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The Polycomb system modifies chromatin and plays an essential role in repressing gene expression to control normal mammalian development. However, the components and mechanisms that define how Polycomb protein complexes achieve this remain enigmatic. Here, we use combinatorial genetic perturbation coupled with quantitative genomics to discover the central determinants of Polycomb-mediated gene repression in mouse embryonic stem cells. We demonstrate that canonical Polycomb repressive complex 1 (PRC1), which mediates higher-order chromatin structures, contributes little to gene repression. Instead, we uncover an unexpectedly high degree of synergy between variant PRC1 complexes, which is fundamental to gene repression. We further demonstrate that variant PRC1 complexes are responsible for distinct pools of H2A monoubiquitylation that are associated with repression of Polycomb target genes and silencing during X chromosome inactivation. Together, these discoveries reveal a new variant PRC1-dependent logic for Polycomb-mediated gene repression.
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http://dx.doi.org/10.1016/j.molcel.2019.03.024 | DOI Listing |
Sci Adv
September 2025
Frontiers Science Center for Molecular Design Breeding, Key Laboratory of Crop Heterosis and Utilization (MOE), Beijing Key Laboratory of Crop Genetic Improvement, College of Agronomy and Biotechnology, China Agricultural University, Beijing 100193, China.
Grain size substantially influences rice quality and yield. In this study, we identified (), a quantitative trait locus encoding an F-box protein that enhances grain length by promoting cell proliferation. The transcription factor OsbZIP35 represses expression, while COR1 interacts with OsTCP19, leading to its degradation.
View Article and Find Full Text PDFCancer Res
September 2025
University of Southern Denmark, Odense, Denmark.
Triple-negative breast cancer (TNBC) is a particularly aggressive subtype of breast cancer with high metastatic potential, limited treatment options, and low patient survival rates. By combining functional proteomics and genomics approaches, we identified an oncogenic transcriptional network in mesenchymal and invasive TNBC involving the glucocorticoid receptor (GR), GATA6, MYC, and AP-1 transcription factors. Although these transcription factors bound extensively to shared enhancers, they utilized different enhancer repertoires from this shared enhancer pool to drive distinct downstream oncogenic pathways.
View Article and Find Full Text PDFElife
September 2025
Human Biology and Primate Evolution, Institute of Biology, Freie Universität Berlin, Berlin, Germany.
Evidence indicates that transposable elements (TEs) can contribute to the evolution of new traits, with some TEs acting as deleterious elements while others are repurposed for beneficial roles in evolution. In mammals, some KRAB-ZNF proteins can serve as a key defense mechanism to repress TEs, offering genomic protection. Notably, the family of KRAB-ZNF genes evolves rapidly and exhibits diverse expression patterns in primate brains, where some TEs, including autonomous LINE-1 and non-autonomous Alu and SVA elements, remain mobile.
View Article and Find Full Text PDFACS Synth Biol
September 2025
School of Biological and Health Systems Engineering, Arizona State University, Tempe, Arizona 85281, United States.
Cellular resource limitations create unintended interactions among synthetic gene circuit modules, compromising circuit modularity. This challenge is particularly pronounced in circuits with positive feedback, where uneven resource allocation can lead to Winner-Takes-All (WTA) behavior, favoring one module at the expense of others. In this study, we experimentally implemented a Negatively Competitive Regulatory (NCR) controller using CRISPR interference (CRISPRi) and evaluated its effectiveness in mitigating WTA behavior in two gene circuits: dual self-activation and cascading bistable switch.
View Article and Find Full Text PDFJ Appl Toxicol
September 2025
School of Laboratory Medicine and Bioengineering, Hangzhou Medical College, Hangzhou, China.
Polystyrene nanoparticles (PS-NPs) are prevalent environmental contaminants that can accumulate in biological tissues. This study investigates the effects of PS-NPs on TM4 cells, a Sertoli cell line crucial for maintaining the male spermatogenesis microenvironment.TM4 cells were exposed to PS-NPs (0-100 μg/mL) duration of 24 to 72 h.
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