PichiaPink™ Secreted Vector Kit
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Invitrogen™

PichiaPink™ Secreted Vector Kit

El kit de vectores secretados PichiaPink™ contiene el vector pPINKα-HC para su uso con el sistema de expresión de levadurasMás información
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Número de catálogoCantidad
A111531 kit
Número de catálogo A11153
Precio (MXN)
-
Cantidad:
1 kit
El kit de vectores secretados PichiaPink™ contiene el vector pPINKα-HC para su uso con el sistema de expresión de levaduras PichiaPink™. El vector pPINKα-HC está construido alrededor del gen ADE2 para complementar la deleción de ade2 en las cepas PichiaPink™. El vector pPINKα-HC tiene la secuencia de señal de secreción del factor de acoplamiento αpara secretar todas las proteínas. Puede solicitar el kit de vectores secretados PichiaPink™ para reponer el kit de sistema de expresión de levadura PichiaPink™.

El kit de vectores secretados PichiaPink™ incluye:
•     Vector pPINKα-HC (número de copias alto) (20 µg)
•     Primer de secuenciación del factor 5’α(20 µg)
•     Primer de secuenciación de 3’CYC1 (20 µg)
•     E. coli One Shot™ TOP10™ Electrocomp™ (n.º de cat. C404052)

¿Por qué elegir el sistema de expresión de levadura PichiaPink™?
El sistema de expresión de levadura PichiaPink™ está basado en la levadura Pichia pastoris. Entre las ventajas de la Pichia pastoris se incluyen un rápido crecimiento, antecedentes genéticos bien definidos, una formulación de medios sencilla y un fácil manejo. Durante más de 30 años, la Pichia pastoris se ha utilizado en laboratorios de todo el mundo para producir cientos de proteínas diferentes de muchas especies, incluida la humana (referencias 1 y 2). El sistema de expresión de levadura PichiaPink™ permite producir proteínas de forma práctica y rentable desde pequeñas a grandes escalas.

Para obtener información sobre cómo obtener una licencia de uso comercial para el sistema de expresión de levadura PichiaPink™, consulte la disponibilidad en outlicensing@lifetech.com.

Para uso exclusivo en investigación. No está indicado para ningún uso terapéutico o de diagnóstico animal o humano.

Enlaces relacionados
Descargar el mapa plasmídico pPINKα-HC (PDF).
Obtenga más información sobre el sistema de expresión de levadura PichiaPink™.
Obtenga más información sobre nuestros sistemas de expresión de proteínas.

Referencias

1. Cereghino JL, Cregg JM. Heterologous protein expression in the methylotrophic yeast Pichia pastoris. FEMS Microbiol Rev. 2000 Jan;24(1):45-66. [PubMed]
2. Cereghino GP, Cereghino JL, Ilgen C, Cregg JM. Production of recombinant proteins in fermenter cultures of the yeast Pichia pastoris. Curr Opin Biotechnol. 2002 Aug; 13 (4): 329-32. [PubMed]
Para uso exclusivo en investigación. No apto para uso en procedimientos diagnósticos.
Especificaciones
Resistencia bacteriana a los antibióticosAmpicilina (AMPR)
HendiduraNo hay sitio de escisión
FormatoLíquido
Agente inductorMetanol
Tipo de productoKit de vectores
Cantidad1 kit
Origen de replicaciónOrigen de pUC
Condiciones de envíoTemperatura ambiente
VectorpPink
Método de clonaciónEnzimas de restricción/MCS
PromotorAOX1
Etiqueta de proteínaSin etiquetar
Unit SizeEach
Contenido y almacenamiento
El kit de vectores de proteínas secretadas PichiaPink™ contiene 20 μg de pPinkα-HC (el plásmido con un número de copias alto y la presecuencia del factor de acoplamiento Alfa de la S. cerevisiae) con cebadores de secuenciación de factor 5' α y 3' CYC1. Conservar a -20°C.

Preguntas frecuentes

I am using the pPink-HC vector and the transformation efficiency of the host strain seems to be very low. Why is this?

When using the pPink-HC vector, the transformation efficiency of the host strain may appear low because colonies with only a few copies of the marker will not produce enough ADE2 gene product to grow and will be selected against on medium lacking adenine (i.e., adenine dropout medium or minimal medium). Only colonies that have integrated multiple copies of the ADE2 marker will able to grow without adenine. Since the gene of interest is linked to the selection marker, the white colonies could also result in higher expression of the gene of interest.

When selecting for blasticidin-resistant transformants in the X-33 strain using pPIC6/pPIC6α vectors, why do I get large and small colonies on YPD plates containing 300 µg/ml blasticidin?

Generally, large colonies represent transformants containing pPIC6/pPIC6α integrants, while small colonies represent transformants containing pPIC6/pPIC6α non-integrants. These non-integrants have transduced the pPIC6/pPIC6α plasmid, and therefore, exhibit a low level of blasticidin resistance in the initial selection process. Upon subsequent screening, these non-integrant transformants do not retain blasticidin resistance.

When choosing a blasticidin-resistant transformant for your expression studies, we recommend that you pick blasticidin-resistant colonies from the initial transformation plate and streak them on a second YPD plate containing the appropriate concentration of blasticidin. Select transformants that remain blasticidin-resistant for further studies.

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

My transformation is not working. Do you have any suggestions?

Here are some suggestinos:

- Make sure that you have harvested cells during log-phase growth (OD <1.0 generally).
- If electroporation is being used, see the electroporator manual for suggested conditions. Vary electroporation parameters if necessary.
- Use more DNA.
- Use freshly made competent cells.
- If the LiCl transformation method is being used, try boiling the carrier DNA.

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

My spheroplasting of Pichia worked twice, but hasn't worked since. The OD of the culture simply does not drop.

Here are some things to consider:

- If the OD of cells that are used is too high, they will not spheroplast. Do not overgrow cells.
- Do not use old cells and make sure that they are in log phase of growth.
- Make sure to mix zymolyase well before using. Zymolyase is more of a suspension than a solution.
- Make the PEG solution fresh each time and check the pH.

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

Is there a recommended protocol for fermentation using constitutive expression vectors such as pGAPZ?

Use the following high cell density protocol for pGAP clones. Feed carbon until the desired density is reached (300 to 400 g/L wet cell weight (WCW)). If the protein is well-behaved in the fermenter, increase to 300-400 g/L WCW as with methanol inducible clones. These densities can be reached in less than 48 hours of fermentation. We have fermented constitutive expressers on glycerol using these protocols with good results. Some modifications to the Fermentation Basal Salts Medium that you might want to make are:

1) Substitute 2% dextrose for the 4% glycerol in the batch medium.
2) Substitute 40% dextrose for the 50% glycerol in the fed-batch medium.
3) Feed the 40% dextrose at 12 mL/L/hr (Jim Cregg has published data on expression using several carbon sources as substrates; dextrose gave the highest levels of expression).
4) Yeast extract and peptone may be added to the medium for protein stability.

One warning: If you are working with His- strains, they remain His- after transformation with pGAPZ. Fermentation in minimal medium will require addition of histidine to the fermenter.

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