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Updated: Jul 12, 2026

Using Caco-2 Cells to Study Lipid Transport by the Intestine
Published on: August 20, 2015
Methyl-beta-cyclodextrin increases permeability of Caco-2 cell monolayers by displacing specific claudins from
Daniel Lambert1, Catherine A O'Neill, Philip J Padfield
1Section of Gastrointestinal Science, University of Manchester, Manchester, UK.
Abstract:
In a previous study we demonstrated that depletion of Caco-2 cell cholesterol results in the loss of tight junction (TJ) integrity through the movement of claudins 3 and 4 and occludin, but not claudin 1, out of the TJs [1]. The aims of this study were to determine whether the major tight junction (TJ) proteins in Caco-2 cells are associated with cholesterol rich, membrane raft-like domains and if the loss of TJ integrity produced by the extraction of cholesterol reflects the dissolution of these domains resulting in the loss of TJ organisation. We have demonstrated that in Caco-2 cells claudins 1, 3, 4 and 7, JAM-A and occludin, are associated with cholesterol rich membrane domains that are insoluble in Lubrol WX. Co-immunoprecipitation studies demonstrated that there is no apparent restriction on the combination of claudins present in the rafts and that interaction between the proteins is dependent on cholesterol. JAM-A was not co-immunoprecipitated with the other TJ proteins indicating that it is resident within in a distinct population of rafts and therefore is likely not directly associated with the claudins/occludin present in the TJ complexes. Depletion of Caco-2 cell cholesterol with methyl-beta-cyclodextrin resulted in the displacement of claudins 3, 4 and 7, JAM-A and occludin, but not claudin 1, out of the cholesterol rich domains. Our data indicate that depletion of cholesterol does not result in the loss of the TJ-associated membrane rafts. However, the sterol is required to maintain the association of key proteins with the TJ associated membrane rafts and therefore the TJs. Furthermore, the data suggest that cholesterol may actually directly stabilise the multi-protein complexes that form the TJ strands.
Insights
Cholesterol is essential for maintaining the integrity of tight junctions (TJs) in Caco-2 cells by anchoring TJ proteins to cholesterol-rich membrane domains. Its depletion disrupts TJ organization without dissolving these domains.
Area of Science:
- Cell biology
- Membrane biology
- Biochemistry
Background:
- Previous studies showed cholesterol depletion disrupts tight junction (TJ) integrity in Caco-2 cells.
- TJ proteins like claudins and occludin are implicated in maintaining cell barrier function.
Purpose of the Study:
- To investigate the association of TJ proteins with cholesterol-rich membrane domains.
- To determine if cholesterol loss dissolves these domains, leading to TJ disorganization.
Main Methods:
- Utilized Caco-2 cell cultures.
- Employed Lubrol WX to isolate cholesterol-rich membrane domains.
- Performed co-immunoprecipitation studies.
- Depleted cellular cholesterol using methyl-beta-cyclodextrin.
Main Results:
- TJ proteins (claudins 1, 3, 4, 7, JAM-A, occludin) associate with cholesterol-rich, Lubrol WX-insoluble membrane domains.
- Cholesterol is crucial for the interaction and association of TJ proteins within these domains.
- Cholesterol depletion displaces TJ proteins from these domains but does not dissolve the domains themselves.
- JAM-A resides in distinct rafts, separate from claudin/occludin complexes.
Conclusions:
- Cholesterol is vital for anchoring TJ proteins to membrane rafts, thereby maintaining TJ integrity.
- Cholesterol may directly stabilize the multi-protein complexes forming TJ strands.
- TJ organization depends on cholesterol's role in protein association within specific membrane domains.
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