation Module

NEBridge® Ligase Master Mix

Quick Ligation™ Kit

Salt-T4® DNA Ligase

SplintR® Ligase

StickTogether™ DNA Ligase Buffer

T3 DNA Ligase

T4 DNA Ligase

T4 DNA Ligase Reaction Buffer

T7 DNA Ligase

Taq DNA Ligase

Taq DNA Ligase Reaction Buffer

Thermostable 5´ App DNA/RNA Ligase

DNA Repair Enzymes and Structure-specific Endonucleases

Afu Uracil-DNA Glycosylase (UDG)

Antarctic Thermolabile UDG

APE 1

Authenticase®

Endonuclease III (Nth)

Endonuclease IV

Endonuclease V

Endonuclease VIII

EnGen® Mutation Detection Kit

Fpg

hAAG

hSMUG1

Mismatch Endonuclease I

PreCR® Repair Mix

RecA

T4 PDG (T4 Endonuclease V)

T7 Endonuclease I

Thermolabile USER® II Enzyme

Thermostable Endonuclease Q

Thermostable FEN1

Thermostable OGG

Thermostable USER® III Enzyme

Thymine-DNA Glycosylase (TDG)

Topoisomerase I (E. coli)

Tth Endonuclease IV

Uracil Glycosylase Inhibitor (UGI)

Uracil-DNA Glycosylase (UDG)

USER® Enzyme

WarmStart® Afu Uracil-DNA Glycosylase (UDG)

Base Modifying Enzymes

AluI Methyltransferase

APOBEC3A

BamHI Methyltransferase

CpG Methyltransferase (M.SssI)

EcoGII Methyltransferase

EcoRI Methyltransferase

GpC Methyltransferase (M.CviPI)

HaeIII Methyltransferase

Hhal Methyltransferase

HpaII Methyltransferase

MspI Methyltransferase

TaqI Methyltransferase

TET2

Exonucleases and Non-specific Endonucleases

DNase I (RNase-free)

DNase I Reaction Buffer

DNase I-XT

DNase I-XT Reaction Buffer

Duplex DNase

Exonuclease I (E. coli)

Exonuclease I Reaction Buffer

Exonuclease III (E. coli)

Exonuclease T

Exonuclease V (RecBCD)

Exonuclease VII

Exonuclease VIII, truncated

Lambda Exonuclease

Micrococcal Nuclease

Msz Exonuclease I

Mung Bean Nuclease

NEBExpress® Salt Active Nuclease

Nuclease P1

RecJf

T5 Exonuclease

T7 Endonuclease I

T7 Exonuclease

Thermolabile Exonuclease I

Phosphatases

Antarctic Phosphatase

Antarctic Phosphatase Reaction Buffer

Apyrase

Pyrophosphatase, Inorganic (E. coli)

Pyrophosphatase, Inorganic (yeast)

Quick CIP

Shrimp Alkaline Phosphatase (rSAP)

Thermostable Inorganic Pyrophosphatase

Recombinases

Cre Recombinase

ssDNA Binding Proteins

ET SSB

RecA

T4 Gene 32 Protein

Kinases

5-hydroxymethyluridine DNA Kinase

T4 Polynucleotide Kinase

T4 Polynucleotide Kinase (3' phosphatase minus)

T4 Polynucleotide Kinase Reaction Buffer

DNA Labeling

DNA Polymerase I (E. coli)

Klenow Fragment (3´→5´ exo-)

Streptavidin

T4 Polynucleotide Kinase

Terminal Transferase

Therminator™ DNA Polymerase

Other

Cryogenic Cold Storage Box

DNA Gyrase (E. coli)

EnClose® TelN Protelomerase

M13KO7 Helper Phage

β-Agarase I


Choose Type:

