5.9
正确折叠和组装的蛋白质会被选择性地包装成囊泡,并从内质网中流出。马达蛋白能够将这些囊泡运输到高尔基体中,并对其进行修饰,从而使这些蛋白质能够在目的地发挥作用。
高尔基体是一种真核生物的细胞器,具有独特的带状外观。它是对来自内质网的货物进行分拣和调度的主要场所。新到达的囊泡会进入最靠近内质网的高尔基体…
在真核细胞中,紧邻内质网的是高尔基体,它由一系列称为潴泡的盘状膜包被区室堆叠而成,具有两个不同的面:顺面和反面。
每个扁平囊都含有独特的酶和运输蛋白,可在蛋白质和脂质通过高尔基体时对其进行加工。
来自内质网的蛋白质和脂质进入cis-高尔基体,随后通过中间扁囊,在此通过添加糖、磷酸或硫酸基团进行化学修饰。
这些修饰使蛋白质在其靶向细胞器中发挥功能。距离内质网最远的是 转-高尔基体网络,在此处分子会根据其最终目的地被分选,目的地可能为细胞膜、溶酶体或细胞外基质。
在分选过程中,每个分子都会被标记上一段信号序列,该序列可被其靶向细胞器上的受体识别。
最后,货物分子被包装在运输囊泡中,并被运送至细胞内的相应目的地。
View the full transcript and gain access to JoVE Core videos
Q1: What is the Golgi apparatus and where is it located in the cell?
The Golgi apparatus is a membrane-bound organelle found in eukaryotic cells that processes and packages proteins and lipids. It consists of stacked, flattened sacs called cisternae arranged in a specific orientation. This organelle is typically located near the nucleus and endoplasmic reticulum, serving as a central hub in the secretory pathway.
Q2: How does the Golgi apparatus process proteins?
The Golgi apparatus receives proteins from the endoplasmic reticulum via transport vesicles. These proteins move through the cisternae, where they undergo modifications including glycosylation, phosphorylation, and sulfation. The organelle sorts and packages modified proteins into new vesicles destined for their final cellular or extracellular locations.
Q3: What is the relationship between the Golgi apparatus and protein secretion?
The Golgi apparatus plays a critical role in the secretory pathway by modifying, sorting, and packaging proteins for export. Proteins destined for secretion are processed through the Golgi cisternae and packaged into secretory vesicles. These vesicles then transport proteins to the cell membrane for release outside the cell.
Q4: What structural features distinguish the Golgi apparatus from other organelles?
The Golgi apparatus is characterized by its stack of flattened, disk-shaped cisternae with distinct cis and trans faces. The cis face receives vesicles from the endoplasmic reticulum, while the trans face releases vesicles to other destinations. This polarized structure enables directional protein movement and sequential modification through the organelle.
Q5: What types of modifications occur to proteins in the Golgi apparatus?
Proteins undergo several chemical modifications in the Golgi apparatus, including glycosylation, where carbohydrate chains are added or modified. Phosphorylation and sulfation also occur, adding phosphate and sulfate groups respectively. These modifications alter protein function, stability, and targeting, preparing them for their specific cellular roles.
Q6: How does the Golgi apparatus contribute to cell diversity?
Different cell types express varying Golgi apparatus sizes and enzyme compositions, reflecting their specialized protein processing needs. Secretory cells like pancreatic acinar cells have extensive Golgi networks for high protein output. This organellar variation across cell diversity enables cells to produce distinct protein products suited to their specific functions.
Q7: What happens when the Golgi apparatus malfunctions?
Golgi apparatus dysfunction disrupts protein processing, modification, and trafficking, leading to accumulation of misfolded proteins. This can trigger cellular stress responses and potentially activate protein degradation pathways. Defects in Golgi function are associated with genetic disorders affecting protein secretion and cellular communication.