1-Step Human Coupled IVT Kit - DNA
1-Step Human Coupled IVT Kit - DNA
Thermo Scientific™

1-Step Human Coupled IVT Kit - DNA

Thermo Scientific 1-Step Human In Vitro Protein Expression Kits enable the translation and post-translational modification of full-length proteins from mRNARead more
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Catalog NumberQuantity
888818 Reaction Kit
8888240 Reaction Kit
Catalog number 88881
Price (EUR)
259,00
Each
Add to cart
Quantity:
8 Reaction Kit
Request bulk or custom format
Price (EUR)
259,00
Each
Add to cart
Thermo Scientific 1-Step Human In Vitro Protein Expression Kits enable the translation and post-translational modification of full-length proteins from mRNA or plasmid templates with yields of up to 100 μg/mL per reaction.

The Human IVT Kits are unique HeLa cell lysate-based protein expression systems for in vitro translation or coupled transcription/translation reactions. Protein expression is performed in a single 90-minute reaction that can be extended for up to 6 hours with continued protein production up to 100 μg/mL when combined with the optimized pT7CFE1 Expression Vector. The Human IVT Kits can express functional enzymes, phosphoproteins, glycoproteins and membrane proteins for immediate use in studying protein interactions, performing rapid mutational analysis and measuring activity.

Features of the 1-Step Human Coupled IVT Kit:

Functional—uses the human translational machinery to express active proteins
Convenient—perform transcription and translation in a single step
High performance—greater yields compared to rabbit reticulocyte in vitro translation
Reliable—express proteins that fail in rabbit reticulocyte systems

Better Than Traditional Methods:
• HeLa cell-free extracts are capable of expressing proteins with post-translational modifications
• Accurate translation delivers full-length protein compatible with downstream applications
• Protein translation is optimized with EMCV IRES element and other mRNA stabilizing elements

Includes:
• Complete kits contain HeLa cell lysate, accessory proteins, reaction mix, nuclease-free water, expression vector and a GFP-positive control vector

Requires:
• 30°C incubator or water bath

Applications:
• Express proteins to measure enzyme activity
• Perform mutational analysis
• Express protein for use in gel mobility shift assays
• Perform co-immunoprecipitation
• Express cytotoxic proteins
• Unnatural amino acid labeling
• Identification and validation of transcriptome small molecule inhibitors
• Screening of RNA targeted small molecules to modify translation

The 1-Step Coupled Human IVT Kit for DNA is a cell-free system using the cellular transcription and translation machinery from a modified HeLa cell line. The procedure is quick and easy and is an effective alternative to other protein expression methods. Simply add an appropriate expression construct to a mixture of HeLa cell lysate, Accessory Proteins, Reaction Mix and incubate at 30°C for 90 minutes to overnight.

The 1-Step Human IVT Kit for mRNA also uses the human protein translation machinery to produce functional protein. This kit is recommended for translation of mRNA transcripts containing an EMCV IRES element and mRNA stabilizing features designed into the pT7CFE1 expression vector.

The human in vitro translation system is robust and will express proteins from a variety of species including mammals, bacteria and protozoa. Benchmarking shows that the expression levels of functional proteins such as luciferase are much higher in the human system compared to either rabbit reticulocyte-based or E. coli-based systems. Furthermore, proteins expressed with the human in vitro translation system are not contaminated with substances that can interfere with downstream applications.

More Product Data
Protocol for in vitro protein expression using mRNA templates
Protein Biology Application Notes
For Research Use Only. Not for use in diagnostic procedures.
Specifications
Expressed Protein TypeMembrane Protein
Product Line1-Step
Quantity8 Reaction Kit
Sufficient For8 Reactions of 25 μL Each
Expression SystemCell-Free
Type1-step Human Coupled IVT Kit
Unit SizeEach
Contents & Storage
Sufficient For: 8 reactions of 25 μL each
• HeLa Lysate, 110 μL
• Accessory Proteins, 25 μL
• Reaction Mix, 40 μL
• Positive Control DNA: pCFE-GFP, 10 μg
• pT7CFE1-CHis, 10 μg
• Nuclease-Free Water, 1.5 mL

Upon receipt store kit at -80°C. Product is shipped on dry ice

Frequently asked questions (FAQs)

What lysate systems can be used for in vitro protein expression?

