Abstract
During the last decades, a large amount of evidence has been gathered on the importance of protein-protein interactions in tuning and regulating most important biological processes. Since many of these pathways are deeply involved in diseases, extensive research efforts have been undertaken towards the modulation of protein-protein interactions. At the early stage of this challenge most of the attention was drawn to the drawbacks of such a therapeutic approach. Encouragingly, however, several recent studies provided a proof of concept that protein-protein interactions are actually valuable targets and that they do have a promising therapeutic potential.
This review is divided into three sections. In the first section we summarize the general features of protein-protein interfaces, focusing on the characteristics that make them different from classical protein-ligand binding sites, as well as on problematic aspects that hamper the application of classical drug discovery approaches. In the second section, we present how some of the characteristics of protein-protein interactions can be exploited fruitfully in drug design, hence focusing on the druggability of protein-protein interfaces. Methods successfully applied to protein-protein interactions will be introduced, giving special attention to the computational ones. In the third section, three case studies are presented. First, we describe protein-protein interaction modulators targeting HDM2 and the computational methods applied to identify them. Next, we present the retrospective application of the discussed approaches on the well-examined target IL-2. We conclude with a prospective application to the NHR2 protein, a target just recently validated experimentally with the aid of computational methods.
Keywords: Alanine scanning, binding pocket detection, druggability, DrugScore, high throughput screening, hot spots, IL-2, MM-GBSA, NHR2, virtual screening.
Current Pharmaceutical Design
Title:Modulating Protein-Protein Interactions: From Structural Determinants of Binding to Druggability Prediction to Application
Volume: 18 Issue: 30
Author(s): Alexander Metz, Emanuele Ciglia and Holger Gohlke
Affiliation:
Keywords: Alanine scanning, binding pocket detection, druggability, DrugScore, high throughput screening, hot spots, IL-2, MM-GBSA, NHR2, virtual screening.
Abstract: During the last decades, a large amount of evidence has been gathered on the importance of protein-protein interactions in tuning and regulating most important biological processes. Since many of these pathways are deeply involved in diseases, extensive research efforts have been undertaken towards the modulation of protein-protein interactions. At the early stage of this challenge most of the attention was drawn to the drawbacks of such a therapeutic approach. Encouragingly, however, several recent studies provided a proof of concept that protein-protein interactions are actually valuable targets and that they do have a promising therapeutic potential.
This review is divided into three sections. In the first section we summarize the general features of protein-protein interfaces, focusing on the characteristics that make them different from classical protein-ligand binding sites, as well as on problematic aspects that hamper the application of classical drug discovery approaches. In the second section, we present how some of the characteristics of protein-protein interactions can be exploited fruitfully in drug design, hence focusing on the druggability of protein-protein interfaces. Methods successfully applied to protein-protein interactions will be introduced, giving special attention to the computational ones. In the third section, three case studies are presented. First, we describe protein-protein interaction modulators targeting HDM2 and the computational methods applied to identify them. Next, we present the retrospective application of the discussed approaches on the well-examined target IL-2. We conclude with a prospective application to the NHR2 protein, a target just recently validated experimentally with the aid of computational methods.
Export Options
About this article
Cite this article as:
Metz Alexander, Ciglia Emanuele and Gohlke Holger, Modulating Protein-Protein Interactions: From Structural Determinants of Binding to Druggability Prediction to Application, Current Pharmaceutical Design 2012; 18 (30) . https://dx.doi.org/10.2174/138161212802651553
DOI https://dx.doi.org/10.2174/138161212802651553 |
Print ISSN 1381-6128 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-4286 |
Call for Papers in Thematic Issues
Advances in the Molecular Pathogenesis of Inflammatory Bowel Disease.
