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Human Embryonic Stem Cell Pluripotency

Embryonic stem cells (ESCs) are pluripotent cells capable of differentiating into any cell type of the body. Human ESCs are derived from blastocysts; multicellular structures originating from four cleavages of fertilized oocytes. They are able to spontaneously give rise to different progenies of the three embryonic layers. Human ESC pluripotency is regulated by a combination of extrinsic and intrinsic factors. FGF signaling and a balance between TGF-β/Activin and BMP signaling are central to the self-renewal of human ESCs...

Human Embryonic Stem Cell Pluripotency

Pathway Summary

Embryonic stem cells (ESCs) are pluripotent cells capable of differentiating into any cell type of the body. Human ESCs are derived from blastocysts; multicellular structures originating from four cleavages of fertilized oocytes. They are able to spontaneously give rise to different progenies of the three embryonic layers. Human ESC pluripotency is regulated by a combination of extrinsic and intrinsic factors. FGF signaling and a balance between TGF-β/Activin and BMP signaling are central to the self-renewal of human ESCs. Intrinsic factors include a group of transcription factors including Oct4, SOX2 and Nanog.TGF-β superfamily of ligands plays a major role in maintaining the Self-renewing ESCs. They signal through two main branches: the SMAD1/5 branch which transduces on behalf of BMP and GDF ligands via the type I receptors ALK1, ALK2, ALK3 and ALK6 and the TGF-β/Activin/Nodal branch, which involves the activation of SMAD2/3 via ALK4, ALK5 and ALK7. There are also two inhibitory SMADs - SMAD6, which selectively inhibits SMAD1/5; and SMAD7, which inhibits TGF-β signaling. Upon activation by phosphorylation and association with a common SMAD4, receptor activated SMADs translocate to the nucleus and in concert with other transcription factors, regulate gene expression. SMAD2/3 pathway is also required for positive regulation of several factors of TGF-β signaling. These factors include Nodal, Cripto, LEFTY1 and LEFTY2.In contrast to TGF-β/Activin/Nodal signaling which promotes the maintenance of pluripotent human ESCs, BMP signaling is unable to support self-renewal and is associated with differentiation to trophoblast or extraembryonic endoderm cells. In human ESCs, BMP4 induces differentiation into mesoderm and ectoderm, whereas BMP2 promotes extraembryonic endoderm differentiation. Repression of BMP signaling in human ESCs by Noggin and FGF supports long term Self-renewal. Binding of FGF to its receptor and heparin leads to receptor autophosphorylation and activation of intracellular signaling cascades, including the Ras/ERK pathway, the PLC-γ/Ca2+ pathway, and the PI3K pathway. FGF2 promotes self-renewal of human ESCs by activating the PI3K pathway.WNTs play an important role in controlling ESC maintenance. Canonical WNT signaling involves the binding of WNT to the frizzled receptors. This, in turn, activates Dsh, which displaces GSK3β from the APC/AXIN complex, preventing ubiquitin mediated degradation of Ctnn-β. Subsequently, Ctnn-β accumulates and translocates into the nucleus where it associates with TCF/LEF to activate transcription of WNT target genes. WNT signaling is known to be involved in regulating the proliferation of stem cells, including intestinal and hematopoietic cells, and the self-renewal of hematopoietic stem cells.Sphingosine-1-Phosphate (S1P), a bioactive lysophospholipid, also supports human ESC self-renewal. S1P signals both extracellularly through EDG (Endothelial Differentiation Gene) receptors coupled to G-Proteins, and intracellularly by unidentified mechanisms. Because the prevention of apoptosis is a common self-renewal mechanism, S1P potentially aids the self-renewal process in human ESCs cells. PDGF is implicated in the prevention of apoptosis. PDGF promotes intracellular S1P signaling by activating SphK, which in turn converts sphingosine to S1P. The combination of extracellular PDGF and S1P supports human ESC self-renewal.Major transcription factors regulating pluripotency include Oct4, SOX2 and Nanog. Oct3/4 SOX2 partnership is indispensable in the maintenance of pluripotency. Nanog is another member of the group of transcription factors whose functions are deemed essential for the process of self-renewal in Human ESCs. Thus human ESCs exhibit a number of signaling pathways involved in self-renewal and pluripotency.

