自噬 - 其他
中文名称
通路描述
自噬是真核细胞降解细胞质物质的降解途径,其特征是形成一种称为自噬体的双层膜结构,既在基础功能中发挥作用,也在应激和衰老期间发挥作用。自噬过程可分为诱导、囊泡形成、延伸和闭合、融合和消化等几个阶段。大多数关键的自噬机器在真核生物中是保守的(见 map04140 了解动物和 map04138 了解真菌)。本图适用于其他真核生物,包括植物和原生生物,其中与自噬相关的基因(ATGs)在生命周期中发挥类似作用。然而,自噬在低等真核生物中的研究相对较少。
英文描述
Constitutive Signaling by Aberrant PI3K in Cancer Signaling by PI3K/AKT is frequently constitutively activated in cancer via gain-of-function mutations in one of the two PI3K subunits - PI3KCA (encoding the catalytic subunit p110alpha) or PIK3R1 (encoding the regulatory subunit p85alpha). Gain-of-function mutations activate PI3K signaling by diverse mechanisms. Mutations affecting the helical domain of PIK3CA and mutations affecting nSH2 and iSH2 domains of PIK3R1 impair inhibitory interactions between these two subunits while preserving their association. Mutations in the catalytic domain of PIK3CA enable the kinase to achieve an active conformation. PI3K complexes with gain-of-function mutations therefore produce PIP3 and activate downstream AKT in the absence of growth factors (Huang et al. 2007, Zhao et al. 2005, Miled et al. 2007, Horn et al. 2008, Sun et al. 2010, Jaiswal et al. 2009, Zhao and Vogt 2010, Urick et al. 2011).
所含基因
76 个基因
AREG
BDNF
BTC
CD19
CD28
CD80
CD86
EGF
EGFR
EPGN
ERBB2
EREG
ESR1
ESR2
FGF1
FGF10
FGF16
FGF18
FGF19
FGF2
FGF20
FGF22
FGF23
FGF3
FGF4
FGF6
FGF7
FGF9
FGFR4
FLT3LG
FRS2
FYN
GAB1
GAB2
HBEGF
HGF
ICOS
IRS1
IRS2
KIT
KITLG
KL
KLB
LCK
MET
NRG1
NRG2
NRG3
NRG4
NTF3
NTF4
NTRK2
NTRK3
PDGFA
PDGFB
PDGFRA
PDGFRB
PIK3AP1
PIK3CA
PIK3CB
PIK3CD
PIK3CG
PIK3R1
PIK3R2
PIK3R3
PIK3R5
PIK3R6
PTPN11
RAC1
RAC2
RHOG
SRC
STRN
TGFA
TRAT1
VAV1