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Invitrogen™

pMIB/V5-His Vector Kit

pMIB/V5-His ist ein 3,6 kb-Vektor für die konstitutive Expression und Sekretion rekombinanter Proteine aus den Insektenzelllinien Sf9, Sf21 und HighWeitere Informationen
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KatalognummerMenge
V8030011 Kit
Katalognummer V803001
Preis (EUR)
1.031,56
Exklusiv online
1.258,00
Ersparnis 226,44 (18%)
1 kit
Menge:
1 Kit
Preis (EUR)
1.031,56
Exklusiv online
1.258,00
Ersparnis 226,44 (18%)
1 kit
pMIB/V5-His ist ein 3,6 kb-Vektor für die konstitutive Expression und Sekretion rekombinanter Proteine aus den Insektenzelllinien Sf9, Sf21 und High Five™. Die Absonderung von Proteinen in serumfreies Medium vereinfacht die Aufreinigung und erleichtert die Entnahme von Proteinen aus kultivierten Zellen. pMIB/V5-His verfügt über mehrere Merkmale, die die Expression rekombinanter Proteine in Insektenzellen erleichtern, darunter:

OpIE2 Promotor für konstitutive Expression
• Das Honigbienen-Melittin-(HBM-)Sekretionssignal ermöglicht eine sezernierte Expression des Proteins
• Blasticidin Resistenzgen für die schnelle Selektion stabil transfizierter Zelllinien in zwei Wochen
• C-terminales V5-Epitop- und Polyhistidin-Tag für den Nachweis mit Invitrogen Anti-V5-Antikörpern und die Aufreinigung mit Nickel-Chelatharz
Nur für Forschungszwecke. Darf nicht für diagnostische Verfahren eingesetzt werden.
Specifications
ProdukttypInsektenzellen-Expressionsvektor
Protein-Tag-Position (zu Ihrem Gen)C-Terminal
Menge1 Kit
VektorpMIB
KlonierungsmethodeRestriktionsenzym/MCS
ProduktlinieInsectSelect
PromoterOplE2
ProteinmarkierungHis-Tag (6x), V5-Epitop-Tag
Unit Size1 kit
Inhalt und Lagerung
Das pMIB/V5-His-Vektor-Kit enthält je 20 µg superhelikale und lyophilisierte pMIB/V5-His A-, B- und C-Vektoren, pMIB/V5-His/CAT-Kontrollvektor und je 2 µg OpIE2 Vorwärts- und Rückwärtssequenzierprimer. Bei -20 °C lagern. Alle Reagenzien bleiben bei ordnungsgemäßer Lagerung garantiert 6 Monate stabil.

Häufig gestellte Fragen (FAQ)

Do I need to include a Kozak sequence for expression of recombinant proteins in insect cells?

While the importance of a Kozak consensus sequence in translation initiation has been demonstrated in mammalian cells, there seems to be some debate as to whether the Kozak rules are as stringent in insect cells. The only way to determine its importance would be a direct comparison of expression of the same protein from different initiation sequences. Even then, the rules for optimal expression of one protein may not hold for another. Here are two references which indicate that a Kozak consensus sequence does not have any effect on efficiency of expression in insect cells:

- Hills D, Crane-Robinson C (1995) Baculovirus expression of human basic fibroblast growth factor from a synthetic gene: role of the Kozak consensus and comparison with bacterial expression.
- Biochim Biophys Acta 1260(1):14-20.
- Ranjan A, Hasnain SE (1995) Influence of codon usage and translational initiation codon context in the AcNPV-based expression system: computer analysis using homologous and heterologous genes. Virus Genes 9(2):149-153.

Do I need to include a ribosomal binding site (RBS/Shine Dalgarno sequence) or Kozak sequence when I clone my gene of interest?

ATG is often sufficient for efficient translation initiation although it depends upon the gene of interest. The best advice is to keep the native start site found in the cDNA unless one knows that it is not functionally ideal. If concerned about expression, it is advisable to test two constructs, one with the native start site and the other with a Shine Dalgarno sequence/RBS or consensus Kozak sequence (ACCAUGG), as the case may be. In general, all expression vectors that have an N-terminal fusion will already have a RBS or initiation site for translation.

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

Can you tell me the difference between a Shine-Dalgarno sequence and a Kozak sequence?

Prokaryotic mRNAs contain a Shine-Dalgarno sequence, also known as a ribosome binding site (RBS), which is composed of the polypurine sequence AGGAGG located just 5’ of the AUG initiation codon. This sequence allows the message to bind efficiently to the ribosome due to its complementarity with the 3’-end of the 16S rRNA. Similarly, eukaryotic (and specifically mammalian) mRNA also contains sequence information important for efficient translation. However, this sequence, termed a Kozak sequence, is not a true ribosome binding site, but rather a translation initiation enhancer. The Kozak consensus sequence is ACCAUGG, where AUG is the initiation codon. A purine (A/G) in position -3 has a dominant effect; with a pyrimidine (C/T) in position -3, translation becomes more sensitive to changes in positions -1, -2, and +4. Expression levels can be reduced up to 95% when the -3 position is changed from a purine to pyrimidine. The +4 position has less influence on expression levels where approximately 50% reduction is seen. See the following references:

- Kozak, M. (1986) Point mutations define a sequence flanking the AUG initiator codon that modulates translation by eukaryotic ribosomes. Cell 44, 283-292.
- Kozak, M. (1987) At least six nucleotides preceding the AUG initiator codon enhance translation in mammalian cells. J. Mol. Biol. 196, 947-950.
- Kozak, M. (1987) An analysis of 5´-noncoding sequences from 699 vertebrate messenger RNAs. Nucleic Acids Res. 15, 8125-8148.
- Kozak, M. (1989) The scanning model for translation: An update. J. Cell Biol. 108, 229-241.
- Kozak, M. (1990) Evaluation of the fidelity of initiation of translation in reticulocyte lysates from commercial sources. Nucleic Acids Res. 18, 2828.

Note: The optimal Kozak sequence for Drosophila differs slightly, and yeast do not follow this rule at all. See the following references:

- Romanos, M.A., Scorer, C.A., Clare, J.J. (1992) Foreign gene expression in yeast: a review. Yeast 8, 423-488.
- Cavaneer, D.R. (1987) Comparison of the consensus sequence flanking translational start sites in Drosophila and vertebrates. Nucleic Acids Res. 15, 1353-1361.

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

Zitierungen und Referenzen (1)

Zitierungen und Referenzen
Abstract
Antibodies against a secreted protein from hookworm larvae reduce the intensity of hookworm infection in humans and vaccinated laboratory animals.
Authors:Bethony J, Loukas A, Smout M, Brooker S, Mendez S, Plieskatt J, Goud G, Bottazzi ME, Zhan B, Wang Y, Williamson A, Lustigman S, Correa-Oliveira R, Xiao S, Hotez PJ,
Journal:FASEB J
PubMed ID:16037096
'The development of a vaccine would provide an important new tool for the control of human hookworm infection. On the basis of successful vaccination of laboratory animals with living irradiated, third-stage hookworm larvae (L3), we examined the antibody responses of individuals from hookworm endemic areas of Brazil and China against ... More