EMD-26260

Single-particle
2.6 Å
EMD-26260 Deposition: 18/02/2022
Map released: 28/06/2023
Last modified: 06/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links

EMD-26260

Structure of LIN28b nucleosome bound 2 OCT4

EMD-26260

Single-particle
2.6 Å
EMD-26260 Deposition: 18/02/2022
Map released: 28/06/2023
Last modified: 06/11/2024
Overview 3D View Sample Experiment Validation Volume Browser Additional data Links
Sample Organism: Homo sapiens, Mus musculus
Sample: Complex of nucleosome bound to two OCT-4s
Fitted models: 7u0i (Avg. Q-score: 0.548)

Deposition Authors: Lian T, Guan R, Bai Y
Structural mechanism of LIN28B nucleosome targeting by OCT4.
Guan R, Lian T, Zhou BR, Wheeler D, Bai Y
(2023) Mol Cell , 83 , 1970 - 1982.e6
PUBMED: 37327775
DOI: doi:10.1016/j.molcel.2023.05.030
ISSN: 1097-2765
ASTM: MOCEFL
Abstract:
Pioneer transcription factors are essential for cell fate changes by targeting closed chromatin. OCT4 is a crucial pioneer factor that can induce cell reprogramming. However, the structural basis of how pioneer factors recognize the in vivo nucleosomal DNA targets is unknown. Here, we determine the high-resolution structures of the nucleosome containing human LIN28B DNA and its complexes with the OCT4 DNA binding region. Three OCT4s bind the pre-positioned nucleosome by recognizing non-canonical DNA sequences. Two use their POUS domains while the other uses the POUS-loop-POUHD region; POUHD serves as a wedge to unwrap ∼25 base pair DNA. Our analysis of previous genomic data and determination of the ESRRB-nucleosome-OCT4 structure confirmed the generality of these structural features. Moreover, biochemical studies suggest that multiple OCT4s cooperatively open the H1-condensed nucleosome array containing the LIN28B nucleosome. Thus, our study suggests a mechanism of how OCT4 can target the nucleosome and open closed chromatin.