Literature DB >> 14715930

Identification of a liver-specific uridine phosphorylase that is regulated by multiple lipid-sensing nuclear receptors.

Yuan Zhang1, Joyce J Repa, Yusuke Inoue, Graham P Hayhurst, Frank J Gonzalez, David J Mangelsdorf.   

Abstract

In this work, we report the characterization of a novel liver-specific gene (L-UrdPase), whose expression is regulated by a number of hepatic nuclear receptors (including liver X receptors, peroxisome proliferator-activated receptor alpha, farnesoid X receptor, and hepatic nuclear factor-4alpha), which have been shown to be involved in lipid metabolism. L-UrdPase encodes a previously uncharacterized protein with similarity to an intestine-specific uridine phosphorylase. Enzymatic assays confirmed that L-UrdPase has uridine phosphorylase activity. However, L-UrdPase has a highly restricted, nonoverlapping pattern of expression with its intestinal counterpart and is regulated in a distinct manner by several different nuclear receptors. The identification of the liver uridine phosphorylase and its characterization as a target of lipid-sensing nuclear receptors implies the existence of a previously unknown nuclear receptor signaling pathway that links lipid and uridine metabolism.

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Year:  2004        PMID: 14715930     DOI: 10.1210/me.2003-0285

Source DB:  PubMed          Journal:  Mol Endocrinol        ISSN: 0888-8809


  8 in total

1.  A novel structural mechanism for redox regulation of uridine phosphorylase 2 activity.

Authors:  Tarmo P Roosild; Samantha Castronovo; Adelbert Villoso; Amy Ziemba; Giuseppe Pizzorno
Journal:  J Struct Biol       Date:  2011-08-10       Impact factor: 2.867

2.  A Transcriptomic Response to Lactiplantibacillus plantarum-KCC48 against High-Fat Diet-Induced Fatty Liver Diseases in Mice.

Authors:  Ilavenil Soundharrajan; Muthusamy Karnan; Jeong-Sung Jung; Kyung-Dong Lee; Jeong-Chae Lee; Thiyagarajan Ramesh; Dahye Kim; Ki-Choon Choi
Journal:  Int J Mol Sci       Date:  2022-06-17       Impact factor: 6.208

3.  Disruption of uridine homeostasis links liver pyrimidine metabolism to lipid accumulation.

Authors:  Thuc T Le; Amy Ziemba; Yasuyo Urasaki; Eugene Hayes; Steven Brotman; Giuseppe Pizzorno
Journal:  J Lipid Res       Date:  2013-01-24       Impact factor: 5.922

4.  Morphogenetic competence of HNF4 alpha-deficient mouse hepatic cells.

Authors:  Graham P Hayhurst; Hélène Strick-Marchand; Céline Mulet; Anne-Françoise Richard; Serban Morosan; Dina Kremsdorf; Mary C Weiss
Journal:  J Hepatol       Date:  2008-06-05       Impact factor: 25.083

5.  Active site conformational dynamics in human uridine phosphorylase 1.

Authors:  Tarmo P Roosild; Samantha Castronovo
Journal:  PLoS One       Date:  2010-09-14       Impact factor: 3.240

6.  Chronic Uridine Administration Induces Fatty Liver and Pre-Diabetic Conditions in Mice.

Authors:  Yasuyo Urasaki; Giuseppe Pizzorno; Thuc T Le
Journal:  PLoS One       Date:  2016-01-20       Impact factor: 3.240

Review 7.  Uridine Metabolism and Its Role in Glucose, Lipid, and Amino Acid Homeostasis.

Authors:  Yumei Zhang; Songge Guo; Chunyan Xie; Jun Fang
Journal:  Biomed Res Int       Date:  2020-04-14       Impact factor: 3.411

8.  Uridine affects liver protein glycosylation, insulin signaling, and heme biosynthesis.

Authors:  Yasuyo Urasaki; Giuseppe Pizzorno; Thuc T Le
Journal:  PLoS One       Date:  2014-06-11       Impact factor: 3.240

  8 in total

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