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What organelle makes membrane proteins and proteins for export out of the cell?

Rough endoplasmic reticulum exports protein to the Golgi body in vesicles, the Golgi body then modifies these proteins and then transports them, again in vesicles


What organelle will form vesicles that fuse with the plasma membrane?

The Golgi apparatus is the organelle that forms vesicles, known as secretory vesicles, that fuse with the plasma membrane. These vesicles contain proteins or lipids that are then released outside the cell.


Made by rough ER travel to the Golgi in Sacks called?

Protein molecules made by rough endoplasmic reticulum travel to the Golgi apparatus in structures called vesicles. These vesicles transport the proteins from the rough ER to the Golgi for further modification, sorting, and packaging before being sent to their final destination within or outside the cell.


What takes proteins and moves them to the Golgi apparatus?

Proteins are transported to the Golgi apparatus primarily by vesicles that bud off from the endoplasmic reticulum (ER). These transport vesicles carry newly synthesized proteins from the rough ER, where they are synthesized, to the Golgi apparatus for further processing, modification, and sorting. The movement of these vesicles is facilitated by cytoskeletal elements and specific coat proteins that help in the budding and fusion processes.


What parts of the cell receive proteins and distribute them to other parts of the cell?

The endoplasmic reticulum (ER) receives newly synthesized proteins and transports them to the Golgi apparatus. The Golgi apparatus then modifies, sorts, and packages proteins into vesicles for distribution to other parts of the cell.

Related Questions

What organelle makes membrane proteins and proteins for export out of the cell?

Rough endoplasmic reticulum exports protein to the Golgi body in vesicles, the Golgi body then modifies these proteins and then transports them, again in vesicles


What organelle modifies concentrates and packages proteins made at the rough ER?

The Golgi apparatus modifies, concentrates, and packages proteins made at the rough endoplasmic reticulum (ER). Proteins are transported from the rough ER to the Golgi apparatus in vesicles, where they undergo further processing before being packaged into vesicles for transport to their final destination.


Sequence the course of the newly made proteins from the rough er to the outside of the cell?

Ribosomes make proteins on the rough ER. The proteins are packages into vesicles. The vesicles transport the newly made proteins from the rough ER to the Golgi apparautus. In the Golgi apparautus, proteins are pocessed and then packages into new versicles. Many of these varsicles move to the cells membran and release their contents outside the cell.


What job does the Golgi do?

The golgi apparatus's job is to recieve vesicles (broken down proteins) from the rough endoplasmic reticulum for modification.


What organelle will form vesicles that fuse with the plasma membrane?

The Golgi apparatus is the organelle that forms vesicles, known as secretory vesicles, that fuse with the plasma membrane. These vesicles contain proteins or lipids that are then released outside the cell.


Made by rough ER travel to the Golgi in Sacks called?

Protein molecules made by rough endoplasmic reticulum travel to the Golgi apparatus in structures called vesicles. These vesicles transport the proteins from the rough ER to the Golgi for further modification, sorting, and packaging before being sent to their final destination within or outside the cell.


What happens to secretory proteins when they are transported out of the rough endoplasmic reticulum?

When secretory proteins are transported out of the rough endoplasmic reticulum, they are packaged into vesicles and sent to the Golgi apparatus for further processing and sorting. In the Golgi apparatus, the proteins undergo modifications and are sorted into different vesicles for transport to their final destination within or outside the cell.


Is rough endoplasmic reticulum transport proteins to the Golgi apparatus?

Yes, the rough endoplasmic reticulum (RER) is responsible for synthesizing proteins, which are then transported to the Golgi apparatus for further modification and sorting before being sent to their final destination within or outside the cell. The RER is studded with ribosomes that carry out protein synthesis, while the Golgi apparatus processes and packages proteins into vesicles for transport.


What part of the cell carries secretions for export?

The Golgi apparatus is responsible for modifying, sorting, and packaging proteins and lipids into vesicles for secretion outside of the cell. These vesicles then transport the secretory products to the cell membrane for export.


How does the Golgi apparatus continue the function of the rough er?

The Golgi apparatus receives proteins from the rough ER, modifies them by adding sugars and lipids, and sorts them into vesicles for transport to different parts of the cell or for secretion outside the cell. In this way, the Golgi apparatus processes and packages proteins synthesized in the rough ER for distribution and use by the cell.


What takes proteins and moves them to the Golgi apparatus?

Proteins are transported to the Golgi apparatus primarily by vesicles that bud off from the endoplasmic reticulum (ER). These transport vesicles carry newly synthesized proteins from the rough ER, where they are synthesized, to the Golgi apparatus for further processing, modification, and sorting. The movement of these vesicles is facilitated by cytoskeletal elements and specific coat proteins that help in the budding and fusion processes.


Common route for protein movement within the endomembrane system?

Proteins are moved from the rough endoplasmic reticulum (ER) to the Golgi apparatus, where they are modified and sorted for transport to different destinations. From the Golgi, proteins can be sent to various organelles such as lysosomes or secretory vesicles for secretion outside the cell. The endomembrane system helps regulate protein trafficking and ensures proper targeting of proteins to their final cellular locations.