Cisternae example sentences

"Cisternae" Example Sentences

1. The cisternae in our body play a vital role in protein synthesis.
2. The Golgi apparatus is made up of several flattened cisternae.
3. The cisternae within the mitochondria are responsible for energy production.
4. The endoplasmic reticulum consists of cisternae with varying functions.
5. The cisternae within the smooth endoplasmic reticulum are responsible for lipid synthesis.
6. The cisternae within the rough endoplasmic reticulum are responsible for protein synthesis.
7. The trans cisternae of the Golgi apparatus are responsible for packaging proteins.
8. The cis cisternae of the Golgi apparatus are responsible for receiving proteins from the endoplasmic reticulum.
9. The flattened cisternae of the Golgi complex are connected by tubular structures.
10. The formation of cisternae within the Golgi apparatus occurs through a process of vesicle fusion.
11. The cisternae within the Golgi apparatus are highly dynamic and constantly changing.
12. The cis cisternae of the Golgi complex are closest to the endoplasmic reticulum.
13. The trans cisternae of the Golgi complex are the farthest from the endoplasmic reticulum.
14. The cisternae located within the Golgi apparatus are responsible for post-translational modifications of proteins.
15. The ribosomes attached to the rough endoplasmic reticulum synthesize proteins that are transported to the cisternae of the Golgi apparatus.
16. The Golgi apparatus is responsible for modifying, sorting, and packaging proteins that originate from the cisternae of the endoplasmic reticulum.
17. The cisternae of the Golgi apparatus are highly organized and are arranged in a stacked formation.
18. The flattened cisternae of the Golgi complex are arranged in a curved shape, resembling a series of pancakes.
19. The stacks of cisternae within the Golgi apparatus are separated by additional structures known as intermediate compartments.
20. Many cellular organelles, including the cisternae of the Golgi apparatus, are enclosed by a phospholipid bilayer.
21. The cisternae within the Golgi apparatus receive proteins by a process known as vesicular transport.
22. The cis cisternae are responsible for detecting and correcting any errors in protein folding.
23. The trans cisternae play a role in the formation of transport vesicles that move proteins to their final destinations.
24. Some viruses utilize the cisternae of the Golgi complex to replicate and spread throughout the body.
25. The cisternae of the endoplasmic reticulum are continuous with the cisternal space of the Golgi apparatus.
26. The cisternae of the Golgi complex may be involved in the regulation of cellular signaling pathways.
27. The luminal space within the cisternae is essential for proper protein folding and modification.
28. The cisternae within the Golgi apparatus are able to differentiate between specific types of proteins based on their structure and composition.
29. Defects in the structure and function of the cisternae of the Golgi apparatus are associated with several human diseases.
30. The cisternae of the Golgi complex are vital for proper cellular functioning and are involved in a range of essential processes.

Common Phases

1. The stacked cisternae are responsible for protein and lipid synthesis;
2. The Golgi apparatus consists of flattened sacs called cisternae;
3. The cisternae of the endoplasmic reticulum form a network throughout the cell;
4. The cisternae of the Golgi apparatus are different in structure and function;
5. The cisternae in the Golgi apparatus are arranged in a specific order;
6. The movement of proteins through the cisternae of the Golgi apparatus is regulated by enzymes;
7. The shape and arrangement of the cisternae in the endoplasmic reticulum can vary depending on cell type and function;
8. The cisternae of the Golgi apparatus can be divided into cis, medial, and trans regions;
9. The cisternae of the endoplasmic reticulum are continuous with the outer nuclear envelope;
10. The cisternae in the Golgi apparatus are involved in the modification and sorting of proteins.

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