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Epithelial Anion Transport in Health and Disease
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Epithelial Anion Transport in Health and Disease - neues Buch

ISBN: 9780470029565

ID: 9780470029565

The Role of the SLC26 Transporters Family, No. 273 InhaltsangabeChair’ s introduction (Michael Welsh).    Overview of the SLC26 family and associated diseases (Juha Kere) .Discussion.Individual characteristics of members of the SLC26 family in Vertebrates and their homologues in insects (Marlies Knipper, Thomas Weber, Harald Winter, Claudia Braig,  Jelka Cimerman, Juergen T. Fraenzer and Ulrike Zimmermann).Discussion.Sulfate transport by SLC26 transporters (Daniel Markovich).Sugar transport by members of the SLC26 superfamily (Jonathan Ashmore and Jean-Marie Chambard).      Discussion.Discussion.SLC26A3 and congenital chloride diarrhoea (Pia Hö glund).Discussion.Expression, regulation and the role of SLC26 Cl-/HCO3- exchangers in kidney and gastrointestinal tract (Manoocher Soleimani).Discussion.Anion exchangers in flux: functional differences between human and mouse SLC26A6 polypeptides (Seth L. Alper, Andrew K. Stewart, Marina N. Chernova,Alexander S. Zolotarev, Jeffrey S. Clark and David H. Vandorpe).  Discussion.Physiology of electrogenic SLC26 paralogues (Michael F. Romero, Min-Hwang Chang, Consuelo Plata,Kambiz Zandi-Nejad, Vadjista Broumand, Caroline R. Sussman and David B. Mount).Discussion.Role of SLC26-mediated Cl-/base exchange in proximal tubule naCl transport (Peter S. Aronson).Discussion.SLC26 transporters and the inhibitory control of pancreatic ductal bicarbonate secretion (Pé ter Hegyi, Zoltá n Rakonczay Jr., Lá szló Tiszlavica, Andrá s Varró ,Andrá s Tó th, Gá bor Rá cz, Gá bor Varga, Michael A. Gray and Barry E. Argent).Discussion.Regulatory interaction between CFtR and the SLC26 transporters (Nikolay Shcheynikov, Shigeru B. H. Ko, Weizhong Zeng, Joo Young Choi, Michael R. Dorwart, Philip J. Thomas and Shmuel Muallem).Discussion.Insights from a transgenic mouse model on the role of SLC26A2 in health and disease.Discussion.Lorraine A. Everett new insights into the role of pendrin (SLC26A4) in inner ear fluid homeostasis (Antonella Forlino, Benedetta Gualeni, Fabio Pecora, Sara Della Torre,Rocco Piazza, Cecilia Tiveron, Laura Tatangelo, Andrea Superti-Furga, Giuseppe Cetta and Antonio Rossi).Discussion.the renal physiology of pendrin (SLC26A4) and its role in hypertension (Susan M. Wall).Discussion.  Interaction of prestin (SLC26A5) with monovalent intracellular anions (Dominik Oliver, Thorsten Schä chinger and Bernd Fakler).Discussion.&l Epithelial Anion Transport in Health and Disease: InhaltsangabeChair’ s introduction (Michael Welsh).    Overview of the SLC26 family and associated diseases (Juha Kere) .Discussion.Individual characteristics of members of the SLC26 family in Vertebrates and their homologues in insects (Marlies Knipper, Thomas Weber, Harald Winter, Claudia Braig,  Jelka Cimerman, Juergen T. Fraenzer and Ulrike Zimmermann).Discussion.Sulfate transport by SLC26 transporters (Daniel Markovich).Sugar transport by members of the SLC26 superfamily (Jonathan Ashmore and Jean-Marie Chambard).      Discussion.Discussion.SLC26A3 and congenital chloride diarrhoea (Pia Hö glund).Discussion.Expression, regulation and the role of SLC26 Cl-/HCO3- exchangers in kidney and gastrointestinal tract (Manoocher Soleimani).Discussion.Anion exchangers in flux: functional differences between human and mouse SLC26A6 polypeptides (Seth L. Alper, Andrew K. Stewart, Marina N. Chernova,Alexander S. Zolotarev, Jeffrey S. Clark and David H. Vandorpe).  Discussion.Physiology of electrogenic SLC26 paralogues (Michael F. Romero, Min-Hwang Chang, Consuelo Plata,Kambiz Zandi-Nejad, Vadjista Broumand, Caroline R. Sussman and David B. Mount).Discussion.Role of SLC26-mediated Cl-/base exchange in proximal tubule naCl transport (Peter S. Aronson).Discussion.SLC26 transporters and the inhibitory control of pancreatic ductal bicarbonate secretion (Pé ter Hegyi, Zoltá n Rakonczay Jr., Lá szló Tiszlavica, Andrá s Varró ,Andrá s Tó th, Gá bor Rá cz, Gá bor Varga, Michael A. Gray and Barry E. Argent).Discussion.Regulatory interaction between CFtR and the SLC26 transporters (Nikolay Shcheynikov, Shigeru B. H. Ko, Weizhong Zeng, Joo Young Choi, Michael R. Dorwart, Philip J. Thomas and Shmuel Muallem).Discussion.Insights from a transgenic mouse model on the role of SLC26A2 in health and disease.Discussion.Lorraine A. Everett new insights into the role of pendrin (SLC26A4) in inner ear fluid homeostasis (Antonella Forlino, Benedetta Gualeni, Fabio Pecora, Sara Della Torre,Rocco Piazza, Cecilia Tiveron, Laura Tatangelo, Andrea Superti-Furga, Giuseppe Cetta and Antonio Rossi).Discussion.the renal physiology of pendrin (SLC26A4) and its role in hypertension (Susan M. Wall).Discussion.  Interaction of prestin (SLC26A5) with monovalent intracellular anions (Dominik Oliver, Thorsten Schä chinger and Bernd Fakler).Discussion.&l Biowissenschaften Biotechnology Spezialthemen Medizin Biotechnologie Medical Sciences Special Topics Zell- u. Molekularbiologie Life Sciences Biotechnologie i. d. Biowissenschaften Medizin Medical Science Cell & Molecular Biology, John Wiley & Sons

