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Two widely-used hypotheses describing the transport of proteins across Golgi cisternae are the cisternal maturation model and the vesicular transport model.
The cisternal maturation model proposes that the Golgi cisternae are dynamic structures where the vesicular tubular cluster or VTC arrives from the ER to become cis-cisterna.
As more VTCs get added, the older cisterna with its cargo moves through the Golgi stack to become medial-cisterna and eventually, trans-cisterna.
The enzyme composition of the cisterna changes as it moves through the stack and matures.
As coated vesicles bud off the trans-cisternae, this network gets replaced by maturing cisternae just behind it.
The vesicle transport model proposes that the Golgi cisternae are stable structures with unchanging enzyme composition.
A cargo-carrying vesicle from the ER fuses with the cis Golgi.
A COPI vesicle buds off from one cisterna and fuses with the next shuttling the cargo through the Golgi stack to the trans face.
From here, the cargo is released in a vesicle targeted to its final destination.
While it is unclear how molecules move between adjacent Golgi cisternae, it is apparent that the molecules move from cis- cisterna, the entry face, to…
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