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Featured researches published by H.J. Lim.


Nature Communications | 2014

Systemic autophagy insufficiency compromises adaptation to metabolic stress and facilitates progression from obesity to diabetes.

Yu Mi Lim; H.J. Lim; Kyu Yeon Hur; Wenying Quan; Hae Youn Lee; Hwanju Cheon; Dongryeol Ryu; Seung Hoi Koo; Hong Lim Kim; Jin Kim; Masaaki Komatsu; Myung-Shik Lee

Despite growing interest in the relationship between autophagy and systemic metabolism, how global changes in autophagy affect metabolism remains unclear. Here we show that mice with global haploinsufficiency of an essential autophagy gene (Atg7(+/-) mice) do not show metabolic abnormalities but develop diabetes when crossed with ob/ob mice. Atg7(+/-)-ob/ob mice show aggravated insulin resistance with increased lipid content and inflammatory changes, suggesting that autophagy haploinsufficiency impairs the adaptive response to metabolic stress. We further demonstrate that intracellular lipid content and insulin resistance after lipid loading are increased as a result of autophagy insufficiency, and provide evidence for increased inflammasome activation in Atg7(+/-)-ob/ob mice. Imatinib or trehalose improves metabolic parameters of Atg7(+/-)-ob/ob mice and enhances autophagic flux. These results suggest that systemic autophagy insufficiency could be a factor in the progression from obesity to diabetes, and autophagy modulators have therapeutic potential against diabetes associated with obesity and inflammation.


Nature Communications | 2018

A novel autophagy enhancer as a therapeutic agent against metabolic syndrome and diabetes

H.J. Lim; Yu-Mi Lim; Kook Hwan Kim; Young Eui Jeon; Kihyoun Park; Jin Young Kim; Hui-Yun Hwang; Dong Jin Lee; Haushabhau S. Pagire; Ho Jeong Kwon; Jin Hee Ahn; Myung-Shik Lee

Autophagy is a critical regulator of cellular homeostasis, dysregulation of which is associated with diverse diseases. Here we show therapeutic effects of a novel autophagy enhancer identified by high-throughput screening of a chemical library against metabolic syndrome. An autophagy enhancer increases LC3-I to LC3-II conversion without mTOR inhibition. MSL, an autophagy enhancer, activates calcineurin, and induces dephosphorylation/nuclear translocation of transcription factor EB (TFEB), a master regulator of lysosomal biogenesis and autophagy gene expression. MSL accelerates intracellular lipid clearance, which is reversed by lalistat 2 or Tfeb knockout. Its administration improves the metabolic profile of ob/ob mice and ameliorates inflammasome activation. A chemically modified MSL with increased microsomal stability improves the glucose profile not only of ob/ob mice but also of mice with diet-induced obesity. Our data indicate that our novel autophagy enhancer could be a new drug candidate for diabetes or metabolic syndrome with lipid overload.Autophagy plays an important role in metabolic functions and increased autophagic activity may be beneficial for metabolic disorders. Here the authors screen a chemical library for enhancer of autophagic flux and identify small molecules that improve the metabolic profile by increasing lysosomial functions.


Archives of Pharmacal Research | 2017

Effects of CYP2C9 genetic polymorphisms on the pharmacokinetics of celecoxib and its carboxylic acid metabolite

Se-Hyung Kim; Do-Hoon Kim; Ji-Yeong Byeon; Young-Hoon Kim; D. Kim; H.J. Lim; Choong-Min Lee; Sang Sup Whang; Chang-Ik Choi; Jung-Woo Bae; Yun Jeong Lee; Choon-Gon Jang; Seok-Yong Lee


Clinical Therapeutics | 2016

Effects of ABCB1 Genetic Polymorphism on the Oral Absorption of Losartan.

J.Y. Byeon; Duk-Hwan Kim; H.J. Lim; Choong-Min Lee; Y.H. Kim; Sun-Mee Lee


Clinical Therapeutics | 2016

Effects of Genetic Polymorphism of Cyp2c19 on the Pharmacokinetics of Zolpidem.

J.Y. Byeon; Choong-Min Lee; H.J. Lim; Y.H. Kim; Duk-Hwan Kim; Sun-Mee Lee


Clinical Therapeutics | 2015

Cyp2c19 Genetic Polymorphism Has Significant Effects on The Pharmacokinetics of Tolperisone After Administration of Fluoxetine

Sun-Woo Kim; J.Y. Byeon; Y.H. Kim; H.J. Lee; Yunjong Lee; Y.J. Lee; Duk-Hwan Kim; H.J. Lim; Sun-Mee Lee


Clinical Therapeutics | 2015

Cyp2d6*10 Allele Has Significant Effects on The Pharmacokinetics of Tramadol and Its Metabolite

J.Y. Byeon; Sun-Woo Kim; Y.H. Kim; H.J. Lee; Yunjong Lee; Y.J. Lee; Duk-Hwan Kim; H.J. Lim; Sun-Mee Lee


Clinical Therapeutics | 2015

Significant Drug-Drug Interaction Between Zolpidem and Clarithromycin

Y.J. Lee; J.Y. Byeon; Sun-Woo Kim; Yae-Jean Kim; Han-Young Lee; Yunjong Lee; Duk-Hwan Kim; H.J. Lim; Choon-Gon Jang; Sun-Mee Lee


Clinical Therapeutics | 2015

Effect of Paroxetine on The Pharmacokinetics of Atomoxetine In Different Cyp2d6 Genotype

Sun-Woo Kim; J.Y. Byeon; Y.H. Kim; Hee-Jun Lee; Yunjong Lee; Y.J. Lee; Duk-Hwan Kim; H.J. Lim; Sun-Mee Lee


Clinical Therapeutics | 2015

Influence of Cyp2d6 Genetic Polymorphism on The Pharmacokinetic Parameters of Risperidone and Its Active Metabolites

J.Y. Byeon; Sun-Woo Kim; Y.H. Kim; Hee-Jun Lee; Yunjong Lee; Y.J. Lee; Duk-Hwan Kim; H.J. Lim; Sun-Mee Lee

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Duk-Hwan Kim

Sungkyunkwan University

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J.Y. Byeon

Sungkyunkwan University

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Sun-Mee Lee

Sungkyunkwan University

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Sun-Woo Kim

Sungkyunkwan University

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Y.H. Kim

Sungkyunkwan University

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Y.J. Lee

Sungkyunkwan University

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Yunjong Lee

Sungkyunkwan University

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H.J. Lee

Sungkyunkwan University

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