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Lysophospholipid Receptors
Signaling and Biochemistry
Jerold Chun (Edited by), J Chun (Author), Timothy Hla (Associate editor), Sarah Spiegel (Associate editor), Wouter Moolenaar (Associate editor)
9780470569054, Wiley
Hardback, published 10 May 2013
812 pages
24.1 x 16.5 x 4.4 cm, 1.306 kg
The current state of the science supporting new research in lysophospholipids The study of lysophospholipids exploded with the discovery of cell surface receptors on both lysophosphatidic acid (LPA) and sphingosine 1-phosphate (S1P). Since then, thousands of original research reportsranging from fundamental cell signaling to the physiology and pathophysiology of individual organ systemshave centered on lysophospholipids. This book draws together and analyzes the current literature to provide readers with a state-of-the-science review as well as current techniques that support research in all aspects of the field of lysophospholipid signaling. Lysophospholipid Receptors is divided into three sections: Within each section, the authors explain the similarities and differences between LPA and S1P signaling. Examples are provided that demonstrate the underlying mechanisms of lysophospholipid signaling across a broad range of organ systems, such as S1P signaling in cardiovascular physiology and disease and the neural effects of LPA signaling. Extensive references at the end of each chapter provide a gateway to the literature and facilitate further research into individual topics. Each chapter has been authored by one or more leading international authorities in lysophospholipid research. Based on a thorough analysis of the current research, the authors set forth what is established science and offer their expert opinion and perspective on new and emerging areas of research, setting the stage for further investigations that will solve current problems in the field.
PREFACE ix CONTRIBUTORS xi 1 LYSOPHOSPHATIDIC ACID (LPA) RECEPTOR SIGNALING 1 2 SPHINGOSINE 1-PHOSPHATE (S1P) RECEPTORS 41 3 GLOBAL GENE EXPRESSION PROGRAM OF LYSOPHOSPHATIDIC ACID (LPA)-STIMULATED FIBROBLASTS 61 4 IDENTIFICATION OF DIRECT INTRACELLULAR TARGETS OF SPHINGOSINE 1-PHOSPHATE (S1P) 71 5 LYSOPHOSPHOLIPID RECEPTOR SIGNALING PLATFORMS: THE RECEPTOR TYROSINE KINASE–G PROTEIN-COUPLED RECEPTOR SIGNALING COMPLEX 85 6 AUTOTAXIN: A UNIQUE ECTO-TYPE PYROPHOSPHODIESTERASE WITH DIVERSE FUNCTIONS 103 7 STUDIES ON AUTOTAXIN SIGNALING IN ENDOCYTIC VESICLE BIOGENESIS AND EMBRYONIC DEVELOPMENT USING WHOLE EMBRYO CULTURE AND ELECTROPORATION 121 8 STANDARDIZATION AND QUANTIFICATION OF LYSOPHOSPHATIDIC ACID COMPOUNDS BY NORMAL-PHASE AND REVERSED-PHASE CHROMATOGRAPHY–TANDEM MASS SPECTROMETRY 137 9 SPHINGOSINE KINASES: BIOCHEMISTRY, REGULATION, AND ROLES 153 10 FUNCTIONAL AND PHYSIOLOGICAL ROLES OF SPHINGOSINE 1-PHOSPHATE TRANSPORTERS 185 11 LIPID PHOSPHATE PHOSPHATASES AND SIGNALING BY LYSOPHOSPHOLIPID RECEPTORS 201 12 LIPID PHOSPHATE PHOSPHATASES: RECENT PROGRESS AND ASSAY METHODS 229 13 LYSOPHOSPHATIDIC ACID (LPA) SIGNALING AND CARDIOVASCULAR PATHOLOGY 265 14 SPHINGOSINE 1-PHOSPHATE (S1P) SIGNALING IN CARDIOVASCULAR PHYSIOLOGY AND DISEASE 283 15 SPHINGOSINE 1-PHOSPHATE (S1P) SIGNALING AND THE VASCULATURE 313 16 REGULATION OF THE NUCLEAR HORMONE RECEPTOR PPARγ BY ENDOGENOUS LYSOPHOSPHATIDIC ACIDS (LPAS) 349 17 MECHANISMS AND MODELS FOR ELUCIDATING THE CARDIAC