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| |width=100px|{{#pwimage:Pathway:WP1601|250px||Fluoropyrimidine Activity}} | | |width=100px|{{#pwimage:Pathway:WP1601|250px||Fluoropyrimidine Activity}} |
| + | |width=100px|{{#pwimage:Pathway:WP1545|250px||miRNAs involved in DNA damage response}} |
| |width=100px|{{#pwImage:Pathway:WP2249|250px||Metastatic Brain Tumor}} | | |width=100px|{{#pwImage:Pathway:WP2249|250px||Metastatic Brain Tumor}} |
- | |width=100px|{{#pwimage:Pathway:WP2261|250px||Signaling Pathways in Glioblastoma}}
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| |width=100px|{{#pwimage:Pathway:WP1901|250px||Regulatory RNA pathways}} | | |width=100px|{{#pwimage:Pathway:WP1901|250px||Regulatory RNA pathways}} |
| |- | | |- |
- | |width=100px|{{#pwimage:Pathway:WP1545|250px||miRNAs involved in DNA damage response}} | + | |width=100px|{{#pwimage:Pathway:WP2261|250px||Signaling Pathways in Glioblastoma}} |
| |} | | |} |
Image does not exist T-Cell Receptor and Co-stimulatory Signaling
Takahashi, et al. Long non-coding RNA in liver diseases
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Image does not exist IL1 and megakaryotyces in obesity
Beaulieu, et al. Interleukin 1 receptor 1 and interleukin 1beta regulate megakaryocyte maturation, platelet activation, and transcript profile during inflammation in mice and humans
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Image does not exist RNA interference
Ozpolat, et al. Liposomal siRNA nanocarriers for cancer therapy
Thomas, et al. Eri1: a conserved enzyme at the crossroads of multiple RNA-processing pathways
|
Image does not exist Extracellular vesicle-mediated signaling in recipient cells
Gangoda, et al. Extracellular vesicles including exosomes are mediators of signal transduction: Are they protective or pathogenic?
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Image does not exist TCA Cycle Nutrient Utilization and Invasiveness of Ovarian Cancer
Yang, et al. Metabolic shifts toward glutamine regulate tumor growth, invasion and bioenergetics in ovarian cancer
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Image does not exist mir34a and TGIF2 in osteoclastogenesis
Krzeszinski, et al. miR-34a blocks osteoporosis and bone metastasis by inhibiting osteoclastogenesis and Tgif2
|
Image does not exist mir219 in Oligodendrocyte Differentiation and Myelination
Pusic, et al. Youth and environmental enrichment generate serum exosomes containing miR-219 that promote CNS myelination
|
Image does not exist Apoptosis-related network due to altered Notch3 in ovarian cancer
Hu, et al. Notch3 pathway alterations in ovarian cancer
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Image does not exist miRs in Muscle Cell Differentiation
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Image does not exist REBF and miR33 in cholesterol and lipid homeostasis
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Image does not exist SRF and miRs in Smooth Muscle Differentiation and Proliferation
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Image does not exist miRNA Regulation of DNA Damage Response
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Image does not exist miR-targeted genes in epithelium - TarBase
TarBase
|
Image does not exist miR-targeted genes in leukocytes - TarBase
TarBase
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Image does not exist miR-targeted genes in squamous cell - TarBase
TarBase
|
Image does not exist TarBasePathway
TarBase
|
Image does not exist miR-targeted genes in muscle cell - TarBase
TarBase
|
Image does not exist miR-targeted genes in lymphocytes - TarBase
TarBase
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Image does not exist miR-targeted genes in adipocytes - TarBase
TarBase
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Image does not exist Mecp2 and Associated Rett Syndrome
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Image does not exist Cell Differentiation
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Image does not exist Endoderm Differentiation
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Image does not exist Ectoderm Differentiation
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Image does not exist Mesodermal Commitment Pathway
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Image does not exist ErbB Signaling Pathway
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Image does not exist Mir302-367 Promoting Cardiomyocyte Proliferation
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Image does not exist Alzheimers Disease
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Image does not exist Parkinsons Disease
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Image does not exist MicroRNAs in cardiomyocyte hypertrophy
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Image does not exist Integrated Lung Cancer Pathway
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Image does not exist miRNA Biogenesis
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Image does not exist miRNA targets in ECM and membrane receptors
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Image does not exist Fluoropyrimidine Activity
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Image does not exist miRNAs involved in DNA damage response
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Image does not exist Metastatic Brain Tumor
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Image does not exist Regulatory RNA pathways
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Image does not exist Signaling Pathways in Glioblastoma
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