Utility of a Novel Oatp1b2 Knockout Mouse Model for Evaluating the Role of Oatp1b2 in the Hepatic Uptake of Model Compounds

2008 ◽  
Vol 36 (9) ◽  
pp. 1840-1845 ◽  
Author(s):  
Cuiping Chen ◽  
Jeffery L. Stock ◽  
Xingrong Liu ◽  
Jilin Shi ◽  
Jeffrey W. Van Deusen ◽  
...  
2014 ◽  
Vol 93 (5-6) ◽  
pp. 252-266 ◽  
Author(s):  
Christine B. Gurniak ◽  
Frédéric Chevessier ◽  
Melanie Jokwitz ◽  
Friederike Jönsson ◽  
Emerald Perlas ◽  
...  

2020 ◽  
Vol 134 (8) ◽  
pp. 941-953
Author(s):  
Jianxiang Xue ◽  
Linto Thomas ◽  
Maryam Tahmasbi ◽  
Alexandria Valdez ◽  
Jessica A. Dominguez Rieg ◽  
...  

Abstract The sodium–hydrogen exchanger isoform 3 (NHE3, SLC9A3) is abundantly expressed in the gastrointestinal tract and is proposed to play essential roles in Na+ and fluid absorption as well as acid–base homeostasis. Mutations in the SLC9A3 gene can cause congenital sodium diarrhea (CSD). However, understanding the precise role of intestinal NHE3 has been severely hampered due to the lack of a suitable animal model. To navigate this problem and better understand the role of intestinal NHE3, we generated a tamoxifen-inducible intestinal epithelial cell-specific NHE3 knockout mouse model (NHE3IEC-KO). Before tamoxifen administration, the phenotype and blood parameters of NHE3IEC-KO were unremarkable compared with control mice. After tamoxifen administration, NHE3IEC-KO mice have undetectable levels of NHE3 in the intestine. NHE3IEC-KO mice develop watery, alkaline diarrhea in combination with a swollen small intestine, cecum and colon. The persistent diarrhea results in higher fluid intake. After 3 weeks, NHE3IEC-KO mice show a ∼25% mortality rate. The contribution of intestinal NHE3 to acid–base and Na+ homeostasis under normal conditions becomes evident in NHE3IEC-KO mice that have metabolic acidosis, lower blood bicarbonate levels, hyponatremia and hyperkalemia associated with drastically elevated plasma aldosterone levels. These results demonstrate that intestinal NHE3 has a significant contribution to acid–base, Na+ and volume homeostasis, and lack of intestinal NHE3 has consequences on intestinal structural integrity. This mouse model mimics and explains the phenotype of individuals with CSD carrying SLC9A3 mutations.


2017 ◽  
Vol 7 (1) ◽  
Author(s):  
Honami Ogoh ◽  
Kazutsune Yamagata ◽  
Tomomi Nakao ◽  
Lisa L. Sandell ◽  
Ayaka Yamamoto ◽  
...  

Blood ◽  
2011 ◽  
Vol 117 (18) ◽  
pp. 4759-4768 ◽  
Author(s):  
Stephanie Y. Jo ◽  
Eric M. Granowicz ◽  
Ivan Maillard ◽  
Dafydd Thomas ◽  
Jay L. Hess

Abstract Disruptor of telomeric silencing 1-like (Dot1l) is a histone 3 lysine 79 methyltransferase. Studies of constitutive Dot1l knockout mice show that Dot1l is essential for embryonic development and prenatal hematopoiesis. DOT1L also interacts with translocation partners of Mixed Lineage Leukemia (MLL) gene, which is commonly translocated in human leukemia. However, the requirement of Dot1l in postnatal hematopoiesis and leukemogenesis of MLL translocation proteins has not been conclusively shown. With a conditional Dot1l knockout mouse model, we examined the consequences of Dot1l loss in postnatal hematopoiesis and MLL translocation leukemia. Deletion of Dot1l led to pancytopenia and failure of hematopoietic homeostasis, and Dot1l-deficient cells minimally reconstituted recipient bone marrow in competitive transplantation experiments. In addition, MLL-AF9 cells required Dot1l for oncogenic transformation, whereas cells with other leukemic oncogenes, such as Hoxa9/Meis1 and E2A-HLF, did not. These findings illustrate a crucial role of Dot1l in normal hematopoiesis and leukemogenesis of specific oncogenes.


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