Related Experiment Video
Updated: Jul 19, 2026

Stability and Structure of Bat Major Histocompatibility Complex Class I with Heterologous β2-Microglobulin
Published on: March 10, 2021
Constitutive internalization of murine MHC class I molecules
Hana Mahmutefendić1, Gordana Blagojević, Natalia Kucić
1Department of Physiology and Immunology, Medical Faculty, University of Rijeka, Rijeka, Croatia.
Insights
Murine major histocompatibility complex (MHC) class I molecules internalize differently based on their conformation. Fully conformed MHC molecules use the bulk pathway, while non-conformed molecules utilize lipid raft-dependent endocytosis.
Area of Science:
- Immunology
- Cell Biology
- Molecular Biology
Background:
- Cell surface glycoprotein levels depend on internalization and egress balance.
- Constitutive internalization involves endocytosis and recycling.
- Major histocompatibility complex (MHC) class I molecules exhibit varied cell surface stability and internalization kinetics.
Purpose of the Study:
- To compare spontaneous internalization of murine MHC class I molecules.
- To investigate internalization pathways for conformed and non-conformed MHC class I molecules.
Main Methods:
- Depletion of MHC class I egress using Cycloheximide (CHX) and brefeldin A (BFA).
- Internalization tracking after monoclonal antibody (mAb) binding.
- Inhibition studies using chlorpromazine (CP) and filipin.
Main Results:
- MHC class I alleles (K(d), D(d), L(d)) display distinct cell surface stabilities and internalization rates.
- Fully conformed MHC class I molecules (K(d), D(d), L(d)) internalize via a bulk pathway, unaffected by CP or filipin.
- Empty L(d) molecules (non-conformed) internalization is inhibited by filipin, indicating reliance on lipid raft-dependent endocytosis.
Conclusions:
- Conformed and non-conformed MHC class I molecules employ distinct endocytic pathways.
- MHC class I conformation dictates the mechanism of constitutive internalization.
Abstract:
The total number of cell surface glycoprotein molecules at the plasma membrane results from a balance between their constitutive internalization and their egress to the cell surface from intracellular pools and/or biosynthetic pathway. Constitutive internalization is net result of constitutive endocytosis and endocytic recycling. In this study we have compared spontaneous internalization of murine major histocompatibility complex (MHC) class I molecules (K(d), D(d), full L(d), and empty L(d)) after depletion of their egress to the cell surface (Cycloheximide [CHX], brefeldin A [BFA]) and internalization after external binding of monoclonal antibody (mAb). MHC class I alleles differ regarding their cell surface stability, kinetics, and in the way of internalization and degradation. K(d) and D(d) molecules are more stable at the cell surface than L(d) molecules and, thus, constitutively internalized more slowly. Although the binding of mAbs to cell surface MHC class I molecules results in faster internalization than depletion of their egress, it is still slow and, thereby, can serve as a model for tracking of MHC class I endocytosis. Internalization of fully conformed MHC class I molecules (K(d), D(d), and L(d)) was neither inhibited by chlorpromazine (CP) (inhibitor of clathrin endocytosis), nor with filipin (inhibitor of lipid raft dependent endocytosis), indicating that fully conformed MHC class I molecules are internalized via the bulk pathway. In contrast, internalization of empty L(d) molecules was inhibited by filipin, indicating that non-conformed MHC class I molecules require intact cholesterol-rich membrane microdomains for their constitutive internalization. Thus, conformed and non-conformed MHC class I molecules use different endocytic pathways for constitutive internalization.
More Related Videos
Related Concept Videos
Antigen Processing Pathways
MHC Class I: Presenting Endogenous...
Antigens Involved in Adaptive Immunity
Complete Antigens
Complete antigens possess both immunogenicity and reactivity.
Receptor Downregulation in MVBs
The EGFR can initiate signaling pathways that lead to cell proliferation, migration, and differentiation. Overexpression of EGFR stimulates cells to proliferate. Excessive EGFR activation may...
Immunoglobulin-like Cell Adhesion Molecules
Ig-CAMs exhibit either homophilic binding (to other Ig-CAMs) or heterophilic binding (to other ligands such as integrins). While most Ig-CAMs...

