» Articles » PMID: 23483971

The Immediate Early Gene Product EGR1 and Polycomb Group Proteins Interact in Epigenetic Programming During Chondrogenesis

Abstract

Initiation of and progression through chondrogenesis is driven by changes in the cellular microenvironment. At the onset of chondrogenesis, resting mesenchymal stem cells are mobilized in vivo and a complex, step-wise chondrogenic differentiation program is initiated. Differentiation requires coordinated transcriptomic reprogramming and increased progenitor proliferation; both processes require chromatin remodeling. The nature of early molecular responses that relay differentiation signals to chromatin is poorly understood. We here show that immediate early genes are rapidly and transiently induced in response to differentiation stimuli in vitro. Functional ablation of the immediate early factor EGR1 severely deregulates expression of key chondrogenic control genes at the onset of differentiation. In addition, differentiating cells accumulate DNA damage, activate a DNA damage response and undergo a cell cycle arrest and prevent differentiation associated hyper-proliferation. Failed differentiation in the absence of EGR1 affects global acetylation and terminates in overall histone hypermethylation. We report novel molecular connections between EGR1 and Polycomb Group function: Polycomb associated histone H3 lysine27 trimethylation (H3K27me3) blocks chromatin access of EGR1. In addition, EGR1 ablation results in abnormal Ezh2 and Bmi1 expression. Consistent with this functional interaction, we identify a number of co-regulated targets genes in a chondrogenic gene network. We here describe an important role for EGR1 in early chondrogenic epigenetic programming to accommodate early gene-environment interactions in chondrogenesis.

Citing Articles

Leveraging Xenobiotic-Responsive Cancer Stemness in Cell Line-Based Tumoroids for Evaluating Chemoresistance: A Proof-of-Concept Study on Environmental Susceptibility.

Kim K, Lee S, Kim J, Moon Y Int J Mol Sci. 2024; 25(21).

PMID: 39518936 PMC: 11545740. DOI: 10.3390/ijms252111383.


Cyclic negative pressure promotes chondrocyte growth: Association of IGF-2 with EGR-1.

Li X, Huang L, Liu B, Zhang Z, Zhou G, Guo Z Biomol Biomed. 2024; 24(6):1761-1775.

PMID: 38912889 PMC: 11496872. DOI: 10.17305/bb.2024.10487.


Transcriptomic profiling reveals key early response genes during GDF6-mediated differentiation of human adipose-derived stem cells to nucleus pulposus cells.

Gilbert H, Wignall F, Zeef L, Hoyland J, Richardson S JOR Spine. 2024; 7(1):e1315.

PMID: 38249721 PMC: 10797253. DOI: 10.1002/jsp2.1315.


BMI1 governs the maintenance of mouse GC-2 cells through epigenetic repression of transcription.

Zheng B, Liu J, Shi X, Xu J, Zhang K, Zhou H Am J Transl Res. 2022; 14(5):3407-3418.

PMID: 35702123 PMC: 9185053.


Overexpression of transcription factor FoxA2 in the developing skeleton causes an enlargement of the cartilage hypertrophic zone, but it does not trigger ectopic differentiation in immature chondrocytes.

Bell N, Bhagat S, Muruganandan S, Kim R, Ho K, Pierce R Bone. 2022; 160:116418.

PMID: 35398294 PMC: 9133231. DOI: 10.1016/j.bone.2022.116418.


References
1.
Schultz D, Ayyanathan K, Negorev D, Maul G, Rauscher 3rd F . SETDB1: a novel KAP-1-associated histone H3, lysine 9-specific methyltransferase that contributes to HP1-mediated silencing of euchromatic genes by KRAB zinc-finger proteins. Genes Dev. 2002; 16(8):919-32. PMC: 152359. DOI: 10.1101/gad.973302. View

2.
van Lohuizen M . Functional analysis of mouse Polycomb group genes. Cell Mol Life Sci. 1998; 54(1):71-9. PMC: 11147254. DOI: 10.1007/s000180050126. View

3.
Yu J, de Belle I, Liang H, Adamson E . Coactivating factors p300 and CBP are transcriptionally crossregulated by Egr1 in prostate cells, leading to divergent responses. Mol Cell. 2004; 15(1):83-94. DOI: 10.1016/j.molcel.2004.06.030. View

4.
Nie Z, Hu G, Wei G, Cui K, Yamane A, Resch W . c-Myc is a universal amplifier of expressed genes in lymphocytes and embryonic stem cells. Cell. 2012; 151(1):68-79. PMC: 3471363. DOI: 10.1016/j.cell.2012.08.033. View

5.
Perez-Cadahia B, Drobic B, Davie J . Activation and function of immediate-early genes in the nervous system. Biochem Cell Biol. 2011; 89(1):61-73. DOI: 10.1139/O10-138. View