Protein synthesis using cell-free protein synthesis reagent kit consists of three stages: preparation of transcription template, transcription and translation. For the use of the translation reagent set, please refer to section “Translation”.
In preparation of transcription template, it is necessary to prepare a primer in advance. In the different attachment, five different tag sequences are shown, and by carrying out PCR twice, it is possible to efficiently create a transcription template containing multiple tag sequences. Also, it is possible to tag both N-terminal and C-terminal. The primer list is given below.
The 2-step PCR is the first step in the protocol of CFPS700 kit to generate the DNA template to be used in the following transcription and translation. The 1st PCR aims to connect the target ORF sequence with the 2nd forward/reverse primers (please see the diagram below). Therefore, the 1st PCR forward/reverse primers need to be target gene specific that overlap with the N-terminal and C-terminal sequences of the ORF of the target gene. There are two sets of forward and reverse primer sets in the 2nd PCR. The two reverse 2nd PCR primers and one forward 2nd PCR primers are universal primers. The other forward 2nd PCR primer contains a tag sequence, such as His-, FLAG-, or MYC-tag, therefore can differ from one another depending on your tag choice.
In the detailed protocol below, overlapping length between 1st gene specific primers and ORF is set at 18 bp as the default. However, the overlapping length can be extended to 30 bps, giving multiple options for primer. The selection of the primer set for the 1st PCR is critical. If not carefully done, it would result in less efficient or even failed 1st PCR, subsequently 2nd PCR, and ultimately failed protein translation. Please use the Primer Design Tool (right-click and download the Excel file) for the 1st PCR to design your 1st PCR primer set. The instruction for how to use this tool is provided here.”
In this protocol, we show the PCR program when using Toyobo Co., Ltd. KOD®-Plus-Neo, Takara Bio Inc. PrimeSTAR®, PrimeSTAR® Max as PCR enzymes.
The structure of N-terminal Tag DNA template and the sequence of each part are shown in Figure 1 and Table 1. Primer design and PCR are more complicated than usual because of the long sequence added to the prepared ORF.
Figure 1. Structure of N-terminal Tag
Since PCR is carried out in two stages, 1st PCR and 2nd PCR, multiple primers are required. (Figure 2).
The Primer List (e.g His-tag insertion) is as shown in Table 2. Tag refferred in red (Table 2) can be change to other Tag .
Please note that Reverse primer is complementary to the sequence of Table 1.
In the case of non-Tag, please leave the Linker as it is.
The Linker sequence can be changed to an appropriate protease recognition sequence.
Figure 2. PCR of N-terminal tag DNA template
The structure of C-terminal Tag DNA template and the sequence of each part are shown in Figure 3 and Table 3.
Same as with N-terminal tag, Primer design and PCR are more complicated than usual because of the long sequence added to the prepared ORF
Figure 3. C-terminal tag DNA template
Since PCR is carried out in two stages, 1st PCR and 2nd PCR, multiple primers are required. (Figure 4).
The Primer List (i.e. His-tag insertion) is shown in Table 4. Tag in red (Table 3) can be changed to other Tag sequences.
Please note that Reverse primer is complementary to the sequence of (Table 3)
In the case of non-Tag, please leave the Linker as it is.
The Linker sequence can be changed to an appropriate protease recognition sequence.
Figure 4. PCR of C-terminal tag DNA template
Please check the PCR products after 1st PCR and 2nd PCR as follows.
【Example of checking PCR product for N-terminal tag】
N-terminal template 1
1st and 2nd PCR products
As a result of confirmation of PCR Product, if problem occurs, please review again in the following order
The composition and reaction program for one sample are shown in the table below.
It is also recommended to change the description program in consideration of the amplification efficiency etc.
After completion of 1st PCR reaction, check 1st PCR product (3 μL) using agarose gel electrophoresis.
In the following program, 1st-gene-specific-F and 1st-gene-specific-R indicate 1st-gene-specific-NF, 1st- gene-specifc-NR in the case of N-terminal tag transcription template, For C-terminal tag transcription template they are 1st-gene-specific-CF and 1st-gene-specific-CR respectively.
Composition and PCR program when using KOD-Plus-Neo
Composition and PCR program when using PrimeSTAR
Composition and PCR program when using PrimeSTAR Max
Please use 1st PCR Product in unpurified and unconcentrated state for 2nd PCR
After 2nd PCR reaction, check 2nd PCR product (3 μL) using agarose gel electrophoresis.
