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Roles of protein arginine methyltransferases in the control of glucose metabolism

Authors
Han, H.-S.Choi, D.Choi, S.Koo, S.-H.
Issue Date
2014
Publisher
Korean Endocrine Society
Keywords
Glucose metabolism; Liver; Protein-arginine N-methyltransferases
Citation
Endocrinology and Metabolism, v.29, no.4, pp.435 - 440
Indexed
SCOPUS
KCI
Journal Title
Endocrinology and Metabolism
Volume
29
Number
4
Start Page
435
End Page
440
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/100827
DOI
10.3803/EnM.2014.29.4.435
ISSN
2093-596X
Abstract
Glucose homeostasis is tightly controlled by the regulation of glucose production in the liver and glucose uptake into peripheral tissues, such as skeletal muscle and adipose tissue. Under prolonged fasting, hepatic gluconeogenesis is mainly responsible for glucose production in the liver, which is essential for tissues, organs, and cells, such as skeletal muscle, the brain, and red blood cells. Hepatic gluconeogenesis is controlled in part by the concerted actions of transcriptional regulators. Fasting signals are relayed by various intracellular enzymes, such as kinases, phosphatases, acetyltransferases, and deacetylases, which affect the transcriptional activity of transcription factors and transcriptional coactivators for gluconeogenic genes. Protein arginine methyltransferases (PRMTs) were recently added to the list of enzymes that are critical for regulating transcription in hepatic gluconeogenesis. In this review, we briefly discuss general aspects of PRMTs in the control of transcription. More specifically, we summarize the roles of four PRMTs: PRMT1, PRMT 4, PRMT 5, and PRMT 6, in the control of hepatic gluconeogenesis through specific regulation of FoxO1- and CREB-dependent transcriptional events. © 2014 Korean Endocrine Society.
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생명과학대학 (생명과학부)
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