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Invitrogen™

Champion™ pET SUMO Expression System

Das Champion™ pET SUMO Expressionssystem produziert die höchsten Anteile an löslichem Protein in E. coli. Für verbesserte Löslichkeit von exprimiertenWeitere Informationen
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KatalognummerMenge
K3000120 Reaktionen
Katalognummer K30001
Preis (EUR)
1.354,00
Each
Menge:
20 Reaktionen
Preis (EUR)
1.354,00
Each
Das Champion™ pET SUMO Expressionssystem produziert die höchsten Anteile an löslichem Protein in E. coli. Für verbesserte Löslichkeit von exprimierten Fusionsproteinen nutzt das Verfahren eine Fusion mittels kleinem Ubiquitin-Modifikator (SUMO), aus der wachsenden Familie der mit Ubiquitin verwandten Proteine. Im Gegensatz zu Ubiquitin ist SUMO an der In-vivo-Stabilisierung und -Lokalisierung von Proteinen beteiligt. Nach der Expression kann der 11 kd-SUMO-Anteil durch hochspezifische und aktive SUMO (ULP-1) Protease am Carboxylterminus gespalten werden, wodurch a natives Protein entsteht*. Das Champion™ pET SUMO Protein- und Peptid-Expressionssystem hat folgende Merkmale:

• Stark verbesserte Löslichkeit mit einer N-terminalen SUMO-Fusion Hocheffiziente Spaltung – erzeugt natives Protein von Interesse mit SUMO (ULP-1) Protease* Hochspezifische Spaltung – beseitigt die Gerfahr, dass Ihr interessierendes Protein intern verdaut wird, unabhängig von der Aminosäure-Sequenz Signifikant höhere Stabilität mit SUMO-Fusion – kann für die Herstellung kleiner Peptid-T7lac-Promotor für eine hohe Proteinexpression verwendet werden N-terminales 6xHis-Tag für die Proteindetektion und -aufreinigung
Nur für Forschungszwecke. Nicht zur Verwendung bei diagnostischen Verfahren.
Specifications
Bakterielle AntibiotikaresistenzKanamycin (KanR)
Bakterien- oder HefenstammBL21(DE3)
SpaltungSUMO
Konstitutives oder induktives SystemInduzierbar
ExpressionsmechanismusZellbasierte Expression
ExpressionssystemE. coli
InduktionsmittelIPTG
ProdukttypExpressionssystem
Menge20 Reaktionen
Selektionsmittel (eukaryotisch)Keine
VektorpET
KlonierungsmethodeTA Cloning™
ProduktlinieChampion, TA Cloning
PromoterT7, lacO
ProteinmarkierungHis Tag (6x), SUMO Tag
Unit SizeEach
Inhalt und Lagerung
Das Champion™ pET SUMO Expressionssystem wird als komplettes System geliefert. Die Champion™ pET SUMO TA Cloning™ Box enthält linearisierten Champion™ pET-SUMO Vektor, steriles Wasser, dNTPs, 10x PCR-Puffer, Kontrolltemplate und -primer, T4-DNA-Ligase, 10x Ligationspuffer, Primer für Sequenzierung oder PCR-Screening und eine Expressionskontrolle. Bei -20°C lagern. Die SUMO Protease Box enthält SUMO-Protease und Puffer. Bei -80°C lagern. Die One Shot™ TOP10 Box enthält einundzwanzig 50 µl-Aliquoten chemisch kompetenter E. coli, S.O.C.-Medium und ein Kontrollplasmid. Bei -80°C lagern. Die One Shot¤ BL21 (DE3)-Box enthält einundzwanzig 50 µl-Aliquoten chemisch kompetenter E. coli, S.O.C.-Medium und ein Kontrollplasmid. Bei -80°C lagern.

Häufig gestellte Fragen (FAQ)

My gene of interest is toxic to bacterial cells. Are there any precautions you can suggest?

