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SURE 2 Supercompetent Cells

Agilent Technologies

Replicating eukaryotic DNA in prokaryotic cells can be problematic. Particular eukaryotic genes may contain inverted repeats or secondary structures, such as Z-DNA, that can be rearranged or deleted by E. coli DNA repair systems. The SURE competent cells are deficient in the E. coli genes involved in the rearrangement and deletion of DNA, thus improving cloning efficiencies of DNA containing irregular structures in prokaryoti…

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SURE Competent Cells

Agilent Technologies

Replicating eukaryotic DNA in prokaryotic cells can be problematic. Particular eukaryotic genes may contain inverted repeats or secondary structures, such as Z-DNA, that can be rearranged or deleted by E. coli DNA repair systems. The SURE competent cells are deficient in the E. coli genes involved in the rearrangement and deletion of DNA, thus improving cloning efficiencies of DNA containing irregular structures in prokaryoti…

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SURE Electroporation-Competent Cells

Agilent Technologies

Replicating eukaryotic DNA in prokaryotic cells can be problematic. Particular eukaryotic genes may contain inverted repeats or secondary structures, such as Z-DNA, that can be rearranged or deleted by E. coli DNA repair systems. The SURE competent cells are deficient in the E. coli genes involved in the rearrangement and deletion of DNA, thus improving cloning efficiencies of DNA containing irregular structures in prokaryoti…

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TKB1 Competent Cells

Agilent Technologies

TKB1 Competent Cells are derived from the BL21 strain and are intended for use with pET, pCAL or other T7 RNA promoter-based vectors. TKX1 Competent Cells are derived from the XL1-Blue strain and are intended for use with non-T7 promoter based vectors.

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TKX1 Competent Cells

Agilent Technologies

TKB1 Competent Cells are derived from the BL21 strain and are intended for use with pET, pCAL or other T7 RNA promoter-based vectors. TKX1 Competent Cells are derived from the XL1-Blue strain and are intended for use with non-T7 promoter based vectors.

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XL1-Red Competent Cells

Agilent Technologies

These competent cells enable a highly efficient, rapid, and reproducible method for introducing random mutations in a cloned gene of interest. This method involves propagating the cloned gene into XL1-Red Competent Cells; an Escherichia coli strain which is deficient in three of the primary DNA repair pathways.

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PTPN2 Substrate Trapping Mutant Human Clone

Agilent Technologies

The SignalScout collection of phosphatase reagents includes the largest collection of human phosphatase expression clones and substrate trapping mutant expression clones.  Largest collection of active phosphatase enzymes, human phosphatase expression clones, and substrate trapping mutant expression clones  Purified GST-tagged active phosphatases for in vitro assay studies  Protein tyrosine, lipid, and dual specificity pho…

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PTPN4 Human Phosphatase Expression Clone

Agilent Technologies

The SignalScout collection of phosphatase reagents includes the largest collection of human phosphatase expression clones and substrate trapping mutant expression clones.  Largest collection of active phosphatase enzymes, human phosphatase expression clones, and substrate trapping mutant expression clones  Purified GST-tagged active phosphatases for in vitro assay studies  Protein tyrosine, lipid, and dual specificity pho…

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PTPN4 Substrate Trapping Mutant Human Expression Clone

Agilent Technologies

The SignalScout collection of phosphatase reagents includes the largest collection of human phosphatase expression clones and substrate trapping mutant expression clones.  Largest collection of active phosphatase enzymes, human phosphatase expression clones, and substrate trapping mutant expression clones  Purified GST-tagged active phosphatases for in vitro assay studies  Protein tyrosine, lipid, and dual specificity pho…

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