LKB1 is an evolutionary conserved kinase implicated in a wide range of cellular functions including inhibition of cell proliferation, regulation of cell polarity and metabolism. When Lkb1 is inactivated in the liver, glucose homeostasis is perturbed, cellular polarity is affected and cholestasis develops. Cholestasis occurs as a result from deficient bile duct development, yet how LKB1 impacts on biliary morphogenesis is unknown.We characterized the phenotype of mice in which deletion of the Lkb1 gene has been specifically targeted to the hepatoblasts. Our results confirmed that lack of LKB1 in the liver results in bile duct paucity leading to cholestasis. Immunostaining analysis at a prenatal stage showed that LKB1 is not required for diff...
Patients with Alagille syndrome (AGS), a genetic disorder of Notch signaling, suffer from severe duc...
<p><b>(A</b>) LKBKO<sup>livemb</sup> mouse model results in efficient inactivation of Lkb1 protein e...
Comment inLKB1: Controlling Quiescence and Genomic Integrity at Home. [Trends Endocrinol Metab. 2018...
<div><p>Background</p><p>LKB1 is an evolutionary conserved kinase implicated in a wide range of cell...
<p>(A) Immunofluorescence for Sox9, HNF4 and E-cadherin demonstrate that Lkb1 is required for the tr...
LKB1 is a 'master' protein kinase implicated in the regulation of metabolism, cell proliferation, ce...
The Notch pathway is an evolutionary conserved, intercellular signaling pathway that plays an import...
In the mammalian liver, bile is transported to the intestine through an intricate network of bile du...
The mammalian biliary system, consisting of the intrahepatic and extrahepatic bile ducts, is respons...
SUMMARY Abnormal Notch signaling in humans results in Alagille syndrome, a pleiotropic disease chara...
BACKGROUND: Alagille syndrome is a developmental disorder caused predominantly by mutations in the J...
BACKGROUND & AIMS: Repair from biliary damages requires the biliary specification of hepatic progen...
("control") mice. Fetal and neonatal Notch2-cKO livers were devoid of cytokeratin19 (CK19)-, Dolicho...
The potential for intrahepatic bile duct (IHBD) regeneration in patients with bile duct insufficienc...
The Notch signaling pathway is involved in determination of cell fate and control of cell proliferat...
Patients with Alagille syndrome (AGS), a genetic disorder of Notch signaling, suffer from severe duc...
<p><b>(A</b>) LKBKO<sup>livemb</sup> mouse model results in efficient inactivation of Lkb1 protein e...
Comment inLKB1: Controlling Quiescence and Genomic Integrity at Home. [Trends Endocrinol Metab. 2018...
<div><p>Background</p><p>LKB1 is an evolutionary conserved kinase implicated in a wide range of cell...
<p>(A) Immunofluorescence for Sox9, HNF4 and E-cadherin demonstrate that Lkb1 is required for the tr...
LKB1 is a 'master' protein kinase implicated in the regulation of metabolism, cell proliferation, ce...
The Notch pathway is an evolutionary conserved, intercellular signaling pathway that plays an import...
In the mammalian liver, bile is transported to the intestine through an intricate network of bile du...
The mammalian biliary system, consisting of the intrahepatic and extrahepatic bile ducts, is respons...
SUMMARY Abnormal Notch signaling in humans results in Alagille syndrome, a pleiotropic disease chara...
BACKGROUND: Alagille syndrome is a developmental disorder caused predominantly by mutations in the J...
BACKGROUND & AIMS: Repair from biliary damages requires the biliary specification of hepatic progen...
("control") mice. Fetal and neonatal Notch2-cKO livers were devoid of cytokeratin19 (CK19)-, Dolicho...
The potential for intrahepatic bile duct (IHBD) regeneration in patients with bile duct insufficienc...
The Notch signaling pathway is involved in determination of cell fate and control of cell proliferat...
Patients with Alagille syndrome (AGS), a genetic disorder of Notch signaling, suffer from severe duc...
<p><b>(A</b>) LKBKO<sup>livemb</sup> mouse model results in efficient inactivation of Lkb1 protein e...
Comment inLKB1: Controlling Quiescence and Genomic Integrity at Home. [Trends Endocrinol Metab. 2018...