菌细胞外囊泡蛋白与生物相互作用的潜力
Jingyan Xu1, Yujin Zhao1, Yanguang Zhou1
1College of Life Science, Zhejiang Chinese Medical University, 548 Binwen Road, Binjiang District, Hangzhou 310053, China.
Molecules (Basel, Switzerland)
|September 14, 2024
概括
细胞外囊泡 (EVs) 是细胞间的关键通信器. 这项研究探讨了EV中的真菌蛋白质,揭示了真菌相互作用的洞察力以及在疾病治疗和疫苗开发中的潜在应用.
科学领域:
- 生物化学 生物化学
- 细胞生物学 细胞生物学
- 菌类学 菌类学是指菌类学.
背景情况:
- 细胞外囊泡 (EVs) 是参与细胞间通信的脂质双层结构.
- 包括外体在内的EVs含有各种蛋白质,这些蛋白质对细胞功能至关重要.
- 蛋白质组学的进步提高了对蛋白质组成和EVs中的作用的理解.
研究的目的:
- 研究真菌细胞外囊泡中的蛋白质的功能.
- 为了确定真菌蛋白标记物用于研究EV机制.
- 探索EV中免疫蛋白对人类疾病的治疗潜力.
主要方法:
- 菌细胞外囊泡的蛋白质组分析.
- 对EV蛋白含量的生物信息分析.
- 关于EV蛋白功能和免疫应用的文献综述.
主要成果:
- 确定了EV蛋白在细胞壁结构,真菌毒性和信号传输中的潜在功能.
- 总结了EV的真菌蛋白标记物,有助于机制研究.
- 突出了EV中免疫蛋白质在潜在疾病治疗中的作用.
结论:
- 菌EV蛋白提供了对宿主真菌相互作用的新视角.
- EV蛋白标记物作为机理学研究的有价值的工具.
- EVs中的免疫蛋白为疫苗开发和疾病治疗提供了新的途径.
相关概念视频
Overview of Exosomes
2.7K
Exosomes are stable, lipid bilayer-enclosed vesicles capable of crossing biological barriers. They can carry a wide range of molecules required for intercellular communication. Once exosomes are released from the cell where they originated, they enter a recipient cell through various pathways such as fusion, receptor-mediated endocytosis, macropinocytosis, and phagocytosis.
Stahl et al. discovered exosomes in 1983, but the exosomes were initially considered waste products released from the...
Stahl et al. discovered exosomes in 1983, but the exosomes were initially considered waste products released from the...
2.7K
Fusion of Secretory Vesicles with the Plasma Membrane
11.0K
Proteins and neurotransmitters in secretory vesicles can be released from a cell upon vesicle docking, priming, and fusion with the plasma membrane. Vesicles are docked and primed in preparation for the quick exocytosis of their contents in response to a stimulus. The fusion process is mainly carried out by a SNAP Receptor or SNARE complex, consisting of synaptobrevin, syntaxin-1, and SNAP-25.
In 1993, Jim Rothman proposed that the antiparallel pairing of vesicular and transmembrane SNAREs, or...
In 1993, Jim Rothman proposed that the antiparallel pairing of vesicular and transmembrane SNAREs, or...
11.0K
Overview of Secretory Vesicles
8.5K
Secretory vesicles, also known as dense core vesicles (DCVs), are membrane-bound vesicles that transport secretory proteins, such as hormones or neurotransmitters. Regulated secretory vesicles transport proteins from the trans-Golgi network to the exterior of the cell. Proteins present in regulated secretory vesicles are required to be rapidly exocytosed in large amounts upon a specific stimulus.
Various proteins regulate the aggregation of molecules inside the secretory vesicles. Chromogranins...
Various proteins regulate the aggregation of molecules inside the secretory vesicles. Chromogranins...
8.5K
Vesicular Tubular Clusters
2.5K
After budding out from the ER membrane, some COPII vesicles lose their coat and fuse with one another to form larger vesicles and interconnected tubules called vesicular tubular clusters or VTCs. These clusters constitute a compartment at the ER-Golgi interface known as ERGIC (Endoplasmic Reticulum Golgi Intermediate Compartment). The ERGIC is a mobile membrane-bound cargo transport system that sorts proteins secreted from ER and delivers them to the Golgi.
With the help of motor proteins such...
With the help of motor proteins such...
2.5K
Exocytosis
66.4K
Exocytosis is used to release material from cells. Like other bulk transport mechanisms, exocytosis requires energy.
66.4K
SNAREs and Membrane Fusion
10.8K
Once a transport vesicle has recognized its target organelle, the vesicular membrane needs to fuse with the target membrane to unload the cargo. Transmembrane proteins called SNAREs present on organelle membranes and their vesicles, mediate vesicle fusion.
SNAREs exist in pairs that symmetrically interact and catalyze the fusion of the lipid bilayers in vesicle and target organelle. v-SNARE in the vesicle membrane are single polypeptide chains that bind to a complementary t-SNARE, composed of 2...
SNAREs exist in pairs that symmetrically interact and catalyze the fusion of the lipid bilayers in vesicle and target organelle. v-SNARE in the vesicle membrane are single polypeptide chains that bind to a complementary t-SNARE, composed of 2...
10.8K


