OneScript® Plus Reverse Transcriptase

Cat. No.
G237
Unit
100 rxn
Price
$129.00

PCR buffet

Cat. No. G237
Name OneScript® Plus Reverse Transcriptase
Unit 100 rxn
Category Reverse Transcriptase & RT-PCR
Description

OneScript® Plus Reverse Transcriptase is a Moloney-Murine Leukemia Virus Reverse Transcriptase with genetic modifications to abolish RNase H activity to achieve thermal stability. This special mutant enzyme offers higher cDNA yields, longer cDNA up to 12 kb, and is able to perform under high temperatures (50°C - 55°C), facilitating the elimination of secondary structures associated with GC-rich RNA templates.

OneScript® Plus is formulated with abm’s RNaseOFF Ribonuclease Inhibitor (Cat. No. G138) offering improved resistance to oxidation compared to the high oxidation-sensitive human RNase inhibitors. RNaseOFF is stable even under very low concentrations of DTT (< 1 mM), making it the best choice for ultimate RNA protection.

Product Features:

  • High thermostability at 50-55°C/122-131°F
  • Synthesize 15 kb RNA Templates
  • 10-15 minutes reaction time
  • OneScript® Plus cDNA Synthesis Kit (Cat. No. G236) also available
  • Pair with BlasTaq™ 2X PCR MasterMix (Cat. No. G895) for Two-Step RT-PCR workflows
  • Included in abm's PCR Buffet Program

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Product Component Quantity
OneScript® Plus Reverse Transcriptase 100 rxn (100 µl)
5X RT Buffer 400 µl
ISO 13485:2016 MDSAP Certified

ISO 13485:2016 MDSAP Certified
Our PCR Products are manufactured under a Quality Management System conforming with ISO 13485:2016 as certified by Intertek (a MDSAP recognized auditing organization).

Application
  • Synthesizing cDNA from a ssRNA
  • DNA primer extension
  • Sequencing dsDNA
  • Constructing cDNA library
  • Constructing libraries for serial analysis for gene expression (SAGE)
  • Synthesizing cDNA in rapid amplification of cDNA ends (3’ & 5’ RACE)
  • Producing template for use in RT-PCR or real-time RT-PCR
  • Labelling 3'-end of duplex DNA via end-filling reactions
  • Generating probes for hybridization
Storage Condition

Store at -20°C.

Material Citation If use of this material results in a scientific publication, please cite the material in the following manner: Applied Biological Materials Inc, Cat. No. G237
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MSDS
Supporting Protocol
  • Arroyave, F., Uscátegui, Y., & Lizcano, F. (2024). From iPSCs to pancreatic β cells: unveiling molecular pathways and enhancements with vitamin C and retinoic acid in diabetes research. International Journal of Molecular Sciences, 25(17), 9654. https://doi.org/10.3390/ijms25179654

    Ates, A., Tastan, C., & Ermertcan, S. (2024). CRISPR-Cas9-Mediated Targeting of Multidrug Resistance Genes in Methicillin-Resistant Staphylococcus aureus. The CRISPR Journal, 7(6), 374-384. https://doi.org/10.1089/crispr.2024.0001

    Çarman, K. B., Tekin, H. G., Çavuşoğlu, D., Yarar, C., Kaplan, E., Karademir, C. N., & Arslantaş, D. (2023). Evaluation of microRNAs in pediatric epilepsy. Turkish archives of pediatrics, 58(4), 429. https://doi.org/10.5152/TurkArchPediatr.2023.22320

    Gallardo, C. M., Wang, S., Montiel-Garcia, D. J., Little, S. J., Smith, D. M., Routh, A. L., & Torbett, B. E. (2021). MrHAMER yields highly accurate single molecule viral sequences enabling analysis of intra-host evolution. Nucleic acids research, 49(12), e70-e70. https://doi.org/10.1093/nar/gkab231

    Gutiérrez-Gómez, M. L., Ruíz, Z., Gamboa, F., Roa, N. S., Cardozo, C., Ariza, B., ... & García-Robayo, D. A. (2024). SARS-CoV-2 diagnosis in saliva samples: Usefulness and limitations. Diagnostic Microbiology and Infectious Disease, 109(3), 116320. https://doi.org/10.1016/j.diagmicrobio.2024.116320

    Han, J., Zhao, Z., Zhang, N., Yang, Y., Ma, L., Feng, L., ... & Wang, G. (2021). Transcriptional dysregulation of TRIM29 promotes colorectal cancer carcinogenesis via pyruvate kinase-mediated glucose metabolism. Aging (Albany NY), 13(4), 5034. https://doi.org/10.18632/aging.202414

    Han, J., Zuo, J., Zhang, X., Wang, L., Li, D., Wang, Y., ... & Feng, L. (2022). TRIM29 is differentially expressed in colorectal cancers of different primary locations and affects survival by regulating tumor immunity based on retrospective study and bioinformatics analysis. Journal of Gastrointestinal Oncology, 13(3), 1132. https://doi.org/10.21037/jgo-22-365

    Karki, D., LaPointe, A. T., Isom, C., Thomas, M., & Sokoloski, K. J. (2025). Mechanistic insights into Sindbis virus infection: noncapped genomic RNAs enhance the translation of capped genomic RNAs to promote viral infectivity. Nucleic Acids Research, 53(1), gkae1230. https://doi.org/10.1093/nar/gkae1230

    Kilercioglu, S., Atli, G., Evliyaoglu, E., Buyukdeveci, M. E., Aydın, F., Sangun, L., ... & Ozdes, A. (2023). The effects of 100 nm pure boron nanoparticles on the primary antioxidant system of Nile tilapia (Oreochromis niloticus). Chemosphere, 339, 139727. https://doi.org/10.1016/j.chemosphere.2023.139727

    Liman, R., Kursunlu, A. N., Ozmen, M., Arslan, S., Mutlu, D., Istifli, E. S., & Acikbas, Y. (2022). Synthesis of water soluble symmetric and asymmetric pillar [5] arene derivatives: Cytotoxicity, apoptosis and molecular docking studies. Journal of Molecular Structure, 1265, 133482. https://doi.org/10.1016/j.molstruc.2022.133482

    Punzi, S., Balestrieri, C., D’Alesio, C. et al. WDR5 inhibition halts metastasis dissemination by repressing the mesenchymal phenotype of breast cancer cells. Breast Cancer Res 21, 123 (2019). https://doi.org/10.1186/s13058-019-1216-y

    Smith, T. K., Kahiel, Z., LeBlond, N. D., Ghorbani, P., Farah, E., Cote, M., ... & Fullerton, M. D. (2019). Characterization of LXR-activating nanoparticle formulations in primary mouse macrophages. bioRxiv, 746784. http://dx.doi.org/10.3390/molecules24203751

    Téllez Valerio, C.E., Gregorio Jorge, J., Luna Suárez, S. et al. MiR6024 overexpression increases the susceptibility of Nicotiana tabacum to Sclerotinia sclerotiorum. Eur J Plant Pathol 165, 97–113 (2023). https://doi.org/10.1007/s10658-022-02591-x

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