AI Article Synopsis

  • The study used immunoelectron microscopy to analyze how gamma-type endorphins interact with HLA class I molecules.
  • While HLA class I molecules do not bind endorphins directly, they are crucial for the endocytosis (internalization) of gamma-endorphin.
  • The research suggests that HLA class I molecules might act as transport molecules for non-immunological ligands like endorphins, though further research is needed to explore this role.

Article Abstract

The nature of the interaction between gamma-type endorphins and the HLA class I molecules was studied by immunoelectronmicroscopy. The HLA molecules were not involved in the actual binding of endorphin to the cell. In contrast, for the endocytosis of gamma-endorphin, co-internalization of the HLA class I molecules is essential. The internalization process starts with clustering of gamma-endorphin and HLA class I molecules in coated pits. Cells that do not carry HLA class I molecules (Daudi) or do not internalize HLA class I molecules (EBV-transformed B cells) bind but do not internalize gamma-endorphin. On the basis of these observations, we suggest that the MHC class I molecules may function as transport molecules. Whether it is a general phenomenon that non-immunological ligands use the HLA class I molecules to get into the cell and immunological ligands (viral proteins) to reach the cell surface, remains to be established.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC1535355PMC
http://dx.doi.org/10.1111/j.1365-2249.1991.tb08143.xDOI Listing

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