Modifications in Trypsin Digestion Protocol for Increasing the Efficiency and Coverage

被引:7
|
作者
Syal, Kirtimaan [1 ]
Tadala, Raghu [1 ]
机构
[1] Indian Inst Sci, Mol Biophys Unit, Bangalore 560012, Karnataka, India
来源
PROTEIN AND PEPTIDE LETTERS | 2015年 / 22卷 / 04期
关键词
Bottom-up approach; hydrophobicity; isoelectric point; post-translational modifications; staining/de-staining; trypsin digestion; SPECTROMETRY-BASED PROTEOMICS; MASS-SPECTROMETRY; POSTTRANSLATIONAL MODIFICATIONS; TRYPTIC DIGESTION; TOP-DOWN; ENZYMATIC DIGESTION; SEQUENCE COVERAGE; PROTEIN-ANALYSIS; IDENTIFICATION; QUANTIFICATION;
D O I
10.2174/0929866522666150327132415
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Standard trypsin digestion protocol of proteins followed by MALDI-MS analysis has been realized as an important tool for the identification and characterization of proteins. In this article, we proposed the elimination of the step of 'staining/de-staining of gel pieces' in in-gel digestion protocol in order to improve the efficiency of trypsin digestion. Coomassie dye is known to interfere with digestion of proteins by trypsin and the procedure of staining-de-staining could result in loss of photoaffinity probe, post translational modifications and catalytic activities of enzymes. Further, we studied parameters like hydrophobicity and isoelectric point, and attempted to quantitatively relate it to the efficiency of trypsin digestion. We suggest that properties of proteins should be considered and trypsin digestion protocol should be appropriately modified as per sequence and other information.
引用
收藏
页码:372 / 378
页数:7
相关论文
共 50 条
  • [41] Increasing immunization coverage
    DuPlessis, HM
    Bell, WC
    Boulter, SC
    Cora-Bramble, D
    Feild, C
    Handal, GA
    Katcher, ML
    Rushton, FE
    Wood, DL
    Lavin, A
    Melinkovich, P
    Belardo, JH
    Rodewald, LE
    Varrasso, DA
    Mejia, CA
    Yasuda, KE
    Hammer, LD
    Harbaugh, NR
    Itkin, PG
    Jakubec, PJ
    Walker, RD
    France, FL
    Herr, TJ
    Lieberthal, AS
    Swanson, J
    Grimm, KT
    Bien, AA
    Davis, T
    Price, WS
    Sebring, RH
    PEDIATRICS, 2003, 112 (04) : 993 - 996
  • [42] A Rapid and Robust Protocol for Disulfide Bond Identification and Validation Using Pepsin/Trypsin Digestion and Spectrum Identification Machine
    Li, Hong
    Cui, Chuanlong
    FREE RADICAL BIOLOGY AND MEDICINE, 2019, 145 : S29 - S29
  • [43] Chloroform/Methanol Protein Extraction and In-solution Trypsin Digestion Protocol for Bottom-up Proteomics Analysis
    Puopolo, Tess
    Seeram, Navindra P.
    Liu, Chang
    BIO-PROTOCOL, 2024, 14 (16):
  • [44] MODIFICATIONS EXTEND COVERAGE OF ANALYZER
    BENET, JA
    MICROWAVES & RF, 1984, 23 (09) : 96 - &
  • [45] Coverage Efficiency-Based Broadcast Protocol for Asynchronous Wireless Sensor Networks
    Zhang, Xinming
    Yan, Fan
    Li, Chao
    Ding, Qing
    IEEE WIRELESS COMMUNICATIONS LETTERS, 2016, 5 (01) : 76 - 79
  • [46] "Locked onto the Target": Increasing the Efficiency of Antagomirzymes Using Locked Nucleic Acid Modifications
    Kaur, Harleen
    Scaria, Vinod
    Maiti, Souvik
    BIOCHEMISTRY, 2010, 49 (44) : 9449 - 9456
  • [47] Proteomics Using Protease Alternatives to Trypsin Benefits from Sequential Digestion with Trypsin
    Dau, Therese
    Bartolomucci, Giulia
    Rappsilber, Juri
    ANALYTICAL CHEMISTRY, 2020, 92 (14) : 9523 - 9527
  • [48] Crystalline trypsin V. Kinetics of the digestion of proteins with crude and crystalline trypsin
    Northrop, JH
    JOURNAL OF GENERAL PHYSIOLOGY, 1932, 16 (02): : 339 - 348
  • [49] KINETIC STUDIES ON DIGESTION OF FIBRINOGEN BY PLASMIN AND TRYPSIN
    BECK, EA
    JACKSON, DP
    FEDERATION PROCEEDINGS, 1965, 24 (2P1) : 386 - &
  • [50] EFFECT OF TRYPSIN DIGESTION ON DRY WEIGHTS OF NUCLEI
    JOBST, K
    KELLERMEYER, N
    ACTA HISTOCHEMICA, 1967, 28 (01) : 183 - +