AQUApure Linear Di-Ub Chains (M1-linked) Protein, CF

Discontinued Product

UC-700B has been discontinued.
View all Di-Ubiquitin products.
Product Details
Citations (6)
FAQs
Reviews

AQUApure Linear Di-Ub Chains (M1-linked) Protein, CF Summary

Product Specifications

Purity
>95%, by SDS-PAGE under reducing conditions and visualized by Colloidal Coomassie® Blue stain.
Activity

Ubiquitin chains vary in length, linkage, and function. Linear (Met1)-linked Di-Ubiquitin Chains (Ub2) are ideal for investigating Ubiquitin-binding proteins and as substrates for Ubiquitin-specific isopeptidases. Reaction conditions will need to be optimized for each specific application. IMPORTANT: Heating this product in SDS-PAGE buffer or terminating reactions containing this product with heated SDS-PAGE buffer could lead to unexpected, high apparent molecular weight banding or smearing on gels that is not representative of product purity. For optimal results, we recommend incubation in SDS-PAGE buffer + DTT at <40 °C for 20 minutes prior to gel electrophoresis.

Source
E. coli-derived human Di-Ubiquitin protein
Accession #
Predicted Molecular Mass
17 kDa

Product Datasheets

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UC-700B

Carrier Free

What does CF mean?

CF stands for Carrier Free (CF). We typically add Bovine Serum Albumin (BSA) as a carrier protein to our recombinant proteins. Adding a carrier protein enhances protein stability, increases shelf-life, and allows the recombinant protein to be stored at a more dilute concentration. The carrier free version does not contain BSA.

What formulation is right for me?

In general, we advise purchasing the recombinant protein with BSA for use in cell or tissue culture, or as an ELISA standard. In contrast, the carrier free protein is recommended for applications, in which the presence of BSA could interfere.

UC-700B

Formulation

1 mg/ml (58 μM) in sterile, deionized water

Shipping The product is shipped with polar packs. Upon receipt, store it immediately at the temperature recommended below.
Stability & Storage: Use a manual defrost freezer and avoid repeated freeze-thaw cycles.
  • 12 months from date of receipt, -20 to -70 °C as supplied.
  • 3 months, -20 to -70 °C under sterile conditions after opening.
Reconstitution Calculator

Reconstitution Calculator

The reconstitution calculator allows you to quickly calculate the volume of a reagent to reconstitute your vial. Simply enter the mass of reagent and the target concentration and the calculator will determine the rest.

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Background: Di-Ubiquitin

Linkage specific Poly-Ubiquitin chains may be used as a substrate for in vitro reactions with deubiquitinating enzymes ("DUB's") that cleave the peptide or isopeptide linkage between adjacent Ubiquitin molecules. Poly-Ubiquitin chains can also be used to investigate mechanisms of binding and recognition between the chains and other proteins that contain Ubiquitin-Associated domains (UBAs), Ubiquitin-interacting motifs (UIMs), ZnF's and/or other Ubiquitin-sensing elements.

Linear ("M1")-linked Di-Ubiquitin chains are manufactured using recombinant methods to avoid the potential for contaminating synthetic intermediates. The correctness of linkage and purity of each production lot is assessed using the Absolute Quantitation of Ubiquitin method (Ub-AQUA), an LCMS-based technique that provides extremely accurate information on the composition of Poly-Ubiquitin samples.

 

References
  1. Kirkpatrick D.S., et al. (2006) Nat Cell Biol. 8(7) : 700-10
  2. Ordureau, A., et al. (2014) Mol. Cell  56(3) : 360–375
  3. Ordureau, A., et al. (2015) Pro. Nat. Acad. of Sci. USA 112(21) : 6637–6642
  4. Phu L., et al. (2011) Mol Cell Proteomics 10(5) : M110.003756
Entrez Gene IDs
7314 (Human)
Alternate Names
DiUbiquitin; Di-Ubiquitin; HEL-S-50; Ub2; UBB; ubiquitin B

Citations for AQUApure Linear Di-Ub Chains (M1-linked) Protein, CF

R&D Systems personnel manually curate a database that contains references using R&D Systems products. The data collected includes not only links to publications in PubMed, but also provides information about sample types, species, and experimental conditions.

6 Citations: Showing 1 - 6
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  1. Post-translational Modification of OTULIN Regulates Ubiquitin Dynamics and Cell Death
    Authors: T Douglas, M Saleh
    Cell Rep, 2019-12-10;29(11):3652-3663.e5.
    Species: Human
    Sample Types: Protein
    Applications: Bioassay
  2. ZUFSP Deubiquitylates K63-Linked Polyubiquitin Chains to Promote Genome Stability
    Authors: P Haahr, N Borgermann, X Guo, D Typas, D Achuthanku, S Hoffmann, R Shearer, TK Sixma, N Mailand
    Mol. Cell, 2018-03-22;0(0):.
    Species: Human
    Sample Types: Cell Lysates
    Applications: Bioassay
  3. Cholesterol and fatty acids regulate cysteine ubiquitylation of ACAT2 through competitive oxidation
    Authors: YJ Wang, Y Bian, J Luo, M Lu, Y Xiong, SY Guo, HY Yin, X Lin, Q Li, CCY Chang, TY Chang, BL Li, BL Song
    Nat. Cell Biol., 2017-06-12;19(7):808-819.
    Applications: Control
  4. Myosin VI Contains a Compact Structural Motif that Binds to Ubiquitin Chains
    Authors: F He, HP Wollscheid, U Nowicka, M Biancospin, E Valentini, A Ehlinger, F Acconcia, E Magistrati, S Polo, KJ Walters
    Cell Rep, 2016-03-10;14(11):2683-94.
    Species: Human
    Sample Types: Recombinant Protein
    Applications: Bioassay
  5. Deubiquitinase-based analysis of ubiquitin chain architecture using Ubiquitin Chain Restriction (UbiCRest).
    Authors: Hospenthal, Manuela, Mevissen, Tycho E, Komander, David
    Nat Protoc, 2015-01-29;10(2):349-61.
    Species: Human
    Sample Types: Protein
  6. USP45 deubiquitylase controls ERCC1-XPF endonuclease-mediated DNA damage responses.
    Authors: Perez-Oliva A, Lachaud C, Szyniarowski P, Munoz I, Macartney T, Hickson I, Rouse J, Alessi D
    EMBO J, 2014-12-23;34(3):326-43.

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