维持多能性的信号通路
中文名称
通路描述
多能干细胞(PSCs)是具有无限自我更新能力和生成三胚层所有细胞类型潜力的基本细胞。目前已知的 PSCs 类型包括胚胎干细胞(ES)和诱导多能干细胞(iPS)。ES 细胞来源于囊胚期胚胎的内细胞团(ICM)。iPS 细胞是通过使用 Oct4、Sox2、Klf4 和 c-Myc(也称为 Yamanaka 因子)等定义的重编程因子将体细胞重编程回多能状态而获得的。包括 ES 细胞和 iPS 细胞的 PSCs 根据其形态、基因表达谱和外部信号依赖性分为两组。传统的鼠型 ES/iPS 细胞称为“原始状态”细胞。它们主要在 LIF 和 BMP 信号控制的维持下。另一方面,需要 Activin 和 FGF 信号的人类型 ES/iPS 细胞被称为“激活状态”。然而,这些信号通路都汇聚到激活一个核心转录网络,该网络在两组中相似,涉及 Oct4、Nanog 和 Sox2。这三个转录因子及其下游靶基因协调促进自我更新和多能性。
英文描述
Pluripotent stem cells (PSCs) are basic cells with an indefinite self-renewal capacity and the potential to generate all the cell types of the three germinal layers. The types of PSCs known to date include embryonic stem (ES) and induced pluripotent stem (iPS) cells. ES cells are derived from the inner cell mass (ICM) of blastocyst-stage embryos. iPS cells are generated by reprogramming somatic cells back to pluripotent state with defined reprogramming factors, Oct4, Sox2, Klf4 and c-Myc (also known as Yamanaka factors). PSCs including ES cells and iPS cells are categorized into two groups by their morphology, gene expression profile and external signal dependence. Conventional mouse-type ES/iPS cells are called 'naive state' cells. They are mainly maintained under the control of LIF and BMP signaling. On the other hand, human-type ES/iPS cells, which are in need of Activin and FGF signaling, are termed 'primed state'. However, these signaling pathways converge towards the activation of a core transcriptional network that is similar in both groups and involves OCt4, Nanog and Sox2. The three transcription factors and their downstream target genes coordinately promote self-renewal and pluripotency.
所含基因
144 个基因
ACVR1
ACVR1B
ACVR1C
ACVR2A
ACVR2B
AKT1
AKT2
AKT3
APC
APC2
AXIN1
AXIN2
BMI1
BMP4
BMPR1A
BMPR1B
BMPR2
COMMD3-BMI1
CTNNB1
DLX5
DUSP9
DVL1
DVL2
DVL3
ESRRB
ESX1
FGF2
FGFR1
FGFR2
FGFR3
FGFR4
FZD1
FZD10
FZD2
FZD3
FZD4
FZD5
FZD6
FZD7
FZD8
FZD9
GRB2
GSK3B
HAND1
HESX1
HOXA1
HOXB1
HOXD1
HRAS
ID1
ID2
ID3
ID4
IGF1
IGF1R
IL6ST
INHBA
INHBB
INHBC
INHBE
ISL1
JAK1
JAK2
JAK3
JARID2
KAT6A
KLF4
KRAS
LEFTY1
LEFTY2
LHX5
LIF
LIFR
MAP2K1
MAP2K2
MAPK1
MAPK11
MAPK12
MAPK13
MAPK14
MAPK3
MEIS1
MYC
MYF5
NANOG
NANOGP8
NEUROG1
NODAL
NRAS
ONECUT1
OTX1
P3R3URF-PIK3R3
PAX6
PCGF1
PCGF2
PCGF3
PCGF5
PCGF6
PIK3CA
PIK3CB
PIK3CD
PIK3R1
PIK3R2
PIK3R3
POU5F1
POU5F1B
RAF1
REST
RIF1
SETDB1
SKIL
SMAD1
SMAD2
SMAD3
SMAD4
SMAD5
SMAD9
SMARCAD1
SOX2
STAT3
TBX3
TCF3
TCF7
WNT1
WNT10A
WNT10B
WNT11
WNT16
WNT2
WNT2B
WNT3
WNT3A
WNT4
WNT5A
WNT5B
WNT6
WNT7A
WNT7B
WNT8A
WNT8B
WNT9A
WNT9B
ZFHX3
ZIC3