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research article

Cooperation between bHLH transcription factors and histones for DNA access

Michael, Alicia K.
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Stoos, Lisa
•
Crosby, Priya
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July 5, 2023
Nature

The basic helix-loop-helix (bHLH) family of transcription factors recognizes DNA motifs known as E-boxes (CANNTG) and includes 108 members(1). Here we investigate how chromatinized E-boxes are engaged by two structurally diverse bHLH proteins: the proto-oncogene MYC-MAX and the circadian transcription factor CLOCK-BMAL1 (refs. 2,3). Both transcription factors bind to E-boxes preferentially near the nucleosomal entry-exit sites. Structural studies with engineered or native nucleosome sequences show that MYC-MAX or CLOCK-BMAL1 triggers the release of DNA from histones to gain access. Atop the H2A-H2B acidic patch(4), the CLOCK-BMAL1 Per-Arnt-Sim (PAS) dimerization domains engage the histone octamer disc. Binding of tandem E-boxes(5-7) at endogenous DNA sequences occurs through direct interactions between two CLOCK-BMAL1 protomers and histones and is important for circadian cycling. At internal E-boxes, the MYC-MAX leucine zipper can also interact with histones H2B and H3, and its binding is indirectly enhanced by OCT4 elsewhere on the nucleosome. The nucleosomal E-box position and the type of bHLH dimerization domain jointly determine the histone contact, the affinity and the degree of competition and cooperativity with other nucleosome-bound factors.

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Type
research article
DOI
10.1038/s41586-023-06282-3
Web of Science ID

WOS:001024096100003

Author(s)
Michael, Alicia K.
Stoos, Lisa
Crosby, Priya
Eggers, Nikolas
Nie, Xinyu Y.
Makasheva, Kristina  
Minnich, Martina
Healy, Kelly L.
Weiss, Joscha
Kempf, Georg
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Date Issued

2023-07-05

Publisher

NATURE PORTFOLIO

Published in
Nature
Volume

619

Issue

7969

Start page

385

End page
Subjects

Multidisciplinary Sciences

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Science & Technology - Other Topics

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cryo-em

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crystal-structure

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circadian clock

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dynamic interactions

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pioneer factors

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nucleosomes

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chromatin

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binding

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particle

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complex

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

Available on Infoscience
August 28, 2023
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/200299
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