Genome-Wide Chromatin Analysis of FFPE Tissues Using a Dual-Arm Robot with Clinical Potential

Author:

Kaneko SyuzoORCID,Mitsuyama ToutaiORCID,Shiraishi KouyaORCID,Ikawa Noriko,Shozu KantoORCID,Dozen AiORCID,Machino Hidenori,Asada KenORCID,Komatsu MasaakiORCID,Kukita Asako,Sone Kenbun,Yoshida Hiroshi,Motoi NorikoORCID,Hayami Shinya,Yoneoka Yutaka,Kato Tomoyasu,Kohno Takashi,Natsume Toru,Keudell Gottfried vonORCID,Saloura Vassiliki,Yamaue Hiroki,Hamamoto Ryuji

Abstract

Although chromatin immunoprecipitation and next-generation sequencing (ChIP-seq) using formalin-fixed paraffin-embedded tissue (FFPE) has been reported, it remained elusive whether they retained accurate transcription factor binding. Here, we developed a method to identify the binding sites of the insulator transcription factor CTCF and the genome-wide distribution of histone modifications involved in transcriptional activation. Importantly, we provide evidence that the ChIP-seq datasets obtained from FFPE samples are similar to or even better than the data for corresponding fresh-frozen samples, indicating that FFPE samples are compatible with ChIP-seq analysis. H3K27ac ChIP-seq analyses of 69 FFPE samples using a dual-arm robot revealed that driver mutations in EGFR were distinguishable from pan-negative cases and were relatively homogeneous as a group in lung adenocarcinomas. Thus, our results demonstrate that FFPE samples are an important source for epigenomic research, enabling the study of histone modifications, nuclear chromatin structure, and clinical data.

Funder

JST CREST, Japan

The Takeda Science Foundation

Publisher

MDPI AG

Subject

Cancer Research,Oncology

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