Abstract
Interactions between membrane proteins (MPs)/antimicrobial peptides (AMPs) and lipids play important roles in the creation and function of membrane transport events like ion channels, defects, etc. Energetics based on these interactions have been found to explain various aspects of general drug effects on cell membranes. We have used various membrane active agents (MAAs) such as peptides, chemotherapy drugs, amphipathic molecules, amphiphiles, etc. to observe the complexes created between them and lipids in bilayers that often serve as membrane transport events in order to better understand the underlying mechanism(s). We find that the structures and functions of MAAs-lipids complexes are very specific to the respective MAAs. However, the underlying mechanisms originating from some common types of interactions are found to depend on physical properties of both MAAs and lipids. Specifically, the stability and functions of MAAs-lipid complexes depend primarily on the electrostatic energy coupling between MAAs and lipids. The mechanical energy coupling between MAAs and lipids, depending mainly on the bilayer elastic profiles, contributes just secondary effects into the stability and functions of the complexes. Both of these electrostatic and mechanical energetic couplings emerge from a unique interaction energy expression appearing from screened Coulomb interaction treatment between MAAs and lipids, mainly depending on the localized charge profiles and on other physical properties of both MAAs and lipids. This review will address the functions and underlying molecular mechanisms of membrane transport events, membrane effects of general drugs, etc. and thus will open up avenues leading to novel drug discovery.
Keywords: Antimicrobial peptide, membrane protein, chemotherapy drug, lipid membrane, ion channels, defects, lipid charge, screened Coulomb interaction, electrical energy, mechanical energy, elastic bilayer
Current Medicinal Chemistry
Title:Ion Pore Formation in Lipid Bilayers and Related Energetic Considerations
Volume: 19 Issue: 11
Author(s): Md. Ashrafuzzaman and J. Tuszynski
Affiliation:
Keywords: Antimicrobial peptide, membrane protein, chemotherapy drug, lipid membrane, ion channels, defects, lipid charge, screened Coulomb interaction, electrical energy, mechanical energy, elastic bilayer
Abstract: Interactions between membrane proteins (MPs)/antimicrobial peptides (AMPs) and lipids play important roles in the creation and function of membrane transport events like ion channels, defects, etc. Energetics based on these interactions have been found to explain various aspects of general drug effects on cell membranes. We have used various membrane active agents (MAAs) such as peptides, chemotherapy drugs, amphipathic molecules, amphiphiles, etc. to observe the complexes created between them and lipids in bilayers that often serve as membrane transport events in order to better understand the underlying mechanism(s). We find that the structures and functions of MAAs-lipids complexes are very specific to the respective MAAs. However, the underlying mechanisms originating from some common types of interactions are found to depend on physical properties of both MAAs and lipids. Specifically, the stability and functions of MAAs-lipid complexes depend primarily on the electrostatic energy coupling between MAAs and lipids. The mechanical energy coupling between MAAs and lipids, depending mainly on the bilayer elastic profiles, contributes just secondary effects into the stability and functions of the complexes. Both of these electrostatic and mechanical energetic couplings emerge from a unique interaction energy expression appearing from screened Coulomb interaction treatment between MAAs and lipids, mainly depending on the localized charge profiles and on other physical properties of both MAAs and lipids. This review will address the functions and underlying molecular mechanisms of membrane transport events, membrane effects of general drugs, etc. and thus will open up avenues leading to novel drug discovery.
Export Options
About this article
Cite this article as:
Ashrafuzzaman Md. and Tuszynski J., Ion Pore Formation in Lipid Bilayers and Related Energetic Considerations, Current Medicinal Chemistry 2012; 19 (11) . https://dx.doi.org/10.2174/092986712799944996
DOI https://dx.doi.org/10.2174/092986712799944996 |
Print ISSN 0929-8673 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-533X |

- Author Guidelines
- Bentham Author Support Services (BASS)
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Cell Clocks and Neuronal Networks: Neuron Ticking and Synchronization in Aging and Aging-Related Neurodegenerative Disease
Current Alzheimer Research Botulinum Toxin: Pharmacology and Clinical Developments: A Literature Review
Medicinal Chemistry Bacteriocins Active Against Multi-Resistant Gram Negative Bacteria Implicated in Nosocomial Infections
Infectious Disorders - Drug Targets Promises of Nanotechnology for Drug Delivery to Brain in Neurodegenerative Diseases
Current Nanoscience Enteric Ecosystem Disruption in Autism Spectrum Disorder: Can the Microbiota and Macrobiota be Restored?
Current Pharmaceutical Design Current Concepts in the Understanding of Pain in the Rheumatic Diseases
Current Rheumatology Reviews Inhibition of Voltage-Gated Calcium Channels by RGK Proteins
Current Molecular Pharmacology Converging Pathways in the Occurrence of Endoplasmic Reticulum (ER) Stress in Huntingtons Disease
Current Molecular Medicine Functional Connectivity Hubs Could Serve as a Potential Biomarker in Alzheimer’s Disease: A Reproducible Study
Current Alzheimer Research Material Couture for Wound Healing and Regeneration: an Overview
Current Pharmaceutical Design A Historical and Clinical Perspective Endorsing Person-centered Management of Fibromyalgia Syndrome
Current Rheumatology Reviews State of the Art of Biochemical Markers in Metastatic Bone Disease and the Role of Bisphosphonates as Therapeutic Agents
Current Pharmaceutical Analysis Using Non-Pharmacological Approaches for CJD Patient and Family Support as Provided by the CJD Foundation and CJD Insight
CNS & Neurological Disorders - Drug Targets Targeting Protein-Protein Interactions in the Proteasome Super-Assemblies.
Current Topics in Medicinal Chemistry Myeloperoxidase as a Target for the Treatment of Inflammatory Syndromes: Mechanisms and Structure Activity Relationships of Inhibitors
Current Medicinal Chemistry Molecular Pharmacology of the Glycine Receptor Chloride Channel
Current Pharmaceutical Design Cellular Effects of Cylindrospermopsin (Cyanobacterial Alkaloid Toxin) and its Potential Medical Consequences
Current Medicinal Chemistry Vitamin D Levels in Middle-Aged Patients with Obstructive Sleep Apnoea Syndrome
Current Vascular Pharmacology Evidence Based Psychosocial Practices and Recovery from Schizophrenia
Current Psychiatry Reviews Patent Selections
Recent Patents on CNS Drug Discovery (Discontinued)