It is also recommended to change the description program in consideration of the amplification efficiency etc.
*Normally, 1 μL of 1st PCR product is used for 2nd PCR.
Each program of 2nd PCR
Following program is common for N-terminal tag and C-terminal tag.
Composition for N-terminal tag of 2nd PCR
Composition for C-terminal tag of 2nd PCR
*The standard for reaction time is 3 hours up to 6 hours at most.
Depending on the target protein, mRNA may be synthesized in large quantities in the transcription reaction, but when mRNA is subjected to the translation reaction in a large amount (40 µg or more), on the contrary, the protein yield drops extremely, or the full length protein can not be obtained. Therefore, We suggest you can measure the concentration, and in the case of 110 μL of translation solution in the next chapter, as mRNA solution. Please prepare and supply to 25 ~ 40 µg / 80 µL, preferably 30 ~ 35 µg / 80 µL of mRNA for translation per 110 µL sample size.
In the case of coexpression using heterologous mRNA such as heterodimer, for example, coexpression of protein with molecular weight A and molecular weight B, making the ratio of each mRNAs is A: B respectively and total amount of mRNA about 30 to 35 µg / 80 µL, improves multimer of them.
Prepare the translation reaction solution with 1.5 mL tube or PCR tube as follows.
Prepare reagents other than mRNA first and make it to room temperature, then added to the mRNA solution and resuspend gently so as not formed foam.
When mRNA concentration is unknown, it is suggested that whole mRNA synthesized by one transcription reaction is added to one translation reaction solution.
Please note that adding wheat germ extract more than 10 µL for 110 µL solution could decrease the yeild of translation product.
Scale-Up
In this protocol, 1 translation reaction is 110 µL, but scale-up is possible.
For scaleup, please increase the ratio of translation reaction system as it is.
e.g.) When translation reaction 110 µL is scaled up to 220 µL, the composition is
If you scaled up, the yield of the target protein may be improved.
e.g.) In the case one translation reaction of 110 µL have a yield 10 µg, one translation reaction of 550 µL improves the yield per reaction solution with the target yield, about 70 µg
Dialysis method can be used instead of simple batch method. In the dialysis method, insert the translation solution into the inside of the dialysis cup (sample solution), and use additional Amino acid mix as the dialysis external solution. Dialysis external solution is generally 20 times to 100 times the capacity.
When using Slide-A-Lyzer™ Mini dialysis tool (sample 0.1 mL, molecular weight cut off 3.5 K) manufactured by Thermo Fisher Scientific Inc.
Moreover, by drilling 9mm hole in 24-well titer plate can fit to dialysis cup, but if it is difficult to drill, use a floater to microtube.
Confirm the translation product by acrylamide gel electrophoresis as follows.
About the above procedure
Procedure 1. The purpose of fill up is to save the detection sample, to avoid overloading, and to solubilize the nonsolubilized compound. If it is Fill up up to three times, the buffer capacity of the reaction solution is maintained, but be careful when filling beyond this. If you do not need it, skip this step.
Procedure 2. Regarding precipitates, in addition to components derived from Wheat Germ, non - solubilized objects may also be included. If necessary, resuspend the precipitate with an appropriate Buffer to recover the desired product. If there is any doubt about the amount of target product recovered from the supernatant, this will grasp the solubilization rate and improvisation by optimizing the translation reaction solution.
Procedure 3. For electrophoresis samples, Western blot, silver staining, CBB staining, both are detected at approximately 1-2 µL. In detection other than immunostaining, Wheat Germ components are also detected, so loading large amounts of samples is not recommended.
The following is the result of synthesizing FLAG® fusion protein using this kit and detecting these proteins by western blot using anti-FLAG® antibody.
Next Generation Cell Free Protein Expression Kit (Wheat Germ) (CFPS700) are for research use only.
KOD® and KOD-Plus-Neo are registered trademarks or trademarks of Toyobo Co., Ltd.
PrimeSTAR® and PrimeSTAR® MAX are registered trademarks or trademarks of Takara Bio Inc. FLAG® is a registered trademark of Sigma-Aldrich Co. LLC. Slide-A-Lyzer ™ is a trademark of Thermo Fisher Scientific Inc.
Other company names and product names mentioned may be other trademarks and registered trademarks of each company.
The reagents, products, etc., are not always indicated by trademark indication (®, ™).
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