Fr. 222.00

Cysteine Proteases of Pathogenic Organisms

English · Paperback / Softback

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Description

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Cysteine proteases expressed by pathogenic organisms play key roles in virulence including host entry, feeding and suppression of host immune responses. This book gives comprehensive coverage to all aspects of pathogen cysteine proteases and brings together numerous scientific advances which have been made over many years. Thus, the biochemistry, molecular biology and structure function relationships of these important pathogen enzymes are covered in detail. Written by leading researchers from Europe, Australia and North America, this book is essential reading for students and professionals interested in human medicine and infectious disease research.

List of contents

Papa In Like Proteases Of Staphylococcus Aureus.- The Lysine Specific Gingipain Of Porphyromonas: Importance To Pathogenicity.- Falcipains And Other Cysteine Proteases Of Malaria Parasites.- Cathepsin Proteases In Toxoplasma Gondii.- Entamoeba Histolytica Cathepsin Like Enzymes.- Cysteine Peptidases Of Kinetoplastid Parasites.- Cruzain: The Path From Target Validation To The Clinic.- The Phylogeny, Structure And Function Of Trematode Cysteine Proteases, With Particular Emphasis On The Fasciola Hepatica Cathepsin L Family.- Cathepsins B1 And B2 Of Trichobilharzia Spp., Bird Schistosomes Causing Cercarial Dermatitis.- Proteases In Blood Feeding Nematodes And Their Potential As Vaccine Candidates.- Cysteine Proteases From Bloodfeeding Arthropod Ectoparasites.- How Pathogen Derived Cysteine Proteases Modulate Host Immune Responses.- Cystatins Of Parasitic Organisms

About the author










MARK W. ROBINSON is a Chancellor's Postdoctoral Research Fellow at the Infection, Immunity and Innovation (i3) Institute at the University of Technology, Sydney (UTS), Australia. Robinson received a BSc (Hons) in Zoology (1999) and a PhD in molecular parasitology (2003) from Queen's University, Belfast (Northern Ireland). As a postdoctoral researcher, he worked on nematode proteomics and molecular biology at the University of Aberdeen (Scotland) until 2007 when he was awarded a prestigious Wain International Fellowship from the British Biotechnology and Biological Sciences Research Council (BBSRC) to continue his proteomics research at UTS (Australia). Robinson was awarded a UTS Chancellor's Postdoctoral Fellowship in 2008 which he currently holds as an independent researcher. His research interests include proteomics of host¿pathogen interactions, structure¿function relationships of parasite immunömodulators and the molecular biology of helminth proteases.



Summary

Cysteine proteases expressed by pathogenic organisms play key roles in virulence including host entry, feeding and suppression of host immune responses. This book gives comprehensive coverage to all aspects of pathogen cysteine proteases and brings together numerous scientific advances which have been made over many years. Thus, the biochemistry, molecular biology and structure‑function relationships of these important pathogen enzymes are covered in detail. Written by leading researchers from Europe, Australia and North America, this book is essential reading for students and professionals interested in human medicine and infectious disease research.

Product details

Assisted by John P. Dalton (Editor), P Dalton (Editor), P Dalton (Editor), Mark W. Robinson (Editor), Mar W Robinson (Editor), Mark W Robinson (Editor)
Publisher Springer, Berlin
 
Languages English
Product format Paperback / Softback
Released 01.01.2016
 
EAN 9781489979421
ISBN 978-1-4899-7942-1
No. of pages 226
Dimensions 178 mm x 13 mm x 254 mm
Weight 478 g
Illustrations XIX, 226 p.
Series Advances in Experimental Medicine and Biology
Advances in Experimental Medicine and Biology
Subjects Natural sciences, medicine, IT, technology > Medicine > Clinical medicine

B, Medicine, Medical research, molecular biology, Biomedical and Life Sciences, Biomedicine, general, Biomedical Research, Molecular Medicine, Cysteine;Dalton;Organism;Pathogenic;Protease;Robinson

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