Literature DB >> 33782927

ZFAND3 Overexpression in the Mouse Liver Improves Glucose Tolerance and Hepatic Insulin Resistance.

Kahori Shimizu1, Yuya Ogiya1, Kaede Yoshinaga1, Hajime Kimura1, Shotaro Michinaga2, Moe Ono3, Ayako Taketomi1, Tomoyuki Terada1, Fuminori Sakurai4, Hiroyuki Mizuguchi4,5,6,7, Koji Tomita3, Toru Nishinaka1.   

Abstract

Genome-wide association studies have identified more than 300 loci associated with type 2 diabetes mellitus; however, the mechanisms underlying their role in type 2 diabetes mellitus susceptibility remain largely unknown. Zinc finger AN1-type domain 3 (ZFAND3), known as testis-expressed sequence 27, is a type 2 diabetes mellitus-susceptibility gene. Limited information is available regarding the physiological role of ZFAND3 in vivo. This study aimed to investigate the association between ZFAND3 and type 2 diabetes mellitus. ZFAND3 was significantly upregulated in the liver of diabetic mice compared to wild-type mice. To overexpress ZFAND3, we generated a ZFAND3-expressing adenovirus (Ad) vector using an improved Ad vector exhibiting significantly lower hepatotoxicity (Ad-ZFAND3). Glucose tolerance was significantly improved in Ad-ZFAND3-treated mice compared to the control Ad-treated mice. ZFAND3 overexpression in the mouse liver also improved insulin resistance. Furthermore, gluconeogenic gene expression was significantly lower in primary mouse hepatocytes transduced with Ad-ZFAND3 than those transduced with the control Ad vector. The present results suggest that ZFAND3 improves glucose tolerance by improving insulin resistance and suppressing gluconeogenesis, serving as a potential novel therapeutic target for type 2 diabetes mellitus. Thieme. All rights reserved.

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Year:  2021        PMID: 33782927     DOI: 10.1055/a-1400-2656

Source DB:  PubMed          Journal:  Exp Clin Endocrinol Diabetes        ISSN: 0947-7349            Impact factor:   2.949


  1 in total

1.  Liver-specific overexpression of lipoprotein lipase improves glucose metabolism in high-fat diet-fed mice.

Authors:  Kahori Shimizu; Syogo Nishimuta; Yuri Fukumura; Shotaro Michinaga; Yuka Egusa; Tomomi Hase; Tomoyuki Terada; Fuminori Sakurai; Hiroyuki Mizuguchi; Koji Tomita; Toru Nishinaka
Journal:  PLoS One       Date:  2022-09-13       Impact factor: 3.752

  1 in total

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