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Transmembrane Domain Oligomerization Propensity determined by ToxR Assay
Published on: May 26, 2011
Mitogenicity of a spread film of monophosphoryl lipid A
Gregory S Retzinger1, Kuni Takayama
1Department of Pathology and Laboratory Medicine, University of Cincinnati, Cincinnati, OH 45267-0529, USA. retzings@email.uc.edu
Abstract:
When spread at the air-water interface, monophosphoryl lipid A (MPLA) forms stable insoluble monolayers that collapse at approximately 55 dyn/cm. At collapse, the exclusion area of each molecule is approximately 119 Angstrom(2), consistent with the cross-sectional area of the lipid's 6 acyl chains. The nominal thickness of such films is approximately 22 Angstrom, determined, presumably, by the length of the acyl chains. For biological modeling of MPLA films, a system was developed in which monolayers of the lipid are supported by monodisperse hydrophobic beads of microscopic dimensions. Beads coated with MPLA monolayers within which the nominal area of each molecule is approximately equivalent to the "take-off" area of the lipid at the air-water interface, 280 Angstrom(2), are mitogenic for spleen cells. Given the natural occurrence of lipid A in the bacterial cell wall as well as the inherent stability of lipid A films, it seems reasonable to assume that at least some of the biological activities attributed to the lipid derive from its presentation/operation at an interface, i.e., on a surface. We propose beads coated with adsorbed films of lipid A will prove useful tools for modeling the activities of the lipid both in vitro and in vivo, and for elucidating the surface dependency and structural requirements of those activities.
Insights
Monophosphoryl lipid A (MPLA) forms stable films at interfaces. MPLA-coated beads are mitogenic, suggesting surface presentation is key to lipid A
Area of Science:
- Biochemistry
- Immunology
- Materials Science
Background:
- Monophosphoryl lipid A (MPLA) is a stable lipid found in bacterial cell walls.
- MPLA forms insoluble monolayers at the air-water interface with a collapse pressure of ~55 dyn/cm.
- Molecular packing at interfaces influences biological activity.
Purpose of the Study:
- To investigate the biophysical properties of MPLA monolayers.
- To develop a model system for studying lipid A's biological activities.
- To explore the role of interfacial presentation in lipid A's function.
Main Methods:
- Formation and characterization of MPLA monolayers at the air-water interface.
- Development of a bead-based system supporting MPLA monolayers.
- Assessment of mitogenic activity of MPLA-coated beads on spleen cells.
Main Results:
- MPLA monolayers collapse at ~55 dyn/cm with an exclusion area of ~119 Ų.
- MPLA films on beads, with an area of ~280 Ų, exhibit mitogenic properties.
- The study demonstrates a link between molecular area at interfaces and biological function.
Conclusions:
- MPLA films exhibit distinct properties at the air-water interface and on supported beads.
- Bead-supported MPLA films serve as a viable model for studying lipid A's biological activities.
- Interfacial presentation and surface area are critical factors for lipid A's bioactivity.

