The hemoglobin packs and carries proteins in a cell. The hemoglobin is a small, narrow, and almost invisible like structure.
Proteins leave the cell through a process called exocytosis, where they are packaged into vesicles and transported to the cell membrane. The vesicle then fuses with the cell membrane, releasing the proteins outside of the cell.
The Golgi body is responsible for packaging proteins for the cell. Once the proteins are produced by the rough E.R. they pass into the sack like cisternae that are the main part of the Golgi body. These proteins are then squeezed off into the little blebs which drift off into the cytoplasm.
DNA and proteins are packaged and organized into chromosomes. Just to clarify generally protein is everywhere, but is made within a cell in organelles called ribosomes.
Proteins are typically synthesized and modified in the endoplasmic reticulum (ER), a network of membrane-bound tubules and sacs. After synthesis, proteins may be further modified and packaged in the Golgi apparatus before being transported to their final destination within or outside 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.
Proteins leave the cell through a process called exocytosis, where they are packaged into vesicles and transported to the cell membrane. The vesicle then fuses with the cell membrane, releasing the proteins outside of the cell.
exocytosis. This process involves the fusion of vesicles containing the proteins with the cell membrane, allowing the proteins to be released outside of the cell.
The Golgi body is responsible for packaging proteins for the cell. Once the proteins are produced by the rough E.R. they pass into the sack like cisternae that are the main part of the Golgi body. These proteins are then squeezed off into the little blebs which drift off into the cytoplasm.
Proteins are packaged and stored primarily in the endoplasmic reticulum (ER) and the Golgi apparatus of the cell. The ER is involved in protein synthesis and folding, while the Golgi apparatus processes and packages proteins into vesicles for transportation to different parts of the cell or outside of the cell.
After proteins get modified in the Endoplasmic Reticulum, they are transported through the golgi apparatus where they get packaged into vesicles to late be secreted out of the cell or to be used within the cell.
DNA and proteins are packaged and organized into chromosomes. Just to clarify generally protein is everywhere, but is made within a cell in organelles called ribosomes.
Proteins are typically synthesized and modified in the endoplasmic reticulum (ER), a network of membrane-bound tubules and sacs. After synthesis, proteins may be further modified and packaged in the Golgi apparatus before being transported to their final destination within or outside the cell.
Proteins are sorted out and packaged by an organelle called the Golgi apparatus. This organelle processes and modifies proteins from the endoplasmic reticulum before packaging them into vesicles for transport to their final destination within the cell or outside of the cell.
Exocytosis
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.
They are packaged by the Golgi bodies for use either within the cell or for secretion from the cell.
The organelle responsible for transporting proteins around the cell is the endoplasmic reticulum (ER). Proteins are synthesized on the rough ER, where they are then modified and packaged into vesicles for transport to their final destination within the cell.