Several precautions may be taken to prevent problems resulting from basal level expression of a toxic gene of interest. These methods all assume that the T7-based or Champion-based expression plasmid has been correctly designed and created.

- Propagate and maintain your expression plasmid in a strain that does not contain T7 RNA polymerase (i.e., DH5α).
- If using BL21 (DE3) cells, try growing cells at room temperature rather than 37 degrees C for 24-48 hr.
- Perform a fresh transformation using a tightly regulated E. coli strain, such as BL21-AI cells.
- After following the transformation protocol, plate the transformation reaction on LB plates containing 100 µg/mL ampicillin and 0.1% glucose. The presence of glucose represses basal expression of T7 RNA polymerase.
- Following transformation of BL21-AI cells, pick 3 or 4 transformants and inoculate directly into fresh LB medium containing 100 µg/mL ampicillin or 50 µg/mL carbenicillin (and 0.1% glucose, if desired). When the culture reaches an OD600 of 0.4, induce expression of the recombinant protein by adding L-arabinose to a final concentration of 0.2%.
- When performing expression experiments, supplement the growth medium with 0.1% glucose in addition to 0.2% arabinose.
- Try a regulated bacterial expression system such as our pBAD system.

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

I'm trying to express my protein using a bacterial expression system. How do I know if I'm seeing degradation of my protein or if what I’m seeing is codon usage bias?

Typically, if you see 1-2 dominant bands, translation stopped prematurely due to codon usage bias. With degradation, you usually see a ladder of bands. With degradation, you can try using a protease inhibitor and add it to the lysis buffer to help prevent degradation. If degradation is the issue, a time point experiment can be done to determine the best time to harvest the cells.

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

I'm trying to express my protein using a bacterial expression system and am getting inclusion bodies. What should I do?

If you are having a solubility issue, try to decrease the temperature or decrease the amount of IPTG used for induction. You can also try a different, more stringent cell strain for expression. Adding 1% glucose to the bacterial culture medium during expression can also help.

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

I'm getting low protein yield from my bacterial expression system. What can I do to improve this?

- Inoculate from fresh bacterial cultures, since higher protein yields are generally obtained from a fresh bacterial colony.

- Check the codon usage in the recombinant protein sequence for infrequently used codons. Replacing the rare codons with more commonly used codons can significantly increase expression levels. For example, the arginine codons AGG and AGA are used infrequently by E. coli, so the level of tRNAs for these codons is low.

- Add protease inhibitors, such as PMSF, to buffers during protein purification. Use freshly made PMSF, since PMSF loses effectiveness within 30 min of dilution into an aqueous solution.

- If you are using ampicillin for selection in your expression experiments, you may be experiencing plasmid instability due to the absence of selective conditions. This occurs as the ampicillin is destroyed by β-lactamase or hydrolyzed under the acidic media conditions generated by bacterial metabolism. You may want to substitute carbenicillin for ampicillin in your transformation and expression experiments.

- The recombinant protein may be toxic to bacterial cells. Try a tighter regulation system for competent cell expression such as BL21-AI. You may also consider trying a different expression system such as the pBAD system.

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

My cells are growing very slowly, and I'm not getting any protein expression from my baterial expression system. What can I do to fix this?

This typically occurs when your gene of interest is toxic. Try using a tighter regulation system, such as BL21 (DE3) (pLysS) or BL21 (DE3) (pLysE), or BL21(AI).

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

Zitierungen und Referenzen (1)

Zitierungen und Referenzen
Abstract
A novel hematopoietic granulin induces proliferation of goldfish (Carassius auratus L.) macrophages.
Authors:Hanington PC, Barreda DR, Belosevic M,
Journal:J Biol Chem
PubMed ID:16473876
'Granulins are a group of highly conserved growth factors that have been described from a variety of organisms spanning the metazoa. In this study, goldfish granulin was one of the most commonly identified transcripts in the differential cross-screening of macrophage cDNA libraries and was preferentially expressed in proliferating macrophages. Unlike ... More