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SRX11354668: GSM5418740: Abisporus csRNA-seq rep3; Agaricus bisporus; ncRNA-Seq
1 ILLUMINA (NextSeq 500) run: 12.2M spots, 462.2M bases, 225.2Mb downloads

Submitted by: NCBI (GEO)
Study: Functional characterization of the transcription programs underlying phase transition in the BSL3 pathogen Coccidioides immitis
show Abstracthide Abstract
Coccidioidomycosis (Valley Fever) is an emerging endemic fungal infection with a rising incidence and an expanding geographic range. It is caused by Coccidiodes, which are thermally dimorphic fungi that grow as mycelia in soil but transition in the lung to form pathogenic spherules. The regulatory mechanisms underlying this transition are not understood. Exploiting capped small (cs)RNA-seq, which identifies actively initiated stable and unstable transcripts and thereby detects acute changes in gene regulation with remarkable sensitivity, here we report the changes in architectural organization and key sequence features underlying phase transition of this highly pathogenic fungus. Spherule transition was accompanied by large-scale transcriptional reprogramming, functional changes in transcript isoforms, and a massive increase in promoter-distal transcription of ncRNAs. Analysis of spherule-activated regulatory elements revealed a motif predicted to recruit a WOPR family transcription factor, which are known regulators of virulence in other fungi. We identify CIMG_02671 as a C. immitis WOPR homologue and show that it activates transcription in a WOPR motif-dependent manner, suggesting it is an important regulator of pathogenic phase transition. Collectively, this also highlights csRNA-seq as a powerful means to identify transcriptional mechanisms that control pathogenesis. Overall design: Decoding Gene Regulatory Features of C. immitis phase transition
Sample: Abisporus csRNA-seq rep3
SAMN20062980 • SRS9401588 • All experiments • All runs
Library:
Instrument: NextSeq 500
Strategy: ncRNA-Seq
Source: TRANSCRIPTOMIC
Selection: size fractionation
Layout: SINGLE
Construction protocol: Trizol extraction after tissue homogenisation For RNA-Seq, strand-specific, paired-end libraries were prepared from total RNA by ribosomal depletion using the Yeast Ribo-Zero rRNA Removal Kit (Illumina) and then using the TruSeq Stranded total RNA-Seq kit (Illumina) according to manufacturer's instructions. Then 100 bases were sequenced from both ends using a HiSeq 4000 according to the manufacturer's instructions (Illumina). csRNA-seq was performed as described in (Duttke et al. 2019). Small RNAs of ~20-60 nt were size selected from 0.4-2 µg of total RNA by denaturing gel electrophoresis. A 10% input sample was taken aside and the remainder enriched for 5'-capped RNAs. Monophosphorylated RNAs were selectively degraded by Terminator 5´-Phosphate-Dependent Exonuclease (Lucigen) and RNAs were 5'dephosporylation by quickCIP (NEB). Input (sRNA) and csRNA-seq libraries were prepared as described in (Hetzel et al. 2016) using RppH (NEB) and the NEBNext Small RNA Library Prep kit, amplified for 14 cycles and sequenced SE75 on the Illumina NextSeq 500. csRNA-seq, sRNA-seq, total RNA-seq
Experiment attributes:
GEO Accession: GSM5418740
Links:
Runs: 1 run, 12.2M spots, 462.2M bases, 225.2Mb
Run# of Spots# of BasesSizePublished
SRR1504402512,245,853462.2M225.2Mb2022-01-06

ID:
15163450

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