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Epithelial Anion Transport in Health and Disease
Vergriffenes Buch, derzeit bei uns nicht verfügbar.
(*)
Epithelial Anion Transport in Health and Disease - neues Buch

ISBN: 9780470029565

ID: 9780470029565

The Role of the SLC26 Transporters Family, No. 273 InhaltsangabeChair& #8217 s introduction (Michael Welsh).& #160 & #160 Overview of the SLC26 family and associated diseases (Juha Kere) .Discussion.Individual characteristics of members of the SLC26 family in Vertebrates and their homologues in insects (Marlies Knipper, Thomas Weber, Harald Winter, Claudia Braig,& #160 Jelka Cimerman, Juergen T. Fraenzer and Ulrike Zimmermann).Discussion.Sulfate transport by SLC26 transporters (Daniel Markovich).Sugar transport by members of the SLC26 superfamily (Jonathan Ashmore and Jean-Marie Chambard).& #160 & #160 & #160 Discussion.Discussion.SLC26A3 and congenital chloride diarrhoea (Pia H& #246 glund).Discussion.Expression, regulation and the role of SLC26 Cl-/HCO3- exchangers in kidney and gastrointestinal tract (Manoocher Soleimani).Discussion.Anion exchangers in flux: functional differences between human and mouse SLC26A6 polypeptides (Seth L. Alper, Andrew K. Stewart, Marina N. Chernova,Alexander S. Zolotarev, Jeffrey S. Clark and David H. Vandorpe).& #160 Discussion.Physiology of electrogenic SLC26 paralogues (Michael F. Romero, Min-Hwang Chang, Consuelo Plata,Kambiz Zandi-Nejad, Vadjista Broumand, Caroline R. Sussman and David B. Mount).Discussion.Role of SLC26-mediated Cl-/base exchange in proximal tubule naCl transport (Peter S. Aronson).Discussion.SLC26 transporters and the inhibitory control of pancreatic ductal bicarbonate secretion (P& #233 ter Hegyi, Zolt& #225 n Rakonczay Jr., L& #225 szl& #243 Tiszlavica, Andr& #225 s Varr& #243 ,Andr& #225 s T& #243 th, G& #225 bor R& #225 cz, G& #225 bor Varga, Michael A. Gray and Barry E. Argent).Discussion.Regulatory interaction between CFtR and the SLC26 transporters (Nikolay Shcheynikov, Shigeru B. H. Ko, Weizhong Zeng, Joo Young Choi, Michael R. Dorwart, Philip J. Thomas and Shmuel Muallem).Discussion.Insights from a transgenic mouse model on the role of SLC26A2 in health and disease.Discussion.Lorraine A. Everett new insights into the role of pendrin (SLC26A4) in inner ear fluid homeostasis (Antonella Forlino, Benedetta Gualeni, Fabio Pecora, Sara Della Torre,Rocco Piazza, Cecilia Tiveron, Laura Tatangelo, Andrea Superti-Furga, Giuseppe Cetta and Antonio Rossi).Discussion.the renal physiology of pendrin (SLC26A4) and its role in hypertension (Susan M. Wall).Discussion.