Related Experiment Videos

Biosynthesis of intestinal microvillar proteins. Evidence for an intracellular sorting taking place in, or shortly

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.

Related Concept Videos