1. Signaling Pathways
  2. Autophagy
  3. Autophagy

Autophagy (自噬)

自噬 (Autophagy) 是溶酶体中保守的细胞降解和循环过程。在哺乳动物细胞中,自噬主要有三种类型:微自噬、巨自噬和分子伴侣介导的自噬 (CMA)。微自噬通过溶酶体膜的内陷或突出直接捕获货物,CMA 使用分子伴侣识别货物蛋白,然后展开并将其转移到溶酶体中,而巨自噬通过自噬体(从头合成的双膜囊泡)隔离货物,随后将其运输到溶酶体。

巨自噬是研究最深入的一种,它以低水平组成性发生,也可以在压力条件下进一步诱导,例如营养或能量匮乏,其显著特征是自噬蛋白降解。应激诱导的巨噬细胞在蛋白质分解代谢中发挥着重要作用,与另一种关键的蛋白质降解途径——泛素-蛋白酶体系统 (UPS) 一起发挥作用。

随着研究的进展,自噬在基础、营养丰富的条件下显得尤为重要,目前已被公认为是多种细胞成分分解代谢中的关键管家途径,例如蛋白质聚集体 (自噬)、脂质滴 (脂质自噬)、铁复合物 (铁蛋白自噬) 和碳水化合物。除了大分子,自噬还可以靶向多种细胞器和结构,如线粒体(线粒体自噬)、过氧化物酶体(过氧化物酶体自噬)、内质网(网状自噬或内质网自噬)、核糖体(核糖体自噬)、受精后精子遗传的细胞器(异体自噬)、胰腺细胞内的分泌颗粒(酶自噬)和细胞内病原体(异体自噬)。

自噬及其功能障碍与多种人类疾病有关,包括衰老、癌症、神经退行性疾病、心脏病和代谢性疾病,如糖尿病。许多药物和天然产物通过多种信号通路参与自噬调节。能够调节自噬的小分子似乎具有在动物模型或临床病程中干预此类疾病的巨大潜力。

Autophagy is a conserved cellular degradation and recycling process in the lysosome. In mammalian cells, there are three primary types of autophagy: microautophagy, macroautophagy, and chaperone-mediated autophagy (CMA). Microphagy captures cargoes by means of invaginations or protrusions of the lysosomal membrane directly, CMA uses chaperones to identify cargo proteins and then unfolds and transfers them into the lysosomal, while macroautophagy sequesters cargo by autophagosomes-de novo synthesized of double-membrane vesicles-and subsequently transport it to the lysosome.

Macroautophagy is the best studied and it occurs at a low level constitutively and can also be further induced under stress conditions, such as nutrient or energy starvation with a salient feature of autophagy protein degradation. Stress-induced macrophagy plays an important role in protein catabolism with another key protein degradation pathway, the ubiquitin–proteasome system (UPS).

As the study progressed, autophagy gains its importance under basal, nutrient-rich conditions, and is now recognized as a critical housekeeping pathway in catabolism of diverse cellular constituents, such as protein aggregates (aggrephagy), lipid droplets (lipophagy), iron complex (Ferritinophagy) and carbohydrate. Except for macromolecules, autophagy can also target several organelles and structures, such as mitochondria (mitophagy), peroxisome (pexophagy), endoplasmic reticulum (reticulophagy or ER-phagy), ribosome (ribophagy), spermatozoon-inherited organelles following fertilization (allophagy), secretory granules within pancreatic cells (zymophagy) and intracellular pathogens (xenophagy).

Autophagy and its dysfunction are associated with a variety of human pathologies, including ageing, cancer, neurodegenerative disease, heart disease and metabolic diseases, such as diabetes. Plenty of drugs and natural products are involved in autophagy modulation through multiple signaling pathways. Small molecules that can regulate autophagy seem to have great potential to intervene such diseases in animal models or clinical courses.

Cat. No. Product Name Effect Purity Chemical Structure
  • HY-N0901B
    Corynoxine hydrochloride Activator
    Corynoxine hydrochloride 是一种从 Uncaria macrophylla 中分离出的四环羟吲哚生物碱。Corynoxine hydrochloride 是一种天然的自噬增强剂,可通过 Akt/mTOR 途径促进 α-突触核蛋白的清除。
    Corynoxine hydrochloride
  • HY-164014
    9-CCN Activator
    9-CCN 是一种特异性靶向巨噬细胞的脂质化合物。9-CCN 可用于心脑血管疾病的研究。
    9-CCN
  • HY-B0165CS
    Pravastatin-d3 sodium Activator
    Pravastatin-d3 (sodium) 是 Pravastatin sodium salt 的氘代物。Pravastatin (CS-514) sodium salt 是一种竞争性的 HMG-CoA 还原酶抑制剂,对甾醇合成的 IC50为 5.6 μM。
    Pravastatin-d<sub>3</sub> sodium
  • HY-125197
    BRD5631 Activator
    BRD5631 是一种自噬 (autophagy) 增强剂,通过与 mTOR 无关的通路来增强自噬。BRD5631 能够影响先前与自噬相关的几种细胞疾病表型,包括蛋白聚集、细胞存活、细菌复制和炎性因子的产生。
    BRD5631
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