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WB实验服务

时间:2016-01-03 12:48:28作者:admin文章来源:浏览:
Western blotting (WB)是在蛋白质凝胶电泳和固相免疫测定基础上发展起来的蛋白质检测技术,是将SDS-PAGE电泳分离的蛋白质样本转移到固相
Western blotting (WB)是在蛋白质凝胶电泳和固相免疫测定基础上发展起来的蛋白质检测技术,是将SDS-PAGE电泳分离的蛋白质样本转移到固相载体(硝酸纤维素NC膜,PVDF膜)上,以固相载体上的蛋白质作为抗原,与合适的抗体结合,再与酶标记的二抗结合,经过底物显色或放射自显影对蛋白质进行鉴定及定量的分析技术,其检测蛋白质的灵敏度为ng级,该技术广泛应用于医学、生物学研究领域。

 

Preparation of lysate from cell culture

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  1. Place the cell culture dish on ice and wash the cells with ice-cold PBS.
  2. Aspirate the PBS, then add ice-cold lysis buffer (1 mL per 107 cells/100 mm dish/150 cm2 flask; 0.5 mL per 5x106 cells/60 mm dish/75 cm2 flask).
  3. Scrape adherent cells off the dish using a cold plastic cell scraper, then gently transfer the cell suspension into a pre-cooled microcentrifuge tube. Alternatively cells can be trypsinized and washed with PBS prior to resuspension in lysis buffer in a microcentrifuge tube.
  4. Maintain constant agitation for 30 min at 4°C.
  5. Centrifuge in a microcentrifuge at 4°C. You may have to vary the centrifugation force and time depending on the cell type; a guideline is 20 min at 12,000 rpm but this must be determined for your experiment (e.g. leukocytes need a very light centrifugation).
  6. Gently remove the tubes from the centrifuge and place on ice, aspirate the supernatant and place in a fresh tube kept on ice, and discard the pellet.

 
Preparation of lysate from tissues

  1. Dissect the tissue of interest with clean tools, on ice preferably, and as quickly as possible to prevent degradation by proteases.
  2. Place the tissue in round-bottom microcentrifuge tubes or Eppendorf tubes and immerse in liquid nitrogen to snap freeze. Store samples at -80°C for later use or keep on ice for immediate homogenization. For a ~5 mg piece of tissue, add ~300 µL of ice cold lysis buffer rapidly to the tube, homogenize with an electric homogenizer, rinse the blade twice with another 2x200 µL lysis buffer, then maintain constant agitation for 2 h at 4°C (e.g. place on an orbital shaker in the fridge). Volumes of lysis buffer must be determined in relation to the amount of tissue present (protein extract should not be too diluted to avoid loss of protein and large volumes of samples to be loaded onto gels. The minimum concentration is 0.1 mg/mL, optimal concentration is 1–5 mg/mL.
  3. Centrifuge for 20 min at 12,000 rpm at 4°C in a microcentrifuge. Gently remove the tubes from the centrifuge and place on ice, aspirate the supernatant and place in a fresh tube kept on ice; discard the pellet. 

 


 


Sample preparation

  1. Remove a small volume of lysate to perform a protein quantification assay. Determine the protein concentration for each cell lysate.
  2. Determine how much protein to load and add an equal volume of 2x Laemmli sample buffer. 



    We recommend to reduce and denature the samples using the following method unless the online antibody datasheet indicates that non-reducing and non-denaturing conditions should be used.
  3. ​To reduce and denature: boil each cell lysate in sample buffer at 100°C for 5 min. Lysates can be aliquoted and stored at -20°C for future use.

 


 


Loading and running the gel

  1. ​​Load equal amounts of protein into the wells of the SDS-PAGE gel, along with molecular weight marker. Load 20-30 µg of total protein from cell lysate or tissue homogenate, or 10-100 ng of purified protein.
  2. Run the gel for 1–2 h at 100 V.


The time and voltage may require optimization. We recommend following the manufacturer's instructions. A reducing gel should be used unless non-reducing conditions are recommended on the antibody datasheet.



Gel percentage dependent on size of protein:

Protein size  Gel percentage
4-40 kDa 20%
12-45 kDa 15%
10-70 kDa 12.5%
15-100 kDa 10% 
25-200 kDa 8%

Gradient gels can also be used.



    Transferring the protein from the gel to the membrane

    The membrane can be either nitrocellulose or PVDF; each has its advantages. Activate PVDF with methanol for 1 min and rinse with transfer buffer before preparing the stack. The time and voltage of transfer may require some optimization. We recommend following the manufacturer's instructions. Transfer of proteins to the membrane can be checked using Ponceau S staining before the blocking step.

    Prepare the stack as follows:

    \

     

    1. Block the membrane for 1 h at room temperature or overnight at 4°C using blocking buffer.
    2. Incubate the membrane with appropriate dilutions of primary antibody in blocking buffer. We recommend overnight incubation at 4°C; other conditions can be optimized.
    3. Wash the membrane in three washes of TBST, 5 min each.
    4. Incubate the membrane with the recommended dilution of conjugated secondary antibody in blocking buffer at room temperature for 1 h.
    5. Wash the membrane in three washes of TBST, 5 min each.
    6. For signal development, follow the kit manufacturer's recommendations. Remove excess reagent and cover the membrane in transparent plastic wrap.
    7. Acquire image using darkroom development techniques for chemiluminescence, or normal image scanning methods for colorimetric detection.
     

     

     



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