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Biosynthesis of intestinal microvillar proteins. Evidence for an intracellular sorting taking place in, or shortly
Abstract:
Pig small intestinal mucosal explants, labelled with [35S]-methionine, were fractionated into Mg2+-precipitated (intracellular and basolateral) and microvillar membranes, and the orientation of newly synthesized aminopeptidase N (EC 3.4.11.2) in vesicles from the two fractions was studied by its accessibility to proteolytic cleavage. The mature polypeptide of Mr 166 000 from the latter fraction was cleaved by trypsin, proteinase K and papain, consistent with an extracellular location of the enzyme at its site of function. In contrast, both the mature form and the transient form of Mr 140 000 from the Mg2+-precipitated fraction were equally well protected from proteolytic cleavage (in the absence of Triton X-100). This indicates that the basolateral plasma membrane is unlikely to be involved in the post-Golgi transport of newly synthesized aminopeptidase N and suggests instead a direct delivery of the enzyme to the apical plasma membrane. A crude membrane preparation from labelled explants was used in immunoelectrophoretic purification of membranes to determine at what stage during intracellular transport newly synthesized microvillar enzymes are sorted, i.e., accumulated in areas of the membrane from where other proteins are excluded. The transient form of aminopeptidase N was only moderately enriched by immunopurification, using antibodies against different microvillar enzymes, but the mature form was enriched approximately 30-fold from explants, labelled for 30 min. This suggests that for microvillar enzymes, the aspects of sorting studied take place in, or shortly after exit from, the Golgi complex.
Insights
Newly synthesized aminopeptidase N is directly delivered to the apical plasma membrane in pig intestines. This study suggests microvillar enzymes are sorted shortly after exiting the Golgi complex.
Area of Science:
- Cell Biology
- Biochemistry
- Molecular Biology
Background:
- Aminopeptidase N is a key microvillar enzyme in the small intestine.
- Understanding the intracellular transport and sorting of membrane proteins is crucial for cellular function.
Purpose of the Study:
- To investigate the intracellular transport pathway of newly synthesized aminopeptidase N in pig small intestinal explants.
- To determine the site of sorting for microvillar enzymes during intracellular transport.
Main Methods:
- Fractionation of pig small intestinal mucosal explants into Mg2+-precipitated and microvillar membrane fractions.
- Studying the orientation of newly synthesized aminopeptidase N via proteolytic cleavage accessibility.
- Immunoelectrophoretic purification to assess the enrichment of aminopeptidase N during intracellular transport.
Main Results:
- Mature aminopeptidase N in microvillar membranes was susceptible to proteolytic cleavage, indicating an extracellular location.
- Both mature and transient forms of aminopeptidase N in Mg2+-precipitated fractions were protected from proteolysis.
- A 30-fold enrichment of mature aminopeptidase N was observed, suggesting sorting occurs post-Golgi.
Conclusions:
- The basolateral membrane is not involved in the transport of newly synthesized aminopeptidase N.
- Newly synthesized aminopeptidase N is directly delivered to the apical plasma membrane.
- Sorting of microvillar enzymes likely occurs in, or immediately after, the Golgi complex exit.