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 1kit RMB¥ 5480 现货

货期: 现货

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产品描述

货号:
KF2026
来源:
Rabbit, Goat
应用:
WB, IHC, IF/ICC, ELISA
反应:
Hm, Ms, Rt, Pg, Zf, Bv, Rb, Dg, Mk, Fs
产品包含:
货号 产品 规格 来源 应用 反应 文献引用
AF5402 LC3A/B Ab 20ul Rabbit WB,IHC,IF/ICC Hm,Ms,Rt 84
AF5128 Beclin 1 Ab 20ul Rabbit WB,IHC,IF/ICC Hm,Ms,Rt 60
AF7587 ATG3 Ab 20ul Rabbit WB Hm,Ms,Rt 0
DF6010 APG5L/ATG5 Ab 20ul Rabbit WB,IHC Hm,Ms,Rt 13
DF6130 ATG7 Ab 20ul Rabbit WB,IHC Hm,Ms,Rt 13
DF7937 ATG12 Ab 20ul Rabbit WB,IHC Hm,Ms,Rt 2
DF3825 ATG16L1 Ab 20ul Rabbit WB,IF/ICC Hm,Ms 1
AF7018 beta Actin Ab 20ul Rabbit WB,IHC,IF/ICC Hm,Ms,Rt,Pg,Zf,Bv,Rb,Dg,Mk,Fs 611
S0001 Goat Anti-Rabbit IgG HRP 100ul Goat WB,IHC,ELISA Rb 454
简介:
Autophagy is a highly conserved cellular process responsible for the degradation and recycling of cellular components, including damaged organelles, protein aggregates, and intracellular pathogens. It plays a critical role in maintaining cellular homeostasis, adaptation to stress conditions, and cellular survival.
储存条件:
Store at -20 °C. Stable for 12 months from date of receipt.

The autophagy pathway involves several steps:

1. **Initiation:** Autophagy is initiated by the formation of a specialized double-membrane structure called the phagophore or isolation membrane. This process is regulated by various signaling pathways, including the mTOR (mechanistic target of rapamycin) pathway, which inhibits autophagy under nutrient-rich conditions.

2. **Elaboration:** The phagophore expands and engulfs cellular cargo, forming a double-membrane vesicle called the autophagosome. This process involves the coordinated action of autophagy-related (ATG) proteins, including the ATG12-ATG5-ATG16L1 complex and the microtubule-associated protein 1A/1B-light chain 3 (LC3) protein.

3. **Maturation:** The autophagosome fuses with lysosomes to form an autolysosome, where the sequestered cargo is degraded by lysosomal hydrolases. This step is essential for the breakdown of cargo and recycling of macromolecules.

4. **Termination:** Once degradation is complete, the autolysosome disintegrates, and the resulting breakdown products are released back into the cytoplasm for reuse.

Autophagy is regulated by a complex interplay of signaling pathways and cellular stress responses, including nutrient availability, energy status, oxidative stress, and growth factor signaling. Dysregulation of autophagy has been implicated in various diseases, including cancer, neurodegenerative disorders, metabolic disorders, and infectious diseases. Therefore, understanding the autophagy pathway and its regulation is crucial for the development of therapeutic strategies targeting autophagy-related diseases.

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