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Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo

Liver kinase B1 (LKB1) and its downstream effector AMP‐activated protein kinase (AMPK) play critical roles in polarity establishment by regulating membrane trafficking and energy metabolism. In collagen sandwich‐cultured hepatocytes, loss of LKB1 or AMPK impaired apical ABCB11 (Bsep) trafficking and...

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Autores principales: Porat‐Shliom, Natalie, Tietgens, Amber J., Van Itallie, Christina M., Vitale‐Cross, Lynn, Jarnik, Michal, Harding, Olivia J., Anderson, James M., Gutkind, J. Silvio, Weigert, Roberto, Arias, Irwin M.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2016
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5033699/
https://www.ncbi.nlm.nih.gov/pubmed/27396550
http://dx.doi.org/10.1002/hep.28724
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author Porat‐Shliom, Natalie
Tietgens, Amber J.
Van Itallie, Christina M.
Vitale‐Cross, Lynn
Jarnik, Michal
Harding, Olivia J.
Anderson, James M.
Gutkind, J. Silvio
Weigert, Roberto
Arias, Irwin M.
author_facet Porat‐Shliom, Natalie
Tietgens, Amber J.
Van Itallie, Christina M.
Vitale‐Cross, Lynn
Jarnik, Michal
Harding, Olivia J.
Anderson, James M.
Gutkind, J. Silvio
Weigert, Roberto
Arias, Irwin M.
author_sort Porat‐Shliom, Natalie
collection PubMed
description Liver kinase B1 (LKB1) and its downstream effector AMP‐activated protein kinase (AMPK) play critical roles in polarity establishment by regulating membrane trafficking and energy metabolism. In collagen sandwich‐cultured hepatocytes, loss of LKB1 or AMPK impaired apical ABCB11 (Bsep) trafficking and bile canalicular formation. In the present study, we used liver‐specific (albumin‐Cre) LKB1 knockout mice (LKB1(−/−)) to investigate the role of LKB1 in the maintenance of functional tight junction (TJ) in vivo. Transmission electron microscopy examination revealed that hepatocyte apical membrane with microvilli substantially extended into the basolateral domain of LKB1(−/−) livers. Immunofluorescence studies revealed that loss of LKB1 led to longer and wider canalicular structures correlating with mislocalization of the junctional protein, cingulin. To test junctional function, we used intravital microscopy to quantify the transport kinetics of 6‐carboxyfluorescein diacetate (6‐CFDA), which is processed in hepatocytes into its fluorescent derivative 6‐carboxyfluorescein (6‐CF) and secreted into the canaliculi. In LKB1(−/−) mice, 6‐CF remained largely in hepatocytes, canalicular secretion was delayed, and 6‐CF appeared in the blood. To test whether 6‐CF was transported through permeable TJ, we intravenously injected low molecular weight (3 kDa) dextran in combination with 6‐CFDA. In wild‐type mice, 3 kDa dextran remained in the vasculature, whereas it rapidly appeared in the abnormal bile canaliculi in LKB1(−/−) mice, confirming that junctional disruption resulted in paracellular exchange between the blood stream and the bile canaliculus. Conclusion: LKB1 plays a critical role in regulating the maintenance of TJ and paracellular permeability, which may explain how various drugs, chemicals, and metabolic states that inhibit the LKB1/AMPK pathway result in cholestasis. (Hepatology 2016;64:1317‐1329)
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spelling pubmed-50336992016-11-01 Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo Porat‐Shliom, Natalie Tietgens, Amber J. Van Itallie, Christina M. Vitale‐Cross, Lynn Jarnik, Michal Harding, Olivia J. Anderson, James M. Gutkind, J. Silvio Weigert, Roberto Arias, Irwin M. Hepatology Liver Biology/Pathobiology Liver kinase B1 (LKB1) and its downstream effector AMP‐activated protein kinase (AMPK) play critical roles in polarity establishment by regulating membrane trafficking and energy metabolism. In collagen sandwich‐cultured hepatocytes, loss of LKB1 or AMPK impaired apical ABCB11 (Bsep) trafficking and bile canalicular formation. In the present study, we used liver‐specific (albumin‐Cre) LKB1 knockout mice (LKB1(−/−)) to investigate the role of LKB1 in the maintenance of functional tight junction (TJ) in vivo. Transmission electron microscopy examination revealed that hepatocyte apical membrane with microvilli substantially extended into the basolateral domain of LKB1(−/−) livers. Immunofluorescence studies revealed that loss of LKB1 led to longer and wider canalicular structures correlating with mislocalization of the junctional protein, cingulin. To test junctional function, we used intravital microscopy to quantify the transport kinetics of 6‐carboxyfluorescein diacetate (6‐CFDA), which is processed in hepatocytes into its fluorescent derivative 6‐carboxyfluorescein (6‐CF) and secreted into the canaliculi. In LKB1(−/−) mice, 6‐CF remained largely in hepatocytes, canalicular secretion was delayed, and 6‐CF appeared in the blood. To test whether 6‐CF was transported through permeable TJ, we intravenously injected low molecular weight (3 kDa) dextran in combination with 6‐CFDA. In wild‐type mice, 3 kDa dextran remained in the vasculature, whereas it rapidly appeared in the abnormal bile canaliculi in LKB1(−/−) mice, confirming that junctional disruption resulted in paracellular exchange between the blood stream and the bile canaliculus. Conclusion: LKB1 plays a critical role in regulating the maintenance of TJ and paracellular permeability, which may explain how various drugs, chemicals, and metabolic states that inhibit the LKB1/AMPK pathway result in cholestasis. (Hepatology 2016;64:1317‐1329) John Wiley and Sons Inc. 2016-07-28 2016-10 /pmc/articles/PMC5033699/ /pubmed/27396550 http://dx.doi.org/10.1002/hep.28724 Text en © 2016 The Authors. Hepatology published by Wiley Periodicals, Inc., on behalf of the American Association for the Study of Liver Diseases. This is an open access article under the terms of the Creative Commons Attribution‐NonCommercial (http://creativecommons.org/licenses/by-nc/4.0/) License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited and is not used for commercial purposes.
spellingShingle Liver Biology/Pathobiology
Porat‐Shliom, Natalie
Tietgens, Amber J.
Van Itallie, Christina M.
Vitale‐Cross, Lynn
Jarnik, Michal
Harding, Olivia J.
Anderson, James M.
Gutkind, J. Silvio
Weigert, Roberto
Arias, Irwin M.
Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo
title Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo
title_full Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo
title_fullStr Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo
title_full_unstemmed Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo
title_short Liver kinase B1 regulates hepatocellular tight junction distribution and function in vivo
title_sort liver kinase b1 regulates hepatocellular tight junction distribution and function in vivo
topic Liver Biology/Pathobiology
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5033699/
https://www.ncbi.nlm.nih.gov/pubmed/27396550
http://dx.doi.org/10.1002/hep.28724
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