& #160 Interaction of prestin (SLC26A5) with monovalent intracellular anions (Dominik Oliver, Thorsten Sch& #228 chinger and Bernd Fakler).Discussion.&l Epithelial Anion Transport in Health and Disease: InhaltsangabeChair& #8217 s introduction (Michael Welsh).& #160 & #160 Overview of the SLC26 family and associated diseases (Juha Kere) .Discussion.Individual characteristics of members of the SLC26 family in Vertebrates and their homologues in insects (Marlies Knipper, Thomas Weber, Harald Winter, Claudia Braig,& #160 Jelka Cimerman, Juergen T. Fraenzer and Ulrike Zimmermann).Discussion.Sulfate transport by SLC26 transporters (Daniel Markovich).Sugar transport by members of the SLC26 superfamily (Jonathan Ashmore and Jean-Marie Chambard).& #160 & #160 & #160 Discussion.Discussion.SLC26A3 and congenital chloride diarrhoea (Pia H& #246 glund).Discussion.Expression, regulation and the role of SLC26 Cl-/HCO3- exchangers in kidney and gastrointestinal tract (Manoocher Soleimani).Discussion.Anion exchangers in flux: functional differences between human and mouse SLC26A6 polypeptides (Seth L. Alper, Andrew K. Stewart, Marina N. Chernova,Alexander S. Zolotarev, Jeffrey S. Clark and David H. Vandorpe).& #160 Discussion.Physiology of electrogenic SLC26 paralogues (Michael F. Romero, Min-Hwang Chang, Consuelo Plata,Kambiz Zandi-Nejad, Vadjista Broumand, Caroline R. Sussman and David B. Mount).Discussion.Role of SLC26-mediated Cl-/base exchange in proximal tubule naCl transport (Peter S. Aronson).Discussion.SLC26 transporters and the inhibitory control of pancreatic ductal bicarbonate secretion (P& #233 ter Hegyi, Zolt& #225 n Rakonczay Jr., L& #225 szl& #243 Tiszlavica, Andr& #225 s Varr& #243 ,Andr& #225 s T& #243 th, G& #225 bor R& #225 cz, G& #225 bor Varga, Michael A. Gray and Barry E. Argent).Discussion.Regulatory interaction between CFtR and the SLC26 transporters (Nikolay Shcheynikov, Shigeru B. H. Ko, Weizhong Zeng, Joo Young Choi, Michael R. Dorwart, Philip J. Thomas and Shmuel Muallem).Discussion.Insights from a transgenic mouse model on the role of SLC26A2 in health and disease.Discussion.Lorraine A. Everett new insights into the role of pendrin (SLC26A4) in inner ear fluid homeostasis (Antonella Forlino, Benedetta Gualeni, Fabio Pecora, Sara Della Torre,Rocco Piazza, Cecilia Tiveron, Laura Tatangelo, Andrea Superti-Furga, Giuseppe Cetta and Antonio Rossi).Discussion.the renal physiology of pendrin (SLC26A4) and its role in hypertension (Susan M. Wall).Discussion.& #160 Interaction of prestin (SLC26A5) with monovalent intracellular anions (Dominik Oliver, Thorsten Sch& #228 chinger and Bernd Fakler).Discussion.&l Biotechnologie Medizin, John Wiley & Sons

