4.6 Article

TFIIS-Dependent Non-coding Transcription Regulates Developmental Genome Rearrangements

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PLOS GENETICS
卷 11, 期 7, 页码 -

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PUBLIC LIBRARY SCIENCE
DOI: 10.1371/journal.pgen.1005383

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资金

  1. Polish National Science Centre [N N303 808840]
  2. Polish Ministry of Science and Higher Education [IP2010 028470]
  3. French National Research Agency [ANR-10-BLAN-1603 GENOMAC, ANR-12-BSV6-0017 INFERNO]
  4. ARC Foundation for Cancer Research [SFI20121205487]
  5. Centre National de la Recherche Scientifique (CNRS)
  6. CNRS
  7. Polish Academy of Sciences
  8. School of Molecular Biology-Institute of Biochemistry and Biophysics, PAS
  9. European Science Foundation
  10. Agence Nationale de la Recherche (ANR) [ANR-12-BSV6-0017, ANR-10-BLAN-1603] Funding Source: Agence Nationale de la Recherche (ANR)

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Because of their nuclear dimorphism, ciliates provide a unique opportunity to study the role of non-coding RNAs (ncRNAs) in the communication between germline and somatic lineages. In these unicellular eukaryotes, a new somatic nucleus develops at each sexual cycle from a copy of the zygotic (germline) nucleus, while the old somatic nucleus degenerates. In the ciliate Paramecium tetraurelia, the genome is massively rearranged during this process through the reproducible elimination of repeated sequences and the precise excision of over 45,000 short, single-copy Internal Eliminated Sequences (IESs). Different types of ncRNAs resulting from genome-wide transcription were shown to be involved in the epigenetic regulation of genome rearrangements. To understand how ncRNAs are produced from the entire genome, we have focused on a homolog of the TFIIS elongation factor, which regulates RNA polymerase II transcriptional pausing. Six TFIIS-paralogs, representing four distinct families, can be found in P. tetraurelia genome. Using RNA interference, we showed that TFIIS4, which encodes a development-specific TFIIS protein, is essential for the formation of a functional somatic genome. Molecular analyses and high-throughput DNA sequencing upon TFIIS4 RNAi demonstrated that TFIIS4 is involved in all kinds of genome rearrangements, including excision of similar to 48% of IESs. Localization of a GFP-TFIIS4 fusion revealed that TFIIS4 appears specifically in the new somatic nucleus at an early developmental stage, before IES excision. RT-PCR experiments showed that TFIIS4 is necessary for the synthesis of IES-containing non-coding transcripts. We propose that these IES+ transcripts originate from the developing somatic nucleus and serve as pairing substrates for germline-specific short RNAs that target elimination of their homologous sequences. Our study, therefore, connects the onset of zygotic non coding transcription to the control of genome plasticity in Paramecium, and establishes for the first time a specific role of TFIIS in non-coding transcription in eukaryotes.

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