Abstract
Cellular signalling processes are governed by a delicate balance of phosphatase and kinase activity. Over the past few years there has been considerable effort directed toward the development of kinase based therapeutic agents, whilst phosphatase based therapeutics have lagged. Herein we address key issues relating to selected therapeutic targets: malignancy, diabetes, immunosuppression, cystic fibrosis, asthma and cardiovascular disease. As part of ongoing studies we examine the recent developments in understanding the key interactions between the okadaic acid class of compounds and the serine / threonine protein phosphatases 1, 2A and 2B. Crystal structure and molecular modelling guided inhibitor development is also a key focus of this article.
Keywords: protein phosphatase inhibition, structure based design, okadaic acid, serine/threonine protein phosphatases
Current Pharmaceutical Design
Title: Protein Phosphatase Inhibition: Structure Based Design. Towards New Therapeutic Agents
Volume: 10 Issue: 10
Author(s): Jennette A. Sakoff and Adam McCluskey
Affiliation:
Keywords: protein phosphatase inhibition, structure based design, okadaic acid, serine/threonine protein phosphatases
Abstract: Cellular signalling processes are governed by a delicate balance of phosphatase and kinase activity. Over the past few years there has been considerable effort directed toward the development of kinase based therapeutic agents, whilst phosphatase based therapeutics have lagged. Herein we address key issues relating to selected therapeutic targets: malignancy, diabetes, immunosuppression, cystic fibrosis, asthma and cardiovascular disease. As part of ongoing studies we examine the recent developments in understanding the key interactions between the okadaic acid class of compounds and the serine / threonine protein phosphatases 1, 2A and 2B. Crystal structure and molecular modelling guided inhibitor development is also a key focus of this article.
Export Options
About this article
Cite this article as:
Sakoff A. Jennette and McCluskey Adam, Protein Phosphatase Inhibition: Structure Based Design. Towards New Therapeutic Agents, Current Pharmaceutical Design 2004; 10 (10) . https://dx.doi.org/10.2174/1381612043452686
DOI https://dx.doi.org/10.2174/1381612043452686 |
Print ISSN 1381-6128 |
Publisher Name Bentham Science Publisher |
Online ISSN 1873-4286 |
- 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
-
The Two fACEs of the Tissue Renin-Angiotensin Systems: Implication in Cardiovascular Diseases
Current Pharmaceutical Design Phosphorylated and O-GlcNAc Modified IRS-1 (Ser1101) and -2 (Ser1149) Contribute to Human Diabetes Type II
Protein & Peptide Letters Reactive Oxygen Species in Vascular Wall
Cardiovascular & Hematological Disorders-Drug Targets Targeted Therapies in Solid Tumours: Pinpointing the Tumours Achilles Heel
Current Pharmaceutical Design Endothelial Dysfunction in Morbid Obesity
Current Pharmaceutical Design The Biochemical Mechanisms of T-Cell Anergy
Current Immunology Reviews (Discontinued) Technological Innovations in Magnetic Resonance for Early Detection of Cardiovascular Diseases
Current Pharmaceutical Design MicroRNA-208a Potentiates Angiotensin II-triggered Cardiac Myoblasts Apoptosis via Inhibiting Nemo-like Kinase (NLK)
Current Pharmaceutical Design Murine Models of Vpr-Mediated Pathogenesis
Current HIV Research Repurposed Drugs in Metabolic Disorders
Current Topics in Medicinal Chemistry Pharmacogenetics of Target Genes Across Doxorubicin Disposition Pathway: A Review
Current Drug Metabolism Sirtuins: Possible Clinical Implications in Cardio and Cerebrovascular Diseases
Current Drug Targets Quinone-Based Drugs: An Important Class of Molecules in Medicinal Chemistry
Medicinal Chemistry Longevity Pathways (mTOR, SIRT, Insulin/IGF-1) as Key Modulatory Targets on Aging and Neurodegeneration
Current Topics in Medicinal Chemistry Pharmacological manipulation of peripheral vascular resistance in special clinical situations after pediatric cardiac surgery
Current Vascular Pharmacology Heme Oxygenase-1 in Vascular Smooth Muscle Cells Counteracts Cardiovascular Damage Induced by Angiotensin II
Current Neurovascular Research Protein O-GlcNAcylation: A Critical Regulator of the Cellular Response to Stress
Current Signal Transduction Therapy A Fast and Simple Conductometric Method for Verapamil Hydrochloride Determination in Pharmaceutical Formulations
Current Pharmaceutical Analysis The Critical Role of Toll-Like Receptor Signaling Pathways in the Induction and Progression of Autoimmune Diseases
Current Molecular Medicine Postoperative Care of the Transplanted Patient
Current Cardiology Reviews