Biochemistry, Genetics and Molecular Biology
Endoplasmic Reticulum Stress
100%
Protein Homeostasis
66%
Unfolded Protein Response
66%
Ribonuclease
66%
Amyloid Protein
66%
Mouse Model
33%
Transgenic Mouse
33%
Signal Transduction
33%
Protein Aggregation
33%
XBP1
33%
Steady State
33%
Long Term Potentiation
33%
X Box Binding Protein 1
33%
Promoter Region
33%
Genetic Ablation
33%
Endoribonuclease
33%
RNA
33%
Kinase
33%
Phosphotransferase
33%
Astrocyte
33%
Keyphrases
Inositol-requiring Enzyme 1 (IRE1)
100%
Alzheimer's Disease Pathology
100%
Alzheimer's Disease
45%
Alzheimer's Disease Model
27%
Amyloid Precursor Protein
18%
Unfolded Protein Response
18%
Endoplasmic Reticulum
18%
Endoplasmic Reticulum Stress (ER stress)
18%
X-box Binding Protein 1 (XBP1)
18%
Steady State
9%
Initial Expectations
9%
Transcription Factor
9%
Risk Factors
9%
Long-term Potentiation
9%
Amyloid Deposition
9%
Synaptic Function
9%
Disease Intervention
9%
Cortical Areas
9%
Proteostasis
9%
Nervous System
9%
Signal Control
9%
Transgenic Mouse Model
9%
Genetic Ablation
9%
Abnormal Aggregation
9%
Amyloid-β Oligomers
9%
Proteasomal Degradation
9%
In Vitro Experiment
9%
Endoribonuclease
9%
Pro-apoptotic
9%
Signaling Pathway
9%
Human Brain Tissue
9%
Ribonuclease
9%
Loss of Proteostasis
9%
Astrocyte Activation
9%
Learnability
9%
Downstream Signaling
9%
Stress Trigger
9%
Memory Capacity
9%
Endoplasmic Reticulum Stress Protein
9%
Polymorphism
9%
INIS
nervous system diseases
100%
pathogenesis
100%
proteins
50%
endoplasmic reticulum
50%
levels
20%
precursor
20%
mice
20%
steady-state conditions
10%
inhibition
10%
control
10%
capacity
10%
learning
10%
brain
10%
humans
10%
diseases
10%
interventions
10%
correlations
10%
tissues
10%
genetics
10%
risks
10%
retention
10%
transcription factors
10%
aggregation
10%
deposition
10%
transgenic mice
10%
kinases
10%
in vitro
10%
nervous system
10%
transducers
10%
promoters
10%
rna
10%
ablation
10%