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Open AccessJournal ArticleDOI

Functions of coated vesicles during protein absorption in the rat vas deferens

Daniel S. Friend, +1 more
- 01 Nov 1967 - 
- Vol. 35, Iss: 2, pp 357-376
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TLDR
Large coated vesicles serve as heterophagosomes to transport absorbed protein to lysosomes, and some small coated vedicle serve as primary lysOSome to transport hydrolytic enzymes from the Golgi complex to multivesicular bodies.
Abstract
The role of coated vesicles during the absorption of horseradish peroxidase was investigated in the epithelium of the rat vas deferens by electron microscopy and cytochemistry. Peroxidase was introduced into the vas lumen in vivo. Tissue was excised at selected intervals, fixed in formaldehyde-glutaraldehyde, sectioned without freezing, incubated in Karnovsky's medium, postfixed in OsO(4), and processed for electron microscopy. Some controls and peroxidase-perfused specimens were incubated with TPP,(1) GP, and CMP. Attention was focused on the Golgi complex, apical multivesicular bodies, and two populations of coated vesicles; large (> 1000 A) ones concentrated in the apical cytoplasm and small (<750 A) ones found primarily in the Golgi region. 10 min after peroxidase injection, the tracer is found adhering to the surface plasmalemma, concentrated in bristle-coated invaginations, and within large coated vesicles. After 20-45 min, it is present in large smooth vesicles, apical multivesicular bodies, and dense bodies. Peroxidase is not seen in small coated vesicles at any interval. Counts of small coated vesicles reveal that during peroxidase absorption they first increase in number in the Golgi region and later, in the apical cytoplasm. In both control and peroxidase-perfused specimens incubated with TPP, reaction product is seen in several Golgi cisternae and in small coated vesicles in the Golgi region. With GP, reaction product is seen in one to two Golgi cisternae, multivesicular bodies, dense bodies, and small coated vesicles present in the Golgi region or near multivesicular bodies. The results demonstrate that (a) this epithelium functions in the absorption of protein from the duct lumen, (b) large coated vesicles serve as heterophagosomes to transport absorbed protein to lysosomes, and (c) some small coated vesicles serve as primary lysosomes to transport hydrolytic enzymes from the Golgi complex to multivesicular bodies.

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Morphogenesis of the wing Anlagen in the mealworm beetle tenebrio molitor during the last larval instar.

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The blood-brain barrier of the rat choroid plexus.

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The secretory pathway from history to the state of the art.

TL;DR: The route of a protein along the secretory pathway is given, progress that was made within the last decades in the characterization of distinct intracellular transport steps is summarized and the current models for the formation and fusion of vesicular carriers are discussed.
References
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Improvements in epoxy resin embedding methods.

TL;DR: Epoxy embedding methods of Glauert and Kushida have been modified so as to yield rapid, reproducible, and convenientembedding methods for electron microscopy.
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The early stages of absorption of injected horseradish peroxidase in the proximal tubules of mouse kidney: ultrastructural cytochemistry by a new technique.

TL;DR: The early stages of absorption of intravenously injected horseradish peroxidase in proximal tubules of mouse kidney were studied with a new ultrastructural cytochemical technique, which gives sharp localization and is sensitive to protein transport.
Journal ArticleDOI

Junctional complexes in various epithelia

TL;DR: The tight junction is impervious to concentrated protein solutions and appears to function as a diffusion barrier or "seal," and the desmosome and probably also the zonula adhaerens may represent intercellular attachment devices.
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Functions of lysosomes.

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