长寿调节通路 - 多种物种
中文名称
通路描述
衰老是一个分子、细胞和器官损伤积累的复杂过程,导致功能丧失和对疾病和死亡的易感性增加。尽管衰老的复杂性很高,但近期研究表明,限制饮食(DR)和下调营养感应通路(即胰岛素/胰岛素样生长因子信号 IIS 和靶丝氨酸激酶雷帕霉素靶蛋白 TOR)可显著增加实验室模式生物的寿命。这些营养信号通路在各种生物中保守。在蠕虫、昆虫和哺乳动物中,DR 通过 IIS/TOR 通路减少信号,使 PI3K/Akt/TOR 细胞内信号通路失活,从而激活抗衰老 FOXO 家族转录因子。在酵母中,DR 对寿命延长的作用与 TOR/Sch9 和 Ras/PKA 通路活性降低相关,并需要 serine-threonine 激酶 Rim15 和转录因子 Gis1 和 Msn2/4。这些转录因子(FOXO, DAF-16, Gis1, 和 Msn2/4)激活与抵抗氧化应激、能量代谢、DNA 损伤修复、葡萄糖代谢、自噬和蛋白质由伴侣保护相关的基因。
英文描述
Aging is a complex process of accumulation of molecular, cellular, and organ damage, leading to loss of function and increased vulnerability to disease and death. Despite the complexity of aging, recent work has shown that dietary restriction (DR) and genetic down-regulation of nutrient-sensing pathways, namely IIS (insulin/insulin-like growth factor signalling) and TOR (target-of- rapamycin) can substantially increase healthy life span of laboratory model organisms. These nutrient signaling pathways are conserved in various organisms. In worms, flies, and mammals, DR reduces signalling through IIS/TOR pathways, deactivating the PI3K/Akt/TOR intracellular signalling cascade and consequently activating the antiaging FOXO family transcription factor(s). In yeast, the effects of DR on life- span extension are associated with reduced activities of the TOR/Sch9 and Ras/PKA pathways and require the serine-threonine kinase Rim15 and transcription factors Gis1 and Msn2/4. These transcription factors (FOXO, DAF-16, Gis1, and Msn2/4) transactivate genes involved in resistance to oxidative stress, energy metabolism, DNA damage repair, glucose metabolism, autophagy and protection of proteins by chaperones.
所含基因
62 个基因
ADCY1
ADCY2
ADCY3
ADCY4
ADCY5
ADCY6
ADCY7
ADCY8
ADCY9
AKT1
AKT1S1
AKT2
AKT3
ATG5
CAT
CLPB
CRYAB
EIF4EBP2
FOXA2
FOXO1
FOXO3
HDAC1
HDAC2
HRAS
HSPA1A
HSPA1B
HSPA1L
HSPA6
HSPA8
IGF1
IGF1R
INS
INSR
IRS1
IRS2
IRS4
KRAS
MTOR
NRAS
P3R3URF-PIK3R3
PIK3CA
PIK3CB
PIK3CD
PIK3R1
PIK3R2
PIK3R3
PRKAA1
PRKAA2
PRKAB1
PRKAB2
PRKACA
PRKACB
PRKACG
PRKAG1
PRKAG2
PRKAG3
RPS6KB1
RPS6KB2
RPTOR
SIRT1
SOD1
SOD2