<li id="omoqo"></li>
  • <noscript id="omoqo"><kbd id="omoqo"></kbd></noscript>
  • <td id="omoqo"></td>
  • <option id="omoqo"><noscript id="omoqo"></noscript></option>
  • <noscript id="omoqo"><source id="omoqo"></source></noscript>
  • 發布時間:2019-04-22 23:40 原文鏈接: Bradford–ProteinDetermination

    Bradford – Protein Determination

    Introduction

    A rapid and accurate method for the estimation of protein concentration. The technique is simpler, faster than the Lowry method, and is subject to less interference. Bradford, M. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Anal. Biochem. (1976) 72, 248-254. 
    The Coomassie blue G250 dye appears to bind most readily to arginyl and lysyl residues of proteins (not to the free amino acids). This specificity can lead to variation in the response of the assay to different proteins, which is the main disadvantage of the method. 
      
     

    Reagents & Solution

    Bovine Serum Albumine (BSA) 10X: 1mg/ml H2O. Keep –20C in aliquots. 
    BSA 1X (0.1mg/ml): dilute BSA 10X in the buffer of your sample. 
    Bradford solution from 
    Bio Rad Protein Assay. Kep in dark at 4C. (Do not use directly from the bottle. Transfer the volume you are going to use to another recipient).

    Mini: for 500μl determination in 1.5ml plastic tubes.


     

    BSA 100 μg/ml (μl)
    H2O ((μl)
    Bradford (μl)
    total μg BSA
    0
    400
    100
    0.0
    10
    390
    100
    1.0
    20
    380
    100
    2.0
    35
    375
    100
    3.5
    50
    350
    100
    5.0
    X ml of sample
    up to 400
    100
    X

    Mix and wait 2min then read within 60 min at OD590nm. It is preferable to use disposable polystyrene microcuvettes that are discarded after a series of absorbance measurements.  Plot OD590nm versus μg BSA standard. Try to use a sample concentration with OD590nm near the middle of the curve. Prepare triplicates of your sample, or use different points. That is, use several dilutions that you estimate will be inside the linearity of the curve, or prepare triplicates of your sample that you estimate to be in the middle of the curve. The linearity of the assay can be improved by plotting the ratio of absorbances at 595 and 465 nm. 
     


    Elisa plates: for 125μl determination in 96 microwell plates.

    BSA 100 μg/ml (μl)
    H2O (μl)
    Bradford (μl)
    total μg BSA
    0
    100
    25
    0.0
    3
    97
    25
    0.3
    6
    94
    25
    0.6
    9
    91
    25
    0.9
    12
    88
    25
    1.2
    X ml of sample
    up to 100
    25
    X

    Mix and read immediately at OD590nm. Plot OD590nm vs. ug BSA. Try to use a sample volume with OD590nm near the middle of the curve.Prepare triplicates of your sample, or use different points. 
     

    Home made reagent:

    Dissolve 100 mg of Coomassie blue G250 in 50 mL of 95% ethanol. Mix with 100 ml of 85% phosphoric acid and made up to 1 L with distilled water. Filter through Whatman No. 1 filter paper and then stored in an amber bottle at room temperature. It is stable for several weeks. Filter before use if there is any dye precipitation. 
      
      

    Effects of Common Reagents on the Bradford Assay


     

    Absorbance at 600 nm  
    Compound
    Blank
    5 mg IgG
    Control
    0.005
    0.264
    0.02% SDS
    0.003
    0.250
    0.1% SDS
    0.042
    0.059
    0.1% Triton
    0.000
    0.278
    0.5% Triton
    0.051
    0.311
    1M 2-Mercaptoethanol
    0.006
    0.273
    1M Sucrose
    0.008
    0.261
    4M Urea
    0.008
    0.261
    4M NaCl
    0.015
    0.207
    Glycerol
    0.014
    0.238
    0.1M HEPES, pH 7.0
    0.003
    0.268
    0.1M Tris, pH 7.5
    0.008
    0.261
    0.1M Citrate, pH 5.0
    0.015
    0.249
    10 mM EDTA
    0.007
    0.235
    M (NH 4) 2SO 4
    0.002
    0.269

    Data were obtained by mixing 5 uL of sample with 5 uL of the specified compound before adding 200 uL of dye-reagent. According to Stoscheck, C. Increased uniformity in the response of the Coomassie blue protein assay to different proteins. Anal. Biochem. (1990) 184, 111-116. 


    相關文章

    ProteinCell:病毒感染時翻譯后修飾乙酰化的動態調控

    天然免疫應答是機體應對病原微生物入侵的第一道防線,在殺傷病原微生物、清除感染細胞和維持體內穩態等方面發揮關鍵作用。蛋白質翻譯后修飾(proteinpost-translationalmodificat......

    Protein&Cell丨劉平生團隊發現脂滴和線粒體相互錨定接觸

    脂滴是一種具有中性脂質核心的膜性細胞器。與其他膜性細胞器的根本區別就是脂滴由單分子磷脂膜包被,而其他膜性細胞器由雙分子磷脂膜與外界隔離。脂滴最早由列文虎克于1674年在牛奶里發現,是人類最早發現的膜性......

    SCIEX攜手ProteinMetrics公司實現生物制藥AI及數據自動化

    分析測試百科網訊隨著生命科學產業的數字化轉型和向精密醫學的推進,集成以增強SCIEX高分辨率精確大眾平臺的快速數據處理能力繼續推動數據需求。生命科學分析技術領域專業企業——SCIEX宣布與蛋白質特性質......

    東曹亮相2016北京色譜年會TSKgelProteinA5PW色譜柱備受關注

    分析測試百科網訊2016年12月2日,2016年北京色譜年會在北京日壇賓館舉辦,本屆色譜年會的主題是“色譜與健康”,各位專家帶來了生命過程、疾病診斷與治療、環境影響、情感因素、激素與藥物等方面色譜技術......

    重磅!納微科技ProteinA親和層析介質新品發布

    新春伊始,馬力全開!納微科技為您重磅推出ProteinA親和層析介質新品,讓您領略納微新一代層析介質的超凡魅力!納微科研人員經過多年的積累,利用自主知識產權研發出新一代ProteinA親和層析介質Un......

    BioTechne以3億美元收購ProteinSimple公司

    2014年6月17日,Bio-Techne宣布以3億美元現金收購ProteinSimple公司。此次收購并不受任何融資不時之需。該交易將通過現金及信新的循環信用額度設施,Bio-Techne預計將收購......

    <li id="omoqo"></li>
  • <noscript id="omoqo"><kbd id="omoqo"></kbd></noscript>
  • <td id="omoqo"></td>
  • <option id="omoqo"><noscript id="omoqo"></noscript></option>
  • <noscript id="omoqo"><source id="omoqo"></source></noscript>
  • 1v3多肉多车高校生活的玩视频