Human Embryonic Stem Cell Pluripotency Genes list

Explore Genes related to Human Embryonic Stem Cell Pluripotency
ACVR1
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Human
activin A receptor type 1
ACVR2A
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Human
activin A receptor type 2A
ACVR2B
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Human
activin A receptor type 2B
ACVRL1
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Human
activin A receptor like type 1
AKT1
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Human
AKT serine/threonine kinase 1
AKT2
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Human
AKT serine/threonine kinase 2
AKT3
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Human
AKT serine/threonine kinase 3
APC
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Human
APC regulator of WNT signaling pathway
APC2
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Human
APC regulator of WNT signaling pathway 2
ARAF
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Human
A-Raf proto-oncogene, serine/threonine kinase
AXIN1
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Human
axin 1
BDNF
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Human
brain derived neurotrophic factor
BMP1
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Human
bone morphogenetic protein 1
BMP10
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Human
bone morphogenetic protein 10
BMP15
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Human
bone morphogenetic protein 15
BMP2
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Human
bone morphogenetic protein 2
BMP3
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Human
bone morphogenetic protein 3
BMP4
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Human
bone morphogenetic protein 4
BMP5
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Human
bone morphogenetic protein 5
BMP6
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Human
bone morphogenetic protein 6
BMP7
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Human
bone morphogenetic protein 7
BMP8A
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Human
bone morphogenetic protein 8a
BMP8B
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Human
bone morphogenetic protein 8b
BMPR1A
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Human
bone morphogenetic protein receptor type 1A
BMPR1B
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Human
bone morphogenetic protein receptor type 1B
BMPR2
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Human
bone morphogenetic protein receptor type 2
BRAF
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Human
B-Raf proto-oncogene, serine/threonine kinase
CRYGA
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Human
crystallin gamma A
CTNNB1
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Human
catenin beta 1
DPPA4
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Human
developmental pluripotency associated 4
DUSP9
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Human
dual specificity phosphatase 9
DVL1
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Human
dishevelled segment polarity protein 1
ELK1
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Human
ETS transcription factor ELK1
ERAS
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Human
ES cell expressed Ras
ESRRB
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Human
estrogen related receptor beta
FGF2
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Human
fibroblast growth factor 2
FGF4
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Human
fibroblast growth factor 4
FGFR1
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Human
fibroblast growth factor receptor 1
FGFR2
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Human
fibroblast growth factor receptor 2
FGFR3
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Human
fibroblast growth factor receptor 3
FGFR4
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Human
fibroblast growth factor receptor 4
FGFRL1
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Human
fibroblast growth factor receptor like 1
FOXD3
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Human
forkhead box D3
FOXO1
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Human
forkhead box O1
FUT4
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Human
fucosyltransferase 4
FZD1
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Human
frizzled class receptor 1
FZD10
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Human
frizzled class receptor 10
FZD2
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Human
frizzled class receptor 2
FZD3
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Human
frizzled class receptor 3
FZD4
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Human
frizzled class receptor 4
FZD5
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Human
frizzled class receptor 5
FZD6
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Human
frizzled class receptor 6
FZD7
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Human
frizzled class receptor 7
FZD8
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Human
frizzled class receptor 8
FZD9
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Human
frizzled class receptor 9
GRB2
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Human
growth factor receptor bound protein 2
GSK3B
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Human
glycogen synthase kinase 3 beta
HRAS
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Human
HRas proto-oncogene, GTPase
HSP90AA1
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Human
heat shock protein 90 alpha family class A member 1
HSP90AB1
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Human
heat shock protein 90 alpha family class B member 1
HSP90B1
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Human
heat shock protein 90 beta family member 1
ID1
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Human
inhibitor of DNA binding 1, HLH protein
ID2
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Human
inhibitor of DNA binding 2
ID3
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Human
inhibitor of DNA binding 3, HLH protein
ID4
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Human
inhibitor of DNA binding 4, HLH protein
INHBA
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Human
inhibin subunit beta A
JAK1
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Human
Janus kinase 1
JAK2
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Human
Janus kinase 2
JAK3
