Optimized ChIP-seq method facilitates transcription factor profiling in human tumors

Author:

Singh Abhishek A12,Schuurman Karianne1,Nevedomskaya Ekaterina12,Stelloo Suzan1,Linder Simon1,Droog Marjolein1,Kim Yongsoo1,Sanders Joyce3,van der Poel Henk4,Bergman Andries M56,Wessels Lodewyk FA27,Zwart Wilbert18ORCID

Affiliation:

1. Divisions of Oncogenomics, Oncode Institute, Netherlands Cancer Institute, Amsterdam, the Netherlands

2. Molecular Carcinogenesis, Oncode Institute, Netherlands Cancer Institute, Amsterdam, the Netherlands

3. Department of Pathology, Netherlands Cancer Institute, Amsterdam, the Netherlands

4. Department of Urology, Netherlands Cancer Institute, Amsterdam, the Netherlands

5. Division of Oncogenomics, Netherlands Cancer Institute, Amsterdam, the Netherlands

6. Division of Medical Oncology, Netherlands Cancer Institute, Amsterdam, the Netherlands

7. Faculty of Electrical Engineering, Mathematics, and Computer Science, Delft University of Technology, Delft, the Netherlands

8. Laboratory of Chemical Biology and Institute for Complex Molecular Systems, Department of Biomedical Engineering, Eindhoven University of Technology, Eindhoven, the Netherlands

Abstract

Chromatin immunoprecipitation (ChIP)-seq analyses of transcription factors in clinical specimens are challenging due to the technical limitations and low quantities of starting material, often resulting in low enrichments and poor signal-to-noise ratio. Here, we present an optimized protocol for transcription factor ChIP-seq analyses in human tissue, yielding an ∼100% success rate for all transcription factors analyzed. As proof of concept and to illustrate general applicability of the approach, human tissue from the breast, prostate, and endometrial cancers were analyzed. In addition to standard formaldehyde fixation, disuccinimidyl glutarate was included in the procedure, greatly increasing data quality. To illustrate the sensitivity of the optimized protocol, we provide high-quality ChIP-seq data for three independent factors (AR, FOXA1, and H3K27ac) from a single core needle prostate cancer biopsy specimen. In summary, double-cross-linking strongly improved transcription factor ChIP-seq quality on human tumor samples, further facilitating and enhancing translational research on limited amounts of tissue.

Funder

Dutch Cancer Society KWF

KWF/Alpe d’HuZes Bas Mulder AwardDutch Scientific Organization NWO VIDI

Publisher

Life Science Alliance, LLC

Subject

Health, Toxicology and Mutagenesis,Plant Science,Biochemistry, Genetics and Molecular Biology (miscellaneous),Ecology

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