DNA Modifying Enzymes & Cloning Technologies includes these subcategories:
Argonautes
Closed-ended DNA & Protelomerases
DNA Ligase
DNA Repair Enzymes and Structure-specific Endonucleases
Base Modifying Enzymes
Exonucleases and Non-specific Endonucleases
Phosphatase
Recombinase
ssDNA Binding Protein
Kinase
DNA Labeling
Other
Protocols for DNA Modifying Enzymes & Cloning Technologies
Application Notes for DNA Modifying Enzymes & Cloning Technologies
    Publications related to DNA Modifying Enzymes & Cloning Technologies
    • Pirone-Davies, C., Hoffmann, M., Roberts, R.J., Muruvanda, T., Timme, R.E., Strain, E., Luo, Y., Payne, J., Luong, K., Song, Y., Tsai, Y.C., Boitano, M., Clark, T.A., Korlach, J., Evans, P.S., Allard, M.W. (2015) Genome-Wide Methylation Patterns in Salmonella enterica Subsp. enterica Serovars PLoS One; 10(4), e0123639. PubMedID: 25860355
    • Seib, K.L., Jen, F.E., Tan, A., Scott, A.L., Kumar, R., Power, P.M., Chen, L.T., Wu, H.J., Wang, A.H., Hill, D.M., Luyten, Y.A., Morgan, R.D., Roberts, R.J., Maiden, M.C., Boitano, M., Clark, T.A., Korlach, J., Rao, D.N. and Jennings, M.P. (2015) Specificity of the ModAll, ModA12 and ModD1 epigenetic regulator N6-adenine DNA methyltransferases of Neisseria Meningitidis Nucleic Acids Res; 43(8), 4150-4162. PubMedID: 25845594, DOI: 10.1093/nar/gkv219
    • Fomenkov, A., Lunnen, K.D., Zhu, Z., Anton, B.P., Wilson, G.G., Vincze, T. and Roberts, R.J. (2015) Complete genome sequence and methylome analysis of bacillus strain x1 Genome Announc; 3(1), PubMedID: 25700417
    • Anton, B.P., Mongodin, E.F., Agrawal, S., Fomenkov, A., Byrd, D.R., Roberts, R.J. and Raleigh, E.A. (2015) Complete Genome Sequence of ER2796, a DNA Methyltransferase-Deficient Strain of Escherichia coli K-12 PLoS One; 10(5), e0127446. PubMedID: 26010885
    • Xu, S-Y., Boitano, M., Clark, T.A., Vincze, T., Fomenkov, A., Kumar, S., Too, PH-M., Gonchar, D., Degtyarev, S.K. and Roberts, R.J. (2015) Complete Genome Sequence Analysis of Bacillus Subtilis T30 Genome Announc; 3(3), e00395-15. PubMedID: 25953183
    • Mauris, J.and Evans, T.C., Jr. (2010) A human PMS2 homologue from Aquifex aeolicus stimulates an ATP-dependent DNA helicase. J Biol Chem; 285(15), 11087-11092. PubMedID: 20129926
    • Roberts, R.J., Vincze, T., Posfai, J., Macelis, D. (2014) REBASE - A database for DNA restriction and modification: enzymes, genes and genomes Nucleic Acids Res; PubMedID: 25378308
    • Fomenkov, A., Vincze, T., Mersha, F., Roberts, R.J. (2018) Complete genome sequence and methylome analysis of Bacillus caldolyticus NEB414. Genome Announ.; 6 (6), e01605-17. PubMedID: 29439055 , DOI: 10.1128/genomeA.01605-17
    • Bottacini, F., Morrissey, R., Roberts, R.J., James, J., van Breen, J., Egan, M., Lambert, J., van Limpt, K., Knol, J., O'Connell Motherway, M. and van Sinderen, D. (2018) Comparative genome and methylome analysis reveals restriction/modification system diversity in the gut commensal Bifidobacterium breve. Nucleic Acids Res; 46(4), 1860-1877. PubMedID: 29294107, DOI: 10.1093/nar/gkx1289
    • Murray, Iain; Morgan, Rick; Luyten, Yvette; Fomenkov, Alexey; Correa, Ivan; Dai, Nan; Roberts, Rich; (2018) The non-specific adenine DNA methyltransferase M.EcoGII. Nucleic Acids Res; (2), 840-848. PubMedID: 29228259, DOI: 10.1093/nar/gkx1191
    • Deptula, P., Smolander, O.-P., Laine, P., Roberts, R.J., Edelmann, M., Peltola, P., Piironen, V., Paulin, L., Storgards, E., Savijoki, K., Laitila, A., Auvinen, P., Varmanen, P (2018) Acidipropionibacterium virtanenii sp nov isolated from malted barley Int J Syst Evol Microbiol; 68, 3175-3183. PubMedID: 30156530
    • Anton, B.P., Roberts, R.J., Fomenkov, A., Humbert, A., Stoian, N., Zeilstra-Ryalls, J. (2018) Complete genome sequences of two Rhodobacter strains Microbiol Resour Announc; 7 (12), e01162-18. PubMedID: 30533667
    • Yao, K., Muruvanda, T., Roberts, R.J., Payne, J., Allard, M.W. and Hoffmann, M. (2016) Complete Genome and Methylome Sequences of Salmonella enterica subsp. enterica Serovar Panama (ATCC 7378) and Salmonella enterica subsp. enterica Serovar Sloterdijk (ATCC 15791). Genome Announc; Mar 17;4(2)., PubMedID: 26988049
    • Anton, B.P., Harhay, G.P., Smith, T.P., Blom, J. and Roberts, R.J. (2016) Comparative Methylome Analysis of the Occasional Ruminant Respiratory Pathogen Bibersteinia trehalosi. PLoS One; Aug 24, 11(8):e0161499.. PubMedID: 27556252
    • Callahan, S.J., Luyten, Y.A., Gupta, Y.K., Wilson, G.G., Roberts, R.J., Morgan, R.D. and Aggarwal, A.K. (2016) Structure of Type IIL Restriction-Modification Enzyme MmeI in Complex with DNA Has Implications for Engineering New Specificities. PLoS Biol; Apr 15;14(4):e1002442, PubMedID: 27082731
    • Morgan, R.D., Luyten, Y.A., Johnson, S.A., Clough, E.M., Clark, T.A. and Roberts, R.J. (2016) Novel m4C modification in type I restriction-modification systems. Nucleic Acids Res; Nov, 2;44(19):9413-9425. PubMedID: 27580720
    • Blow, M.J., Clark, T.A., Daum, C.G., Deutschbauer, A.M., Fomenkov, A., Fries, R., Froula, J., Kang, D.D., Malmstrom, R.R., Morgan, R.D., Posfai, J., Singh, K., Visel, A., Wetmore, K., Zhao, Z., Rubin, E.M., Korlach, J., Pennacchio, L.A. and Roberts, R.J. (2016) The Epigenomic Landscape of Prokaryotes. PLoS Genet; Feb 12;12(2):e1005854, PubMedID: 26870957, DOI: 10.1371/journal.pgen.1005854
    • Ee, R., Lim, Y.L., Yin, W.F., See-Too, W.S., Roberts, R.J. and Chan, K.G. (2016) Novel Methyltransferase Recognition Motif Identified in Chania multitudinisentens RB-25(T) gen. nov., sp. nov. Front Microbiol; 206, 31;7:1362. PubMedID: 27630623 , DOI: 10.3389/fmicb.2016.01362
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