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Human
Janus kinase 3
KLF2
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Human
Kruppel like factor 2
KLF4
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Human
Kruppel like factor 4
KLK3
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Human
kallikrein related peptidase 3
KRAS
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Human
KRAS proto-oncogene, GTPase
LEFTY1
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Human
left-right determination factor 1
LEFTY2
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Human
left-right determination factor 2
LIF
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Human
LIF interleukin 6 family cytokine
LIFR
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Human
LIF receptor subunit alpha
MAP2K1
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Human
mitogen-activated protein kinase kinase 1
MAP2K2
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Human
mitogen-activated protein kinase kinase 2
MAP2K3
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Human
mitogen-activated protein kinase kinase 3
MAP2K4
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Human
mitogen-activated protein kinase kinase 4
MAP2K5
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Human
mitogen-activated protein kinase kinase 5
MAP2K6
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Human
mitogen-activated protein kinase kinase 6
MAP2K7
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Human
mitogen-activated protein kinase kinase 7
MAPK1
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Human
mitogen-activated protein kinase 1
MIR145
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Human
microRNA 145
MRAS
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Human
muscle RAS oncogene homolog
MYC
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Human
MYC proto-oncogene, bHLH transcription factor
NANOG
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Human
Nanog homeobox
NFYA
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Human
nuclear transcription factor Y subunit alpha
NFYB
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Human
nuclear transcription factor Y subunit beta
NFYC
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Human
nuclear transcription factor Y subunit gamma
NGF
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Human
nerve growth factor
NODAL
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Human
nodal growth differentiation factor
NOG
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Human
noggin
NR0B1
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Human
nuclear receptor subfamily 0 group B member 1
NR5A2
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Human
nuclear receptor subfamily 5 group A member 2
NRAS
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Human
NRAS proto-oncogene, GTPase
NTF3
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Human
neurotrophin 3
NTF4
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Human
neurotrophin 4
NTRK1
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Human
neurotrophic receptor tyrosine kinase 1
NTRK2
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Human
neurotrophic receptor tyrosine kinase 2
NTRK3
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Human
neurotrophic receptor tyrosine kinase 3
PDGFA
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Human
platelet derived growth factor subunit A
PDGFB
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Human
platelet derived growth factor subunit B
PDGFC
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Human
platelet derived growth factor C
PDGFD
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Human
platelet derived growth factor D
PDGFRA
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Human
platelet derived growth factor receptor alpha
PDGFRB
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Human
platelet derived growth factor receptor beta
PDPK1
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Human
3-phosphoinositide dependent protein kinase 1
PIK3C2A
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Human
phosphatidylinositol-4-phosphate 3-kinase catalytic subunit type 2 alpha
PIK3C2B
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Human
phosphatidylinositol-4-phosphate 3-kinase catalytic subunit type 2 beta
PIK3C2G
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Human
phosphatidylinositol-4-phosphate 3-kinase catalytic subunit type 2 gamma
PIK3C3
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Human
phosphatidylinositol 3-kinase catalytic subunit type 3
PIK3CA
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit alpha
PIK3CB
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit beta
PIK3CD
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit delta
PIK3CG
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Human
phosphatidylinositol-4,5-bisphosphate 3-kinase catalytic subunit gamma
PIK3R1
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Human
phosphoinositide-3-kinase regulatory subunit 1
PIK3R2
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Human
phosphoinositide-3-kinase regulatory subunit 2
PIK3R3
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Human
phosphoinositide-3-kinase regulatory subunit 3
PIK3R4
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Human
phosphoinositide-3-kinase regulatory subunit 4
PIK3R5
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Human
phosphoinositide-3-kinase regulatory subunit 5
PIK3R6
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Human
phosphoinositide-3-kinase regulatory subunit 6
POU5F1
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Human
POU class 5 homeobox 1
PRKCA
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Human
protein kinase C alpha
PRKCB
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Human
protein kinase C beta
PRKCD
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Human
protein kinase C delta
PRKCE
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Human
protein kinase C epsilon
PRKCG
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Human
protein kinase C gamma
PRKCH
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Human
protein kinase C eta
PRKCI
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Human
protein kinase C iota
PRKCQ
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Human
protein kinase C theta
PRKCZ
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Human
protein kinase C zeta
PRKD1
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Human
