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    Endura Tn5 Transposase | Unloaded

    Endura Tn5 Transposase is hyperactive mutant of Tn5 Transposase with a proprietary formulation to confer superior stability, efficient tagmentation, and consistent performance for NGS library preps and transposition experiments.

    Format

    Endura Tn5 Transposase - Unloaded

    Highlights

    • Exceptional Stability: Optimized novel formulation for superior stability.
    • Batch-to-Batch Consistency: Enables highly reproducible assays and library preps.
    • Ready-to-Load: Easily generate transposomes or load with custom adapters with Unloaded format.
    Zymo Research's 100% Satisfaction Guarantee

    Original Manufacturer

    Innovated in California, Made in the USA

    Satisfaction 100% guaranteed, read Our Promise

    Format

    Endura Tn5 Transposase - Unloaded

    Highlights

    • Exceptional Stability: Optimized novel formulation for superior stability.
    • Batch-to-Batch Consistency: Enables highly reproducible assays and library preps.
    • Ready-to-Load: Easily generate transposomes or load with custom adapters with Unloaded format.
    Zymo Research's 100% Satisfaction Guarantee

    Original Manufacturer

    Innovated in California, Made in the USA

    Satisfaction 100% guaranteed, read Our Promise

    Cat # Name Size Price Quantity
    E1024-20 Endura Tn5 Transposase - Unloaded 20 µl (1 U/µl) $359.00
    - +
    E1024-100 Endura Tn5 Transposase - Unloaded 100 µl (1 U/µl) $1,248.00
    - +

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    Description

    Endura Tn5 Transposase is hyperactive mutant of Tn5 Transposase with a proprietary formulation to confer superior stability, efficient tagmentation, and reliable consistency between experiments. Endura Tn5 Transposase allows for easy, rapid, and consistent library preparation for next-generation libraries such as whole genome sequencing, shotgun sequencing, targeted sequencing, single-cell sequencing, and ATAC-Seq. 

    Performance

    Technical Specifications
    Activity Tn5 Transposase (1 U/µl)
    Format Liquid, 50% glycerol
    Concentration ~12.5 µM, ~1 mg/ml
    Optimum pH 7.5
    Optimum Temperature 55°C
    Storage Store at -20°C. For long term storage, store at -80°C.

    Resources

    Documents


    FAQ

    Endura™ Tn5 Transposase is a hyperactive variant of Tn5 transposase with a novel formulation to confer superior stability. It can maintain its activity over 10 freeze-thaw cycles as well as room temperature incubation.

    Endura™ Tn5 Transposase can be inactivated by addition of 10x Stop Buffer to a final concentration of 1x in your reaction, following by a 5-minute incubation at 75 °C.

    Yes, you can load Endura™ Tn5 Transposase with any custom adapter sequence or transposon DNA, of any length, as long as the 3’ end contains 19-bp Mosaic-End sequence (5’ – CTGTCTCTTATACACATCT – 3’).

    Applications

    • Whole Genome Sequencing (WGS) – Decode the entire DNA sequence of an organism’s genome to identify genetic variants, mutations, and structural variations.
    • Whole Exome Sequencing (WES) – Analyze the protein-coding regions of the genome to detect mutations linked to particular phenotypes, genetic disorders, and disease.
    • Assay for Transposase-Accessible Chromatin Sequencing (ATAC-Seq) – Identify genome-wide chromatin accessibility and regulatory DNA elements in high resolution.
    • Epigenomic Sequencing – Map DNA methylation and histone modifications to study gene expression regulation and epigenetic changes.
    • Metagenomic Sequencing – Analyze microbial DNA from environmental or host-associated samples to profile microbial diversity, taxonomy, and functional genes.
    • Single Cell Sequencing – Analyze gene expression, epigenetics, or genome variation at the individual cell level to uncover cellular heterogeneity.
    • RNA Sequencing – Capture and quantify the transcriptome to analyze gene expression, alternative splicing, and non-coding RNA profiles.
    • Transposome Studies – Examine transposable elements and mobile DNA to understand their role in genome evolution, stability, and regulation.

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