Quantitative Assessment of Chromatin Immunoprecipitation Grade Antibodies Directed against Histone Modifications Reveals Patterns of Co-occurring Marks on Histone Protein Molecules

被引:55
作者
Peach, Sally E. [1 ]
Rudomin, Emily L. [1 ]
Udeshi, Namrata D. [1 ]
Carr, Steven A. [1 ]
Jaffe, Jacob D. [1 ]
机构
[1] Broad Inst, Cambridge, MA 02142 USA
基金
美国国家卫生研究院;
关键词
FORMALDEHYDE; METHYLATION; DISCOVERY; MUTATIONS; INVIVO; EZH2; H3;
D O I
10.1074/mcp.M111.015941
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
The defining step in most chromatin immunoprecipitation (ChIP) assays is the use of an antibody to enrich for a particular protein or histone modification state associated with segments of chromatin. The specificity of the antibody is critical to the interpretation of the experiment, yet this property is rarely reported. Here, we present a quantitative method using mass spectrometry to characterize the specificity of key histone H3 modification-targeting antibodies that have previously been used to characterize the "histone code." We further extend the use of these antibody reagents to the observation of long range correlations among disparate histone modifications. Using purified human histones representing the mixture of chromatin states present in living cells, we were able to quantify the degree of target enrichment and the specificity of several commonly used, commercially available ChIP grade antibodies. We found significant differences in enrichment efficiency among various reagents directed against four frequently studied chromatin marks: H3K4me2, H3K4me3, H3K9me3, and H3K27me3. For some antibodies, we also detected significant off target enrichment of alternate modifications at the same site (i.e., enrichment of H3K4me2 by an antibody directed against H3K4me3). Through cluster analysis, we were able to recognize patterns of co-enrichment of marks at different sites on the same histone protein. Surprisingly, these co-enrichments corresponded well to "canonical" chromatin states that are exemplary of activated and repressed regions of chromatin. Altogether, our findings suggest that 1) the results of ChIP experiments need to be evaluated with caution given the potential for cross-reactivity of the commonly used histone modification recognizing antibodies, 2) multiple marks with consistent biological interpretation exist on the same histone protein molecule, and 3) some components of the histone code may be transduced on single proteins in living cells. Molecular & Cellular Proteomics 11: 10.1074/mcp.M111.015941, 128-137, 2012.
引用
收藏
页码:128 / 137
页数:10
相关论文
共 24 条
  • [1] High-resolution profiling of histone methylations in the human genome
    Barski, Artern
    Cuddapah, Suresh
    Cui, Kairong
    Roh, Tae-Young
    Schones, Dustin E.
    Wang, Zhibin
    Wei, Gang
    Chepelev, Iouri
    Zhao, Keji
    [J]. CELL, 2007, 129 (04) : 823 - 837
  • [2] A bivalent chromatin structure marks key developmental genes in embryonic stem cells
    Bernstein, BE
    Mikkelsen, TS
    Xie, XH
    Kamal, M
    Huebert, DJ
    Cuff, J
    Fry, B
    Meissner, A
    Wernig, M
    Plath, K
    Jaenisch, R
    Wagschal, A
    Feil, R
    Schreiber, SL
    Lander, ES
    [J]. CELL, 2006, 125 (02) : 315 - 326
  • [3] Identification and analysis of functional elements in 1% of the human genome by the ENCODE pilot project
    Birney, Ewan
    Stamatoyannopoulos, John A.
    Dutta, Anindya
    Guigo, Roderic
    Gingeras, Thomas R.
    Margulies, Elliott H.
    Weng, Zhiping
    Snyder, Michael
    Dermitzakis, Emmanouil T.
    Stamatoyannopoulos, John A.
    Thurman, Robert E.
    Kuehn, Michael S.
    Taylor, Christopher M.
    Neph, Shane
    Koch, Christoph M.
    Asthana, Saurabh
    Malhotra, Ankit
    Adzhubei, Ivan
    Greenbaum, Jason A.
    Andrews, Robert M.
    Flicek, Paul
    Boyle, Patrick J.
    Cao, Hua
    Carter, Nigel P.
    Clelland, Gayle K.
    Davis, Sean
    Day, Nathan
    Dhami, Pawandeep
    Dillon, Shane C.
    Dorschner, Michael O.
    Fiegler, Heike
    Giresi, Paul G.
    Goldy, Jeff
    Hawrylycz, Michael
    Haydock, Andrew
    Humbert, Richard
    James, Keith D.
    Johnson, Brett E.
    Johnson, Ericka M.
    Frum, Tristan T.
    Rosenzweig, Elizabeth R.
    Karnani, Neerja
    Lee, Kirsten
    Lefebvre, Gregory C.
    Navas, Patrick A.
    Neri, Fidencio
    Parker, Stephen C. J.
    Sabo, Peter J.
    Sandstrom, Richard
    Shafer, Anthony
    [J]. NATURE, 2007, 447 (7146) : 799 - 816
  • [4] Polycomb group proteins: navigators of lineage pathways led astray in cancer
    Bracken, Adrian P.
    Helin, Kristian
    [J]. NATURE REVIEWS CANCER, 2009, 9 (11) : 773 - 784
  • [5] Quantitative Proteomics for Epigenetics
    Eberl, H. Christian
    Mann, Matthias
    Vermeulen, Michiel
    [J]. CHEMBIOCHEM, 2011, 12 (02) : 224 - 234
  • [6] Discovery and characterization of chromatin states for systematic annotation of the human genome
    Ernst, Jason
    Kellis, Manolis
    [J]. NATURE BIOTECHNOLOGY, 2010, 28 (08) : 817 - U94
  • [7] Inactivating mutations of the histone methyltransferase gene EZH2 in myeloid disorders
    Ernst, Thomas
    Chase, Andrew J.
    Score, Joannah
    Hidalgo-Curtis, Claire E.
    Bryant, Catherine
    Jones, Amy V.
    Waghorn, Katherine
    Zoi, Katerina
    Ross, Fiona M.
    Reiter, Andreas
    Hochhaus, Andreas
    Drexler, Hans G.
    Duncombe, Andrew
    Cervantes, Francisco
    Oscier, David
    Boultwood, Jacqueline
    Grand, Francis H.
    Cross, Nicholas C. P.
    [J]. NATURE GENETICS, 2010, 42 (08) : 722 - U109
  • [8] Chemical derivatization of histones for facilitated analysis by mass spectrometry
    Garcia, Benjamin A.
    Mollah, Sahana
    Ueberheide, Beatrix M.
    Busby, Scott A.
    Muratore, Tara L.
    Shabanowitz, Jeffrey
    Hunt, Donald F.
    [J]. NATURE PROTOCOLS, 2007, 2 (04) : 933 - 938
  • [9] Pervasive combinatorial modification of histone H3 in human cells
    Garcia, Benjamin A.
    Pesavento, James J.
    Mizzen, Craig A.
    Kelleher, Neil L.
    [J]. NATURE METHODS, 2007, 4 (06) : 487 - 489
  • [10] Accurate Inclusion Mass Screening A BRIDGE FROM UNBIASED DISCOVERY TO TARGETED ASSAY DEVELOPMENT FOR BIOMARKER VERIFICATION
    Jaffe, Jacob D.
    Keshishian, Hasmik
    Chang, Betty
    Addona, Theresa A.
    Gillette, Michael A.
    Carr, Steven A.
    [J]. MOLECULAR & CELLULAR PROTEOMICS, 2008, 7 (10) : 1952 - 1962