protein kinase D1
PRKD3
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Human
protein kinase D3
RAF1
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Human
Raf-1 proto-oncogene, serine/threonine kinase
RALA
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Human
RAS like proto-oncogene A
RALB
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Human
RAS like proto-oncogene B
RAP1A
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Human
RAP1A, member of RAS oncogene family
RAP1B
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Human
RAP1B, member of RAS oncogene family
RAP2A
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Human
RAP2A, member of RAS oncogene family
RAP2B
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Human
RAP2B, member of RAS oncogene family
RASD1
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Human
ras related dexamethasone induced 1
RASD2
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Human
RASD family member 2
REST
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Human
RE1 silencing transcription factor
RIF1
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Human
replication timing regulatory factor 1
RRAS
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Human
RAS related
RRAS2
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Human
RAS related 2
S1PR2
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Human
sphingosine-1-phosphate receptor 2
SALL4
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Human
spalt like transcription factor 4
SMAD1
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Human
SMAD family member 1
SMAD2
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Human
SMAD family member 2
SMAD3
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Human
SMAD family member 3
SMAD4
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Human
SMAD family member 4
SMAD5
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Human
SMAD family member 5
SMAD6
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Human
SMAD family member 6
SMAD7
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Human
SMAD family member 7
SMAD9
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Human
SMAD family member 9
SMO
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Human
smoothened, frizzled class receptor
SOS1
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Human
SOS Ras/Rac guanine nucleotide exchange factor 1
SOS2
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Human
SOS Ras/Rho guanine nucleotide exchange factor 2
SOX2
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Human
SRY-box transcription factor 2
SPHK1
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Human
sphingosine kinase 1
STAT3
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Human
signal transducer and activator of transcription 3
TBX3
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Human
T-box transcription factor 3
TCF3
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Human
transcription factor 3
TDGF1
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Human
teratocarcinoma-derived growth factor 1
TERT
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Human
telomerase reverse transcriptase
TFCP2L1
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Human
transcription factor CP2 like 1
TGFB1
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Human
transforming growth factor beta 1
TGFB2
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Human
transforming growth factor beta 2
TGFB3
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Human
transforming growth factor beta 3
TGFBR1
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Human
transforming growth factor beta receptor 1
TGFBR2
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Human
transforming growth factor beta receptor 2
TYK2
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Human
tyrosine kinase 2
UTF1
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Human
undifferentiated embryonic cell transcription factor 1
WNT1
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Human
Wnt family member 1
WNT10A
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Human
Wnt family member 10A
WNT10B
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Human
Wnt family member 10B
WNT11
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Human
Wnt family member 11
WNT16
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Human
Wnt family member 16
WNT2
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Human
Wnt family member 2
WNT2B
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Human
Wnt family member 2B
WNT3
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Human
Wnt family member 3
WNT3A
icon_0140_ls_gen_dna_rna-s
Human
Wnt family member 3A
WNT4
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Human
Wnt family member 4
WNT5A
icon_0140_ls_gen_dna_rna-s
Human
Wnt family member 5A
WNT5B
icon_0140_ls_gen_dna_rna-s
Human
Wnt family member 5B
WNT6
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Human
Wnt family member 6
WNT7A
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Human
Wnt family member 7A
WNT7B
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Human
Wnt family member 7B
WNT8A
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Human
Wnt family member 8A
WNT8B
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Human
Wnt family member 8B
WNT9A
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Human
Wnt family member 9A
WNT9B
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Human
Wnt family member 9B
ZIC3
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Human
Zic family member 3

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Product Specification
QuantiNova LNA Probe PCR Focus Panel Human Stem Cell Transcription Factors
GeneGlobe ID: UPHS-501Z | Cat. No.: 249955 | QuantiNova LNA Probe PCR Focus Panels
QuantiNova LNA Probe PCR Focus Panel
Product Specification
QuantiNova LNA PCR Focus Panel Human Embryonic Stem Cell
GeneGlobe ID: SBHS-081Z | Cat. No.: 249950 | QuantiNova LNA PCR Focus Panels
QuantiNova LNA PCR Focus Panel
Product Specification
QuantiNova LNA Probe PCR Focus Panel Human Embryonic Stem Cell
GeneGlobe ID: UPHS-081Z | Cat. No.: 249955 | QuantiNova LNA Probe PCR Focus Panels
QuantiNova LNA Probe PCR Focus Panel
Product Specification
QuantiNova LNA PCR Focus Panel Human Stem Cell Transcription Factors
GeneGlobe ID: SBHS-501Z | Cat. No.: 249950 | QuantiNova LNA PCR Focus Panels
QuantiNova LNA PCR Focus Panel
Product Specification

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