AI Article Synopsis

  • The control of transcription in organisms, like Arabidopsis thaliana, involves complex mechanisms including chromatin compaction, heavily influenced by PRC2 which modifies histones to create a repressive chromatin state.
  • PRC2 is crucial for regulating genes linked to developmental processes and organ functions, and its member genes show intricate patterns of expression in different tissues and stages within the plant.
  • The study reveals that PRC2's gene expression relates to tissue-specific gene repression via H3K27me3, impacting how cells proliferate and differentiate, and it identifies upstream regulators that affect the transcriptional activity of PRC2 members to help shape organ development.

Article Abstract

Spatiotemporal regulation of transcription is fine-tuned at multiple levels, including chromatin compaction. Polycomb Repressive Complex 2 (PRC2) catalyzes the trimethylation of Histone 3 at lysine 27 (H3K27me3), which is the hallmark of a repressive chromatin state. Multiple PRC2 complexes have been reported in Arabidopsis thaliana to control the expression of genes involved in developmental transitions and maintenance of organ identity. Here, we show that PRC2 member genes display complex spatiotemporal gene expression patterns and function in root meristem and vascular cell proliferation and specification. Furthermore, PRC2 gene expression patterns correspond with vascular and nonvascular tissue-specific H3K27me3-marked genes. This tissue-specific repression via H3K27me3 regulates the balance between cell proliferation and differentiation. Using enhanced yeast one-hybrid analysis, upstream regulators of the PRC2 member genes are identified, and genetic analysis demonstrates that transcriptional regulation of some PRC2 genes plays an important role in determining PRC2 spatiotemporal activity within a developing organ.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5134969PMC
http://dx.doi.org/10.1105/tpc.15.00744DOI Listing

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