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Epithelial Anion Transport In Health And Disease - Wiley
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Epithelial Anion Transport In Health And Disease - neues Buch

2006

ISBN: 9780470029565

ID: 5574875

Cl- absorption and HCO3- secretion are intimately associated processes vital to epithelial function, itself a key physiological activity. Until recently the transporters responsible remained obscure, but a breakthrough occurred with the discovery of the SLC26 transporters family. It is now clear that the SLC26 transporters have broad physiological functions since mutations in several members. Cl- absorption and HCO3- secretion are intimately associated processes vital to epithelial function, itself a key physiological activity. Until recently the transporters responsible remained obscure, but a breakthrough occurred with the discovery of the SLC26 transporters family. It is now clear that the SLC26 transporters have broad physiological functions since mutations in several members are linked to a variety of diseases. This book describes the properties of this family in detail, with contributions from the leading global researchers in the field. Complementary views from experts on other ion channels are offered in the discussions, which make fascinating reading. This family consists of at least 10 genes, each of which has several splice variants. Most members of the family are expressed in the luminal membrane of epithelial cells. Characterization of anion transport by three members has revealed that all function as Cl-/HCO3- exchangers, suggesting that SLC26 transporters are responsible for the luminal Cl-/HCO3- exchange activity. The SLC26 transporters are activated by the CF transmembrane conductance regulator and activate it in turn, leading to a model in which these molecules act together to mediate epithelial Cl- absorption and HCO3- secretion. The book includes chapters on the transport of other molecules by the SLC26 family, including oxalate in the kidney and sugars in cochlear hair cells amongst others. It also describes recent discoveries that most SLC26 transporters bind to scaffold proteins and that they all contain a conserved domain predicted to participate in protein-protein interactions. These suggest the SLC26 transporters exist in complexes with other Cl- and HCO3- transporters, and possibly other regulatory proteins. This book explores the functional role of these interactions, leading to better understanding of transepithelial fluid and electrolyte secretion and the diseases associated with it. eBooks, Science & Geography~~Biology, Life Sciences~~Cellular Biology (cytology), Epithelial Anion Transport In Health And Disease~~EBook~~9780470029565~~Novartis Foundation, , Epithelial Anion Transport In Health And Disease, Novartis Foundation, 9780470029565, Wiley, 07/11/2006, , , , Wiley

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Epithelial Anion Transport in Health and Disease - The Role of the SLC26 Transporters Family, No. 273
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Epithelial Anion Transport in Health and Disease - The Role of the SLC26 Transporters Family, No. 273 - neues Buch