This thematic issue will emphasize the recent breakthroughs in the mechanisms of Inflammatory bowel disease (IBD) pathogenesis and devotes some understanding of both Crohn’s and ulcerative colitis. It is expected to include studies about cellular and genetic aspects, which help to precipitate the disease, and the immune system-gut microbiome relations ...read more
Blood-based biomarkers in large-scale screening for neurodegenerative diseases
Disease biomarkers are necessary tools that can be employ in several clinical context of use (COU), ranging from the (early) diagnosis, prognosis, prediction, to monitor of disease state and/or drug efficacy. Regarding neurodegenerative diseases, in particular Alzheimer’s disease (AD), a battery of well-validated biomarkers are available, such as cerebrospinal fluid ...read more
Current Pharmaceutical challenges in the treatment and diagnosis of neurological dysfunctions
Neurological dysfunctions (MND, ALS, MS, PD, AD, HD, ALS, Autism, OCD etc..) present significant challenges in both diagnosis and treatment, often necessitating innovative approaches and therapeutic interventions. This thematic issue aims to explore the current pharmaceutical landscape surrounding neurological disorders, shedding light on the challenges faced by researchers, clinicians, and ...read more
Diabetes mellitus: advances in diagnosis and treatment driving by precision medicine
Diabetes mellitus (DM) is a chronic degenerative metabolic disease with ever increasing prevalence worldwide which is now an epidemic disease affecting 500 million people worldwide. Insufficient insulin secretion from pancreatic β cells unable to maintain blood glucose homeostasis is the main feature of this disease. Multifactorial and complex nature of ...read more
- Author Guidelines
- 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
-
Malaria Chemotherapy: Recent Advances in Drug Development
Recent Patents on Anti-Infective Drug Discovery Deoxysugars in Bioactive Natural Products: Development of Novel Derivatives by Altering the Sugar Pattern
Current Topics in Medicinal Chemistry Targeting the Eph-ephrin System with Protein-Protein Interaction (PPI) Inhibitors
Current Drug Targets Are Bacteriocins Underexploited? NOVEL Applications for OLD Antimicrobials
Current Pharmaceutical Biotechnology Preface
Current Pediatric Reviews Glycine Transporter-1: A New Potential Therapeutic Target for Schizophrenia
Current Pharmaceutical Design Lab-on-a-chip Dielectrophoretic Manipulation of Beta-2 Microglobulin for Toxin Removal in An Artificial Kidney
Micro and Nanosystems Classification of Small GTPases with Hybrid Protein Features and Advanced Machine Learning Techniques
Current Bioinformatics <i>Nigella Sativa</i>: An Immunity Booster as Pandemic Treatment Solution Against SARS-CoV-2
Coronaviruses An Insight into the Immunomodulatory Effects of Probiotics in the Prevention of COVID-19 Disease
Current Biotechnology Post-Exercise Ketosis, Salivary Uric Acid and Interleukin-6 after a Simulated Wheelchair Basketball Match
Endocrine, Metabolic & Immune Disorders - Drug Targets The Role of Selectins During Lung Inflammation and Their Potential Impact for Innovative Therapeutic Strategies
Current Respiratory Medicine Reviews Cytotoxic Effect of 5-Fluorouracil-loaded Polymer-coated Magnetite Nanographene Oxide Combined with Radiofrequency
Anti-Cancer Agents in Medicinal Chemistry Synthesis and Characterisation of Aminoplast Microcapsules for Controlled Release of Bioactives. Influence of the Resin:Oil Ratio
Micro and Nanosystems Epidermal Growth Factor Receptor-Targeted Therapy of Colorectal Cancer with Panitumumab
Current Cancer Therapy Reviews Ligand-Based Peptide Design and Combinatorial Peptide Libraries to Target G Protein-Coupled Receptors
Current Pharmaceutical Design Angiogenesis Inhibitors and Radiation in Multimodality Cancer Therapy: Preclinical and Clinical Studies
Current Angiogenesis (Discontinued) Scope and Limitation of Ligand Docking: Methods, Scoring Functions and Protein Targets
Current Computer-Aided Drug Design Fluoro Aryl Azides: Synthesis, Reactions and Applications
Current Organic Chemistry Structural and Biochemical Investigation of Heptad Repeat Derived Peptides of Human SARS Corona Virus (hSARS-CoV) Spike Protein+
Protein & Peptide Letters