Analysis of the human monocyte-derived macrophage transcriptome and response to lipopolysaccharide provides new insights into genetic aetiology of inflammatory bowel disease
인간 단핵구 유래 대식세포 전사체 및 지질다당류에 대한 반응 분석은 염증성 장 질환의 유전적 병인에 대한 새로운 통찰력을 제공합니다
Research Article
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Activation
adaptation
aetiology
Analysis
appearance
arise
Arthritis
Bacteria
Bacterial
bacterial cells
bacterial lipopolysaccharide
bacterial stimuli
Blood
CAGE
CAGE-based transcriptional profiling
candidate
candidate gene
Candidates
cascade
Cell
cells
chronic inflammatory bowel diseases
Cluster
colony-stimulating factor
complex
component
components
Course
Crohn’s disease
CSF1
CSF1-dependent monocyte-macrophage transition
CSF1-dependent monocyte-macrophage transitions
Defense
differentiation
dysregulation
enhancer
enhancers
eRNA transcription
Families
form
function
gastrointestinal mucosa
Gene Expression
Genetic
genetic risk
Genome
genome-wide association
Genome-wide association studies
Gut
gut wall
GWA
human cell
human cells
human monocyte
human monocyte-derived macrophage
human monocyte-derived macrophages
hypothesised
IBD
IBD loci
identify
Immune cell
immune cells
Inflammatory bowel disease
inflammatory bowel diseases
inflammatory disease
inheritance
initiate inflammation
intestinal lamina propria
intestine
involved
lipopolysaccharide
loci
locus
long non-coding RNA
LPS
Macrophage
macrophage colony-stimulating factor
macrophage differentiation
macrophages
majority
MARA
modulate
monocyte
monocyte differentiation
monocyte-derived macrophage
monocyte-specific genes
Monocytes
motif
motif activity response analysis
Pathogens
positive
produced
promoter
promoters
provide
Region
regulated
Regulation
Regulatory
responsible
rheumatoid arthritis
shown
successive wave
successive waves
Support
susceptibility
susceptibility loci
These data
this system
tissue damage
tissues
traits
transcription factor
transcription factors
transcriptional activation
transcriptional regulation
Transcriptome
transcriptome dataset
transcripts
transient gene expression
ulcerative colitis
utilised
wall
[DOI] 10.1371/journal.pgen.1006641 PMC 바로가기 [Article Type] Research Article
[DOI] 10.1371/journal.pgen.1006641 PMC 바로가기 [Article Type] Research Article