2006, ISBN: 0470029560

ID: 9780470029565

In englischer Sprache. Verlag: John Wiley & Sons, Chair's introduction (MichaelWelsh). Overview of the SLC26 family and associated diseases(Juha Kere) . Discussion. Individual characteristics of members of the SLC26 family inVertebrates and their homologues in insects (MarliesKnipper, Thomas Weber, Harald Winter, Claudia Braig, JelkaCimerman, Juergen T. Fraenzer and UlrikeZimmermann). Discussion. Sulfate transport by SLC26 transporters (DanielMarkovich). Sugar transport by members of the SLC26 superfamily(Jonathan Ashmore and Jean-MarieChambard). Discussion. Discussion. SLC26A3 and congenital chloride diarrhoea (PiaHöglund). Discussion. Expression, regulation and the role of SLC26 Cl-/HCO3-exchangers in kidney and gastrointestinal tract (ManoocherSoleimani). Discussion. Anion exchangers in flux: functional differences betweenhuman and mouse SLC26A6 polypeptides (Seth L. Alper, AndrewK. Stewart, Marina N. Chernova,Alexander S. Zolotarev, Jeffrey S.Clark and David H. Vandorpe). Discussion. Physiology of electrogenic SLC26 paralogues (MichaelF. Romero, Min-Hwang Chang, Consuelo Plata,Kambiz Zandi-Nejad,Vadjista Broumand, Caroline R. Sussman and David B.Mount). Discussion. Role of SLC26-mediated Cl-/base exchange in proximal tubulenaCl transport (Peter S. Aronson). Discussion. SLC26 transporters and the inhibitory control of pancreaticductal bicarbonate secretion (Péter Hegyi, ZoltánRakonczay Jr., László Tiszlavica, AndrásVarró,András Tóth, Gábor Rácz, GáborVarga, Michael A. Gray and Barry E. Argent). Discussion. Regulatory interaction between CFtR and the SLC26transporters (Nikolay Shcheynikov, Shigeru B. H. Ko,Weizhong Zeng, Joo Young Choi, Michael R. Dorwart, Philip J. Thomasand Shmuel Muallem). Discussion. Insights from a transgenic mouse model on the role of SLC26A2in health and disease. Discussion. Lorraine A. Everett new insights into the role of pendrin(SLC26A4) in inner ear fluid homeostasis (Antonella Forlino,Benedetta Gualeni, Fabio Pecora, Sara Della Torre,Rocco Piazza,Cecilia Tiveron, Laura Tatangelo, Andrea Superti-Furga, GiuseppeCetta and Antonio Rossi). Discussion. the renal physiology of pendrin (SLC26A4) and its role inhypertension (Susan M. Wall). Discussion. Interaction of prestin (SLC26A5) with monovalentintracellular anions (Dominik Oliver, ThorstenSchächinger and Bernd Fakler). Discussion. Final Discussion. Index of contributors. Subject index. PC-PDF, 284 Seiten, 284 Seiten, 1., Auflage, [GR: 9672 - Nonbooks, PBS / Biologie/Mikrobiologie], [SW: - Mikrobiologie (nicht-medizinisch) ], [Ausgabe: 1][PU:John Wiley & Sons], [PU: Wiley]

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Epithelial Anion Transport in Health and Disease (eBook, PDF) - John Wiley & Sons
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Epithelial Anion Transport in Health and Disease (eBook, PDF) - neues Buch

ISBN: 9780470029565

ID: 6ed1bd53ae83f8416cb50e47df643de0

Cl- absorption and HCO3- secretion are intimately associatedprocesses vital to epithelial function, itself a key physiologicalactivity. Until recently the transporters responsible remainedobscure, but a breakthrough occurred with the discovery of theSLC26 transporters family. It is now clear that the SLC26transporters have broad physiological functions since mutations inseveral members are linked to a variety of diseases. This bookdescribes the properties of this family in detail, withcontributions from the leading global researchers in the field.Complementary views from experts on other ion channels are offeredin the discussions, which make fascinating reading.This family consists of at least 10 genes, each of which hasseveral splice variants. Most members of the family are expressedin the luminal membrane of epithelial cells. Characterization ofanion transport by three members has revealed that all function asCl-/HCO3- exchangers, suggesting that SLC26 transporters areresponsible for the luminal Cl-/HCO3- exchange activity. The SLC26transporters are activated by the CF transmembrane conductanceregulator and activate it in turn, leading to a model in whichthese molecules act together to mediate epithelial Cl- absorptionand HCO3- secretion.The book includes chapters on the transport of other molecules bythe SLC26 family, including oxalate in the kidney and sugars incochlear hair cells amongst others. It also describes recentdiscoveries that most SLC26 transporters bind to scaffold proteinsand that they all contain a conserved domain predicted toparticipate in protein-protein interactions. These suggest theSLC26 transporters exist in complexes with other Cl- and HCO3-transporters, and possibly other regulatory proteins. This bookexplores the functional role of these interactions, leading tobetter understanding of transepithelial fluid and electrolytesecretion and the diseases associated with it. E-Book, [PU: Wiley]

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