染色质
染色质免疫沉淀
芯片对芯片
组蛋白
生物
免疫沉淀
增强子
计算生物学
芯片排序
嘉雅宠物
基因
染色质重塑
遗传学
基因表达
发起人
作者
Paloma Cejas,Lewyn Li,Nicholas K. O’Neill,Melissa Duarte,Prakash K. Rao,Michaela Bowden,Chensheng W. Zhou,Marta Mendiola,Emilio Burgos,Jaime Feliú,Juan Moreno‐Rubio,Héctor Guadalajara,Víctor Moreno,Damián García‐Olmo,Joaquim Bellmunt,Stephanie A. Mullane,Michelle S. Hirsch,Christopher J. Sweeney,Andrea Richardson,X. Shirley Liu
出处
期刊:Nature Medicine
[Nature Portfolio]
日期:2016-04-25
卷期号:22 (6): 685-691
被引量:76
摘要
Extensive cross-linking introduced during routine tissue fixation of clinical pathology specimens severely hampers chromatin immunoprecipitation followed by next-generation sequencing (ChIP-seq) analysis from archived tissue samples. This limits the ability to study the epigenomes of valuable, clinically annotated tissue resources. Here we describe fixed-tissue chromatin immunoprecipitation sequencing (FiT-seq), a method that enables reliable extraction of soluble chromatin from formalin-fixed paraffin-embedded (FFPE) tissue samples for accurate detection of histone marks. We demonstrate that FiT-seq data from FFPE specimens are concordant with ChIP-seq data from fresh-frozen samples of the same tumors. By using multiple histone marks, we generate chromatin-state maps and identify cis-regulatory elements in clinical samples from various tumor types that can readily allow us to distinguish between cancers by the tissue of origin. Tumor-specific enhancers and superenhancers that are elucidated by FiT-seq analysis correlate with known oncogenic drivers in different tissues and can assist in the understanding of how chromatin states affect gene regulation.
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