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MYC phase separation selectively modulates the transcriptome
by
Ma, Zhimin
, Chung, Chan-I
, Navalkar, Ambuja
, Weiss, William A.
, Shu, Xiaokun
, Koach, Jessica
, Yang, Xiaoyu
, Mittag, Tanja
, He, Liang
, He, Hao
, Yang, Junjiao
, Liu, Hongjiang
, Zhao, Qian
, Shen, Yin
in
631/1647/2017
/ 631/337/572
/ 631/45/612/822
/ 631/80/86
/ Binding sites
/ Biochemistry
/ Biological effects
/ Biological Microscopy
/ Biomedical and Life Sciences
/ Cell activation
/ Cell growth
/ Cell Line, Tumor
/ Cell Proliferation
/ Condensates
/ Gene expression
/ Gene Expression Regulation, Neoplastic
/ Gene regulation
/ Gene silencing
/ Genes
/ Humans
/ Life Sciences
/ Membrane Biology
/ Myc protein
/ N-Myc Proto-Oncogene Protein - genetics
/ N-Myc Proto-Oncogene Protein - metabolism
/ Neuroblastoma
/ Neuroblastoma - genetics
/ Neuroblastoma - metabolism
/ Neuroblastoma - pathology
/ Phase Separation
/ Protein Structure
/ Proto-Oncogene Proteins c-myc - genetics
/ Proto-Oncogene Proteins c-myc - metabolism
/ Suppressors
/ Transcription activation
/ Transcription factors
/ Transcriptome
/ Transcriptomes
2024
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MYC phase separation selectively modulates the transcriptome
by
Ma, Zhimin
, Chung, Chan-I
, Navalkar, Ambuja
, Weiss, William A.
, Shu, Xiaokun
, Koach, Jessica
, Yang, Xiaoyu
, Mittag, Tanja
, He, Liang
, He, Hao
, Yang, Junjiao
, Liu, Hongjiang
, Zhao, Qian
, Shen, Yin
in
631/1647/2017
/ 631/337/572
/ 631/45/612/822
/ 631/80/86
/ Binding sites
/ Biochemistry
/ Biological effects
/ Biological Microscopy
/ Biomedical and Life Sciences
/ Cell activation
/ Cell growth
/ Cell Line, Tumor
/ Cell Proliferation
/ Condensates
/ Gene expression
/ Gene Expression Regulation, Neoplastic
/ Gene regulation
/ Gene silencing
/ Genes
/ Humans
/ Life Sciences
/ Membrane Biology
/ Myc protein
/ N-Myc Proto-Oncogene Protein - genetics
/ N-Myc Proto-Oncogene Protein - metabolism
/ Neuroblastoma
/ Neuroblastoma - genetics
/ Neuroblastoma - metabolism
/ Neuroblastoma - pathology
/ Phase Separation
/ Protein Structure
/ Proto-Oncogene Proteins c-myc - genetics
/ Proto-Oncogene Proteins c-myc - metabolism
/ Suppressors
/ Transcription activation
/ Transcription factors
/ Transcriptome
/ Transcriptomes
2024
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MYC phase separation selectively modulates the transcriptome
by
Ma, Zhimin
, Chung, Chan-I
, Navalkar, Ambuja
, Weiss, William A.
, Shu, Xiaokun
, Koach, Jessica
, Yang, Xiaoyu
, Mittag, Tanja
, He, Liang
, He, Hao
, Yang, Junjiao
, Liu, Hongjiang
, Zhao, Qian
, Shen, Yin
in
631/1647/2017
/ 631/337/572
/ 631/45/612/822
/ 631/80/86
/ Binding sites
/ Biochemistry
/ Biological effects
/ Biological Microscopy
/ Biomedical and Life Sciences
/ Cell activation
/ Cell growth
/ Cell Line, Tumor
/ Cell Proliferation
/ Condensates
/ Gene expression
/ Gene Expression Regulation, Neoplastic
/ Gene regulation
/ Gene silencing
/ Genes
/ Humans
/ Life Sciences
/ Membrane Biology
/ Myc protein
/ N-Myc Proto-Oncogene Protein - genetics
/ N-Myc Proto-Oncogene Protein - metabolism
/ Neuroblastoma
/ Neuroblastoma - genetics
/ Neuroblastoma - metabolism
/ Neuroblastoma - pathology
/ Phase Separation
/ Protein Structure
/ Proto-Oncogene Proteins c-myc - genetics
/ Proto-Oncogene Proteins c-myc - metabolism
/ Suppressors
/ Transcription activation
/ Transcription factors
/ Transcriptome
/ Transcriptomes
2024
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MYC phase separation selectively modulates the transcriptome
Journal Article
MYC phase separation selectively modulates the transcriptome
2024
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Overview
Dysregulation and enhanced expression of
MYC
transcription factors (TFs) including
MYC
and
MYCN
contribute to the majority of human cancers. For example,
MYCN
is amplified up to several hundredfold in high-risk neuroblastoma. The resulting overexpression of N-myc aberrantly activates genes that are not activated at low N-myc levels and drives cell proliferation. Whether increasing N-myc levels simply mediates binding to lower-affinity binding sites in the genome or fundamentally changes the activation process remains unclear. One such activation mechanism that could become important above threshold levels of N-myc is the formation of aberrant transcriptional condensates through phase separation. Phase separation has recently been linked to transcriptional regulation, but the extent to which it contributes to gene activation remains an open question. Here we characterized the phase behavior of N-myc and showed that it can form dynamic condensates that have transcriptional hallmarks. We tested the role of phase separation in N-myc-regulated transcription by using a chemogenetic tool that allowed us to compare non-phase-separated and phase-separated conditions at equivalent N-myc levels, both of which showed a strong impact on gene expression compared to no N-myc expression. Interestingly, we discovered that only a small percentage (<3%) of N-myc-regulated genes is further modulated by phase separation but that these events include the activation of key oncogenes and the repression of tumor suppressors. Indeed, phase separation increases cell proliferation, corroborating the biological effects of the transcriptional changes. However, our results also show that >97% of N-myc-regulated genes are not affected by N-myc phase separation, demonstrating that soluble complexes of TFs with the transcriptional machinery are sufficient to activate transcription.
Oncoprotein transcription factor MYC undergoes phase separation, forming transcriptionally active condensates. The chemogenetic tool SPARK-ON reveals that MYC phase separation selectively modulates the transcriptome and promotes cell proliferation.
Publisher
Nature Publishing Group US,Nature Publishing Group
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