乳腺腺体发育的肌上皮细胞发育谱系
中文名称
通路描述
大多数出生后乳腺腺体的发育起源于未分化谱系决定的前体细胞(管腔前体细胞和肌上皮前体细胞),它们位于基底上皮层中(参见Inman等,2015;Edwards和Brennan,2021)。肌上皮细胞起源于肌上皮前体细胞,位于管腔细胞和腺泡周围,以及基底膜之间(参见Stingl等,2005)。肌上皮细胞形成围绕管腔的连续鞘层,但在腺泡周围分布较稀疏,其细胞质突起形成篮状结构,使部分管腔细胞与基底膜接触(参见Stingl等,2005)。肌上皮细胞呈梭形,能够收缩以响应催乳素,这对于泌乳(哺乳)是必要的(参见Stingl等,2005;Watson和Khaled,2020)。在成年小鼠乳腺腺体中,当管腔上皮细胞被消融后,未分化的肌上皮前体细胞可以转化为未分化的管腔前体细胞以重新 populate 管腔谱系(参见Centonze等,2020;参见Edwards和Brennan,2021)。在正常生理条件下,由管腔细胞分泌的肿瘤坏死因子(TNF)限制肌上皮前体细胞的多能性(参见Centonze等,2020)。消融管腔细胞后,Notch、Wnt和EGFR信号通路在肌上皮前体细胞中被激活,促进肌上皮前体细胞的再生诱导多能性(参见Centonze等,2020;参见Edwards和Brennan,2021)。在人乳腺类器官中,高强度EGFR信号促进肌上皮细胞命运(参见Pasic等,2011;Mukhopadyay等,2013)。FGF2和FGF7在人乳腺类器官中不是肌上皮细胞分化的必要条件,但它们对于建立乳腺管腔的适当结构是必需的(参见Pasic等,2011)。
英文描述
Cerebellar long-term depression (LTD), thought to be a molecular and cellular basis for cerebellar learning, is a process involving a decrease in the synaptic strength between parallel fiber (PF) and Purkinje cells (PCs) induced by the conjunctive activation of PFs and climbing fiber (CF). Multiple signal transduction pathways have been shown to be involved in this process. Activation of PFs terminating on spines in dendritic branchlets leads to glutamate release and activation of both AMPA and mGluRs. Activation of CFs, which make multiple synaptic contacts on proximal dendrites, also via AMPA receptors, opens voltage-gated calcium channels (VGCCs) and causes a generalized influx of calcium. These cellular signals, generated from two different synaptic origins, trigger a cascade of events culminating in a phosphorylation-dependent, long-term reduction in AMPA receptor sensitivity at the PF-PC synapse. This may take place either through receptor internalization and/or through receptor desensitization.
所含基因
60 个基因
ARAF
BRAF
CACNA1A
CRH
CRHR1
GNA11
GNA12
GNA13
GNAI1
GNAI2
GNAI3
GNAO1
GNAQ
GNAS
GNAZ
GRIA1
GRIA2
GRIA3
GRID2
GRM1
GUCY1A1
GUCY1A2
GUCY1B1
HRAS
IGF1
IGF1R
ITPR1
ITPR2
ITPR3
JMJD7-PLA2G4B
KRAS
LYN
MAP2K1
MAP2K2
MAPK1
MAPK3
NOS1
NRAS
PLA2G4A
PLA2G4B
PLA2G4C
PLA2G4D
PLA2G4E
PLA2G4F
PLCB1
PLCB2
PLCB3
PLCB4
PPP1R17
PPP2CA
PPP2CB
PPP2R1A
PPP2R1B
PRKCA
PRKCB
PRKCG
PRKG1
PRKG2
RAF1
RYR1