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- | A number of different plasmids were assembled by the Plug ‘n’ Play system in order to verify that the system functions in mammalian cells. To demonstrate how fast any vector of choice for the expression in mammalian cells can be assembled, we designed a reporter system as proof of concept. <br>
| + | Five different plasmids were assembled with the Plug ‘n’ Play standard in order to verify that the system functions in mammalian cells. To demonstrate how fast any vector of choice for the expression in mammalian cells can be assembled, we designed a reporter system as proof of concept. <br> |
- | All the mammalian plasmids for proof of concept were constructed with the same strong constitutive cytomegalovirus (CMV) promotor, the BGH terminator, the marker cassette of Hygromycin, and the mammalian backbone, <a href="http://partsregistry.org/Part:BBa_K678023">BBa_K678023</a>.
| + | The plasmids for proof of concept in mammalian cells were constructed with the strong constitutive cytomegalovirus (CMV) promotor, the BGH terminator, the hygromycin marker cassette, and the plasmid backbone, <a href="http://partsregistry.org/Part:BBa_K678023">BBa_K678023</a>. |
- | Different fluorescence reporter genes were used as the gene of interest. Furthermore, GFP was targeted to the peroxisomes to demonstrate that this reporter system is easily modified and can be suited for studies in gene expression. All transient transfections were performed in the human derived cell line U-2 OS, kindly given to us by the Danish Cancer Society. <br> | + | Different genes encoding fluorescent proteins were used as the gene of interest, and the reporter system can easily be modified to be used for gene expression analysis. All transient transfections were performed in the human derived cell line U-2 OS, kindly provided by the Danish Cancer Society. For microscopy the transfected U-2 OS cells were fixed using 4% formaldehyde, and VECTASHIELD was added to prevent rapid loss of fluorescence while examining the cells with the confocal microscope.<br><br> |
- | We succeeded in proving that the Plug ‘n’ Play assembly system is easily applied for costruction of mammalian expression vectors. Transfection and expression of the fluorescence proteins GFP, mCherry, YFP, and CFP were successfully conducted in U-2 OS. Furthermore, expression of GFP targeted to the peroxisomes of U-2 OS cells succeeded. It was also shown that mammalian cells can be transfected with different fluorescence proteins at the same time. The transfected U-2 OS were fixed using 4% formaldehyde, and VECTASHIELD was added to prevent rapid loss of fluorescence while examining the cells with a confocal microscope.<br> | + | We have proved that the Plug ‘n’ Play assembly standard can easily be applied for construction of mammalian expression vectors. Transfection and expression of the fluorescent proteins GFP, mCherry, YFP, and CFP were successfully conducted in U-2 OS. Furthermore, expression of GFP targeted to the peroxisomes of U-2 OS cells succeeded. It was also shown that mammalian cells can be transfected with different fluorescent proteins simultaneously. <br><br> |
- | This reporter system could be used for localization of proteins to specific organelles, which would allow study of the organelles in real time. Further development of this system could lead to targeting of different compartments with different fluorescence proteins at the same time. | + | |
| + | This reporter system could developed further enabling the localization of proteins to specific organelles. Such a system would allow the study of organelles and other compartments in real time. |
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Proof of concept in mammalian cells
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Proof of concept
Five different plasmids were assembled with the Plug ‘n’ Play standard in order to verify that the system functions in mammalian cells. To demonstrate how fast any vector of choice for the expression in mammalian cells can be assembled, we designed a reporter system as proof of concept.
The plasmids for proof of concept in mammalian cells were constructed with the strong constitutive cytomegalovirus (CMV) promotor, the BGH terminator, the hygromycin marker cassette, and the plasmid backbone, BBa_K678023.
Different genes encoding fluorescent proteins were used as the gene of interest, and the reporter system can easily be modified to be used for gene expression analysis. All transient transfections were performed in the human derived cell line U-2 OS, kindly provided by the Danish Cancer Society. For microscopy the transfected U-2 OS cells were fixed using 4% formaldehyde, and VECTASHIELD was added to prevent rapid loss of fluorescence while examining the cells with the confocal microscope.
We have proved that the Plug ‘n’ Play assembly standard can easily be applied for construction of mammalian expression vectors. Transfection and expression of the fluorescent proteins GFP, mCherry, YFP, and CFP were successfully conducted in U-2 OS. Furthermore, expression of GFP targeted to the peroxisomes of U-2 OS cells succeeded. It was also shown that mammalian cells can be transfected with different fluorescent proteins simultaneously.
This reporter system could developed further enabling the localization of proteins to specific organelles. Such a system would allow the study of organelles and other compartments in real time.
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