Proteomic analysis of the cellular response to a potent sensitiser unveils the dynamics of haptenation in living cells

被引:11
|
作者
Parkinson, Erika [1 ,2 ]
Aleksic, Maja [3 ]
Kukic, Predrag [3 ]
Bailey, Alistair [1 ,2 ]
Cubberley, Richard [3 ]
Skipp, Paul [1 ,2 ]
机构
[1] Univ Southampton, Biol Sci, Southampton SO17 1BJ, Hants, England
[2] Univ Southampton, Ctr Prote Res, Inst Life Sci, Southampton SO17 1BJ, Hants, England
[3] Unilever, Safety & Environm Assurance Ctr, Colworth Sci Pk, Sharnbrook MK44 1LQ, Beds, England
基金
英国生物技术与生命科学研究理事会;
关键词
Allergic contact dermatitis; Cellular response; DNCB; Proteomics; Sensitisation; Haptenation; RECONSTRUCTED HUMAN EPIDERMIS; SKIN SENSITIZATION; PROTEIN HAPTENATION; PEPTIDE REACTIVITY; CONTACT ALLERGENS; NMR-SPECTROSCOPY; PK(A) VALUES; MODEL; KERATINS; QUANTIFICATION;
D O I
10.1016/j.tox.2020.152603
中图分类号
R9 [药学];
学科分类号
1007 ;
摘要
Haptenation of model nucleophiles, representing the key MIE in skin sensitisation, is routinely measured in chemico to provide data for skin allergy risk assessment. Better understanding of the dynamics of haptenation in human skin could provide the metrics required to improve determination of sensitiser potency for risk assessment of chemicals. We have previously demonstrated the applicability and sensitivity of the dual stable isotope labelling approach to detect low level haptenation in complex mixtures of proteins. In the present study, we investigated haptenation in a relevant living cell model over time at a subtoxic concentration. DNCB, an extremely potent sensitiser, caused minimal changes in overall protein differential expression in HaCaT cells and haptenated approximately 0.25 % of all available nucleophiles when applied at a subtoxic concentration (10 mu M) for 4 h. The data shows that the maximum level of haptenation occurs at 2 h and that DNCB, whilst being a promiscuous hapten, shows a preference for Cys residues, despite the considerably higher concentration of amine-based nucleophiles. Although a proportion of highly abundant proteins were haptenated, numerous haptenated sites were also detected on low abundant proteins. Certain proteins were modified at residues buried deep inside the protein structure which are less accessible to haptenation compared with surface exposed nucleophiles. The microenvironment of the buried residues may be a result of several factors influencing the reactivity of both the target nucleophile and the hapten.
引用
收藏
页数:10
相关论文
共 50 条
  • [1] Proteomic analysis of cellular response to microcystin in human amnion FL cells
    Fu, WY
    Xu, LH
    Yu, YN
    JOURNAL OF PROTEOME RESEARCH, 2005, 4 (06) : 2207 - 2215
  • [3] Integrated transcriptional analysis unveils the dynamics of cellular differentiation in the developing mouse hippocampus
    Iacono, Giovanni
    Benevento, Marco
    Dubos, Aline
    Herault, Yann
    van Bokhoven, Hans
    Kasri, Nael Nadif
    Stunnenberg, Hendrik G.
    SCIENTIFIC REPORTS, 2017, 7
  • [4] Integrated transcriptional analysis unveils the dynamics of cellular differentiation in the developing mouse hippocampus
    Giovanni Iacono
    Marco Benevento
    Aline Dubos
    Yann Herault
    Hans van Bokhoven
    Nael Nadif Kasri
    Hendrik G. Stunnenberg
    Scientific Reports, 7
  • [5] Exploring the effects of vanillin and divanillin on murine osteosarcoma cells: evaluation of cellular response and proteomic analysis
    de Oliveira, Gabriela Silva Neubern
    Furlaneto, Camila Giatti
    Tokuhara, Cintia Kazuko
    Ventura, Talita Mendes Oliveira
    Pessoa, Adriano de Souza
    Fakhoury, Vanessa Svizzero
    Pagnan, Ana Ligia
    Inacio, Kelly Karina
    Sanches, Mariana Liessa Rovis
    Buzalaf, Marilia Afonso Rabelo
    Ximenes, Valdecir Farias
    de Oliveira, Rodrigo Cardoso
    NATURAL PRODUCT RESEARCH, 2024,
  • [6] Direct digestion of proteins in living cells into peptides for proteomic analysis
    Qi Chen
    Guoquan Yan
    Mingxia Gao
    Xiangmin Zhang
    Analytical and Bioanalytical Chemistry, 2015, 407 : 1027 - 1032
  • [7] Direct digestion of proteins in living cells into peptides for proteomic analysis
    Chen, Qi
    Yan, Guoquan
    Gao, Mingxia
    Zhang, Xiangmin
    ANALYTICAL AND BIOANALYTICAL CHEMISTRY, 2015, 407 (03) : 1027 - 1032
  • [8] Comparative proteomic analysis of cellular response of human airway epithelial cells (A549) to benzo(a)pyrene
    Min, Lingfeng
    He, Shuya
    Chen, Qiong
    Peng, Fang
    Peng, Hongbing
    Xie, Mingxuan
    TOXICOLOGY MECHANISMS AND METHODS, 2011, 21 (05): : 374 - 382
  • [9] Proteomic analysis of the response of human lung cells to uranium
    Malard, V.
    Prat, O.
    Darrouzet, E.
    Berenguer, F.
    Sage, N.
    Quemeneur, E.
    MOLECULAR & CELLULAR PROTEOMICS, 2005, 4 (08) : S222 - S222
  • [10] Proteomic analysis of cellular response to osmotic stress in thick ascending limb of Henle's loop (TALH) cells
    Dihazi, H
    Asif, AR
    Agarwal, NK
    Doncheva, Y
    Müller, GA
    MOLECULAR & CELLULAR PROTEOMICS, 2005, 4 (10) : 1445 - 1458