E. coli, rabbit reticulocyte lysate (RRL), and HeLa cell lysate can all be used for in vitro translation. Our Expressway system utilizes E. coli. In general, RRL efficiently translates proteins greater than 30 kDa. The 1-Step Human In Vitro Protein Expression Kits are ideal for expressing human proteins.

Find additional tips, troubleshooting help, and resources within our Protein Expression Support Center.

Can I use 1-Step Human Coupled IVT Kit - DNA (Cat. No. 88881, 88882) with mRNA?

This page outlines a protocols for in vitro protein expression using mRNA templates.

When comparing 1-Step Human High-Yield Mini IVT Kit with 1-Step Human Coupled IVT Kit - DNA, is one faster than the other?

No, both 1-Step Human High-Yield Mini IVT Kit and 1-Step Human Coupled IVT Kit - DNA can be run overnight (depends upon the gene).

Find additional tips, troubleshooting help, and resources within our Protein Expression Support Center.

Do both 1-Step Human High-Yield Mini IVT Kit and 1-Step Human Coupled IVT Kit - DNA provide the same purity of protein?

Yes, both 1-Step Human High-Yield Mini IVT Kit and 1-Step Human Coupled IVT Kit - DNA provide the same purity of protein.

Find additional tips, troubleshooting help, and resources within our Protein Expression Support Center.

Citations & References (14)

Citations & References
Abstract
Nonenzymatic Protein Acetylation Detected by NAPPA Protein Arrays.
Authors:Olia AS, Barker K, McCullough CE, Tang HY, Speicher DW, Qiu J, LaBaer J, Marmorstein R
Journal:
PubMed ID:26083674
Acetylation is a post-translational modification that occurs on thousands of proteins located in many cellular organelles. This process mediates many protein functions and modulates diverse biological processes. In mammalian cells, where acetyl-CoA is the primary acetyl donor, acetylation in the mitochondria is thought to occur by chemical means due to ... More
Functional compartmentalization of Rad9 and Hus1 reveals diverse assembly of the 9-1-1 complex components during the DNA damage response in Leishmania.
Authors:Damasceno JD, Obonaga R, Santos EV, Scott A, McCulloch R, Tosi LR
Journal:Mol Microbiol
PubMed ID:27301589
'The Rad9-Rad1-Hus1 (9-1-1) complex is a key component in the coordination of DNA damage sensing, cell cycle progression and DNA repair pathways in eukaryotic cells. This PCNA-related trimer is loaded onto RPA-coated single stranded DNA and interacts with ATR kinase to mediate effective checkpoint signaling to halt the cell cycle ... More
The Conserved Sonic Hedgehog Limb Enhancer Consists of Discrete Functional Elements that Regulate Precise Spatial Expression.
Authors:Lettice LA, Devenney P, De Angelis C, Hill RE
Journal:Cell Rep
PubMed ID:28793263
'Expression of sonic hedgehog (Shh) in the limb bud is regulated by an enhancer called the zone of polarizing activity regulatory sequence (ZRS), which, in evolution, belongs to an ancient group of highly conserved cis regulators found in all classes of vertebrates. Here, we examined the endogenous ZRS in mice, ... More
Self-assembling functional programmable protein array for studying protein-protein interactions in malaria parasites.
Authors:Arévalo-Pinzón G, González-González M, Suárez CF, Curtidor H, Carabias-Sánchez J, Muro A, LaBaer J, Patarroyo MA, Fuentes M
Journal:Malar J
PubMed ID:30016987
'Plasmodium vivax is the most widespread malarial species, causing significant morbidity worldwide. Knowledge is limited regarding the molecular mechanism of invasion due to the lack of a continuous in vitro culture system for these species. Since protein-protein and host-cell interactions play an essential role in the microorganism''s invasion and replication, ... More
Characterization of membrane penetration and cytotoxicity of C9orf72-encoding arginine-rich dipeptides.
Authors:Kanekura K, Harada Y, Fujimoto M, Yagi T, Hayamizu Y, Nagaoka K, Kuroda M
Journal:Sci Rep
PubMed ID:30143685
'Cell-penetrating peptides (CPPs) including arginine-rich peptides are attracting a lot of attention due to their potential as a novel intracellular drug delivery tool without substantial toxicity. On the other hand, disease-associated arginine-rich CPPs, such as poly-PR and poly-GR translated from C9orf72 gene, also efficiently enter neuronal cells and then kill ... More