Local states of chromatin compaction at transcription start sites control transcription levels

Author:

Ishihara Satoru1ORCID,Sasagawa Yohei23,Kameda Takeru24ORCID,Yamashita Hayato5ORCID,Umeda Mana2,Kotomura Naoe1,Abe Masayuki5,Shimono Yohei1,Nikaido Itoshi236

Affiliation:

1. Fujita Health University School of Medicine, Toyoake, Aichi 470-1192, Japan

2. Laboratory for Bioinformatics Research, RIKEN Center for Biosystems Dynamics Research, Wako, Saitama 351-0198, Japan

3. Functional Genome Informatics, Medical Research Institute, Tokyo Medical and Dental University, Bunkyo-ku, Tokyo 113-8510, Japan

4. Graduate School of Science, Hiroshima University, Higashi-Hiroshima, Hiroshima 739-8526, Japan

5. Graduate School of Engineering Science, Osaka University, Toyonaka, Osaka 560-8531, Japan

6. Master's/Doctoral Program in Life Science Innovation (Bioinformatics), Degree Programs in Systems and Information Engineering, Graduate School of Science and Technology, University of Tsukuba, Wako, Saitama 351-0198, Japan

Abstract

Abstract The ‘open’ and ‘compact’ regions of chromatin are considered to be regions of active and silent transcription, respectively. However, individual genes produce transcripts at different levels, suggesting that transcription output does not depend on the simple open-compact conversion of chromatin, but on structural variations in chromatin itself, which so far have remained elusive. In this study, weakly crosslinked chromatin was subjected to sedimentation velocity centrifugation, which fractionated the chromatin according to its degree of compaction. Open chromatin remained in upper fractions, while compact chromatin sedimented to lower fractions depending on the level of nucleosome assembly. Although nucleosomes were evenly detected in all fractions, histone H1 was more highly enriched in the lower fractions. H1 was found to self-associate and crosslinked to histone H3, suggesting that H1 bound to H3 interacts with another H1 in an adjacent nucleosome to form compact chromatin. Genome-wide analyses revealed that nearly the entire genome consists of compact chromatin without differences in compaction between repeat and non-repeat sequences; however, active transcription start sites (TSSs) were rarely found in compact chromatin. Considering the inverse correlation between chromatin compaction and RNA polymerase binding at TSSs, it appears that local states of chromatin compaction determine transcription levels.

Funder

Japan Agency for Medical Research and Development

Fujita Health University

Japan Society for the Promotion of Science

Multidisciplinary Research Laboratory System of Osaka University

Osaka University

Publisher

Oxford University Press (OUP)

Subject

Genetics

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