EFFECTS OF SPHINGOSINE 1-PHOSPHATE (S1P) 373 18 NEURAL EFFECTS OF LYSOPHOSPHATIDIC ACID (LPA) SIGNALING 399 19 WIDESPREAD EXPRESSION OF SPHINGOSINE KINASES AND SPHINGOSINE 1-PHOSPHATE (S1P) LYASE SUGGESTS DIVERSE FUNCTIONS IN THE VERTEBRATE NERVOUS SYSTEM 419 20 LYSOPHOSPHATIDIC ACID AND NEUROPATHIC PAIN: DEMYELINATION AND LPA BIOSYNTHESIS 433 21 ROLE OF LYSOPHOSPHATIDIC ACID (LPA) IN BEHAVIORAL PROCESSES: IMPLICATIONS FOR PSYCHIATRIC DISORDERS 451 22 SPHINGOSINE 1-PHOSPHATE (S1P) SIGNALING AND LYMPHOCYTE EGRESS 475 23 BIOLOGY REVEALED BY SPHINGOSINE 1-PHOSPHATE (S1P) RECEPTOR GENE-ALTERED MICE 489 24 ROLE OF LYSOPHOSPHATIDIC ACID (LPA) IN THE INTESTINE 507 25 LYSOPHOSPHOLIPID SIGNALING IN FEMALE AND MALE REPRODUCTIVE SYSTEMS 529 26 THE GONADS AND THEIR MAGIC BULLET, LYSOPHOSPHATIDIC ACID: PHYSIOLOGICAL AND TOXICOLOGICAL FUNCTIONS OF LYSOPHOSPHATIDIC ACID (LPA) IN FEMALE AND MALE REPRODUCTIVE SYSTEMS 569 27 LYSOPHOSPHOLIPID REGULATION OF LUNG FIBROSIS 587 28 LYSOPHOSPHATIDIC ACID (LPA) SIGNALING AND BONE 609 29 LYSOPHOSPHATIDIC ACID (LPA) SIGNALING AND BONE CANCER 627 30 UNDERSTANDING THE FUNCTIONS OF LYSOPHOSPHATIDIC ACID RECEPTORS IN CANCER 641 31 LYSOPHOSPHATIDIC ACID RECEPTORS IN CANCER 661 32 LPA RECEPTOR SUBTYPES LPA1 AND LPA2 AS POTENTIAL DRUG TARGETS 681 33 CLINICAL INTRODUCTION OF LYSOPHOSPHATIDIC ACID (LPA) AND AUTOTAXIN ASSAYS 709 34 ANTIBODIES TO BIOACTIVE LYSOPHOSPHOLIPIDS 737 INDEX 753
Hope Mirendil, Mu-En Lin, and Jerold Chun
Bongnam Jung and Timothy Hla
Catelijne Stortelers and Wouter H. Moolenaar
Nitai C. Hait, Sheldon Milstien, and Sarah Spiegel
Nigel J. Pyne and Susan Pyne
Hiroshi Yukiura and Junken Aoki
Masayuki Masu, Seiichi Koike, Takuya Okada, and Kazuko Keino-Masu
Jeff D. Moore, Shengrong Li, David S. Myers, Stephen B. Milne, H. Alex Brown, and Walter A. Shaw
Melissa R. Pitman, Kate E. Jarman, Tamara M. Leclercq, Duyen H. Pham, and Stuart M. Pitson
Atsuo Kawahara and Tsuyoshi Nishi
Ganesh Venkatraman and David N. Brindley
Andrew J. Morris, Susan S. Smyth, Abdel K. Salous, and Andrew D. Renault
Susan S. Smyth, Anping Dong, Jessica Wheeler, Manikandan Panchatcharam, and Andrew J. Morris
Bodo Levkau
Christian Waeber
Ryoko Tsukahara, Tamotsu Tsukahara, and Gabor Tigyi
Shigeki Miyamoto, Sunny Yang Xiang, Nicole H. Purcell, and Joan Heller Brown
Nobuyuki Fukushima
H. Meng and V.M. Lee
Hiroshi Ueda
Guillermo Estivill-Torrús, Luis Javier Santín, Carmen Pedraza, Estela Castilla-Ortega, and Fernando Rodríguez de Fonseca
Alejandra Mendoza, Lauren A. Pitt, and Susan R. Schwab
Maria L. Allende, Mari Kono, Aikaterini Alexaki, Christina Giannouli, Jiman Kang, Catherine C. Theisen, Eleanor L. Koerner, and Richard L. Proia
C. Chris Yun and Peijian He
Xiaoqin Ye
Lygia Therese Budnik, Bärbel Brunswig-Spickenheier, and Dieter Müller
Barry S. Shea and Andrew M. Tager
Jean Pierre Salles, Sara Laurencin-Dalicieux, Françoise Conte-Auriol, Fabienne Briand-Mésange, and Isabelle Gennero
Olivier Peyruchaud, Marion David, Timothy L. Macdonald, and Kevin R. Lynch
Nattapon Panupinthu and Gordon B. Mills
Abir Mukherjee, Jinhua Wu, Yongling Gong, and Xianjun Fang
Gretchen Bain and T. Jon Seiders
Yutaka Yatomi, Koji Igarashi, Kazuhiro Nakamura, Ryunosuke Ohkawa, Akiko Masuda, Akiko Suzuki, Tatsuya Kishimoto, Hitoshi Ikeda, and Junken Aoki
Roger A. Sabbadini, Jonathan M. Wojciak, Kelli Moreno, James S. Swaney, and Barbara Visentin
Subject Areas: Chemistry [PN]
