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SRX6878621: GSM4087821: NoHCC [Single-cell]; Danio rerio; RNA-Seq
1 ILLUMINA (Illumina HiSeq 2500) run: 133.8M spots, 16.9G bases, 9.1Gb downloads

Submitted by: NCBI (GEO)
Study: Single-cell transcriptomic analysis of two models of zebrafish beta-catenin-driven HCC
show Abstracthide Abstract
Up to 41% of hepatocellular carcinomas (HCCs) result from activating mutations in the CTNNB1 gene encoding ß-catenin. ß-catenin has dual cellular functions as a component of the Wnt signaling pathway and adherens junctions. HCC-associated CTNNB1 mutations stabilize the ß-catenin protein, leading to nuclear and/or cytoplasmic localization of ß-catenin and downstream activation of Wnt target genes. In patient HCC samples, ß-catenin nuclear and cytoplasmic localization are typically patchy, even among HCC with highly active CTNNB1 mutations. The functional and clinical relevance of this heterogeneity in ß-catenin activation are not well understood. To define mechanisms of ß-catenin-driven HCC initiation, we generated a Cre-lox system that enabled switching on activated ß-catenin in 1) a small number of hepatocytes in early development; or 2) the majority of hepatocytes in later development or adulthood. We discovered that switching on activated ß-catenin in a subset of larval hepatocytes was sufficient to drive HCC initiation. To determine the role of Wnt/ß-catenin signaling heterogeneity later in hepatocarcinogenesis, we performed RNA-seq analysis of zebrafish ß-catenin-driven HCC. Ingenuity Pathway Analysis of differentially expressed genes in the Cre-lox HCC model revealed that “Cancer” and “Liver Tumor” categories were significantly altered, indicating transcriptional similarities with human HCC and other vertebrate HCC models. At the single-cell level, 2.9% to 15.2% of hepatocytes from zebrafish ß-catenin-driven HCC expressed two or more of the Wnt target genes axin2, mtor, glula, myca, and wif1, indicating focal activation of Wnt signaling in established tumors. Thus, heterogeneous ß-catenin activation drives HCC initiation and persists throughout hepatocarcinogenesis. Overall design: Examination of three 6mpf liver samples from three different transgenic lines with/without 4-hydroxytamoxifen (TAM) treatment.
Sample: NoHCC [Single-cell]
SAMN12797705 • SRS5414403 • All experiments • All runs
Organism: Danio rerio
Library:
Instrument: Illumina HiSeq 2500
Strategy: RNA-Seq
Source: TRANSCRIPTOMIC
Selection: cDNA
Layout: PAIRED
Construction protocol: Zebrafish were euthanized by rapid chilling and their livers were dissected. Half of each liver was submitted for histologic evaluation to confirm the diagnosis (HCC or no HCC). The remaining half of each liver was dissociated into single-cell suspensions and prepared for single-tube single-cell RNA sequencing (scRNA-seq) based on the 10X Genomics platform. Dissected liver tissue was immersed in 5% Fetal Bovine Serum (FBS) in Hank's Buffered Saline Solution (HBSS) without phenol red, with calcium and magnesium and chopped finely. The cells were were homogenized in 1 mL of 0.25% trypsin + EDTA for 5 minutes at room temperature and re-suspended in 1 mL of 5%FBS+5mM EDTA in HBSS-Free solution. Cells were then filtered through a 40 micron membrane filter, and the filtrate was centrifuged at 1200 RPM, 4C for 5 minutes. The cell pellet was then re-suspended in phosphate buffered saline with 0.04% bovine serum albumin. The cell suspension was then filtered again through 40 micron cell strainers to obtain a liver single-cell suspension. Viability and cell count were assessed on Countess I (Thermo Scientific). The Chromium Single Cell Gene Expression Solution with 3' chemistry, version 2 (PN-120237) was used to barcode individual cells with 16 bp 10x Barcode and to tag cell specific transcript molecules with 10 bp Unique Molecular Identifier (UMI) according to the manufactures instruction. Equilibrium to targeted cell recovery of 6,000 cells along with 10x Gel Beads and reverse transcription reagents were loaded to Chromium Single Cell A Chip (PN-120236) to form Gel-Bead-In EMulsions (GEMs), the micro-droplets. Within individual GEMs, cDNA generated from captured and barcoded mRNA was synthesized by reverse transcription at the setting of 53°C for 45 min followed by 85°C for 5 min. Subsequent A tailing, end repair, adaptor ligation and sample indexing was performed in bulk according to the manufacturer's instructions. Multiple libraries were then normalized and sequenced on NovaSeq 6000 with 2x150 PE mode. Single-cell 3' RNA-Sequencing
Experiment attributes:
GEO Accession: GSM4087821
Links:
Runs: 1 run, 133.8M spots, 16.9G bases, 9.1Gb
Run# of Spots# of BasesSizePublished
SRR10153191133,825,30316.9G9.1Gb2019-09-27

ID:
9050212

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