• 제목/요약/키워드: Hepatic Genes

검색결과 201건 처리시간 0.039초

비알코올성 지방간 세포 모델에서 곤포의 효능과 기전 연구 (Research on Anti-lipogenic Effect and Underlying Mechanism of Laminaria japonica on Experimental Cellular Model of Non-alcoholic Fatty Liver Disease)

  • 김소연;권정남;이인;홍진우;최준용;박성하;권민정;주명수;한창우
    • 대한한방내과학회지
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    • 제35권2호
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    • pp.175-183
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    • 2014
  • Objectives : We tried to uncover the anti-lipogenic effect and underlying mechanism of Laminaria japonica on an experimental cellular model of non-alcoholic fatty liver disease. Methods : Ethanol extract of Laminaria japonica (LJ) was prepared. Intracellular lipid content of palmitate-treated HepG2 cells was evaluated with or without LJ treatment. We measured the effects of LJ on liver X receptor ${\alpha}$ ($LXR{\alpha}$) and sterol regulatory element-binding transcription factor-1c (SREBP-1c) expression, transcription level of lipogenic genes, including acetyl-CoA carboxylase (ACC), fatty acid synthase (FAS), stearoyl-CoA desaturase-1 (SCD-1), and nuclear factor erythroid 2-related factor 2 (Nrf2) activation in HepG2 cells. Results : LJ markedly attenuated palmitate-induced intracellular lipid accumulation in HepG2 cells. LJ suppressed $LXR{\alpha}$-dependent SREBP-1c activation, and SREBP-1c mediated induction of ACC, FAS, and SCD-1. Furthermore, LJ activated Nrf2, which plays an important cytoprotective role in non-alcoholic fatty liver disease. Conclusions : Our study suggests that LJ has the potential to alleviate hepatic lipid accumulation, and this effect was mediated by inhibiting the $LXR{\alpha}$-SREBP-1c pathway that leads to hepatic steatosis. In addition, the anti-lipogenic potential may, at least in part, be associated with activation of Nrf2.

Effects of quercetin derivatives from mulberry leaves: Improved gene expression related hepatic lipid and glucose metabolism in short-term high-fat fed mice

  • Sun, Xufeng;Yamasaki, Masayuki;Katsube, Takuya;Shiwaku, Kuninori
    • Nutrition Research and Practice
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    • 제9권2호
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    • pp.137-143
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    • 2015
  • BACKGROUND/OBJECTIVES: Mulberry leaves contain quercetin derivatives, which have the effects of reducing obesity and improving lipid and glucose metabolism in mice with obesity. It is not clear whether or not mulberry leaves can directly affect metabolic disorders, in the presence of obesity, because of the interaction between obesity and metabolic disorders. The aim of the current study was to assess the direct action of quercetin derivatives on metabolic disorders in non-obese conditions in short-term high-fat diet fed mice. MATERIALS/METHODS: C57BL/6N mice were fed a high-fat diet, supplemented with either 0% (control), 1%, or 3% mulberry leaf powder (Mul) or 1% catechin powder for five days. Anthropometric parameters and blood biochemistry were determined, and hepatic gene expression associated with lipid and glucose metabolism was analyzed. RESULTS: Body and white fat weights did not differ among the four groups. Plasma triglycerides, total cholesterol, and free fatty acids in the 1%, 3% Mul and catechin groups did not differ significantly from those of the controls, however, plasma glucose and 8-isoprostane levels were significantly reduced. Liver gene expression of gp91phox, a main component of NADPH oxidase, was significantly down-regulated, and PPAR-${\alpha}$, related to ${\beta}$-oxidation, was significantly up-regulated. FAS and GPAT, involved in lipid metabolism, were significantly down-regulated, and Ehhadh was significantly up-regulated. Glucose-metabolism related genes, L-PK and G6Pase, were significantly down-regulated, while GK was significantly up-regulated in the two Mul groups compared to the control group. CONCLUSIONS: Our results suggest that the Mul quercetin derivatives can directly improve lipid and glucose metabolism by reducing oxidative stress and enhancing ${\beta}$-oxidation. The 1% Mul and 1% catechin groups had similar levels of polyphenol compound intake ($0.4{\times}10^{-5}$ vs $0.4{\times}10^{-5}$ mole/5 days) and exhibited similar effects, but neither showed dose-dependent effects on lipid and glucose metabolism or oxidative stress.

Desalinated underground seawater of Jeju Island (Korea) improves lipid metabolism in mice fed diets containing high fat and increases antioxidant potential in t-BHP treated HepG2 cells

  • Noh, Jung-Ran;Gang, Gil-Tae;Kim, Yong-Hoon;Yang, Keum-Jin;Lee, Chul-Ho;Na, O-Su;Kim, Gi-Ju;Oh, Won-Keun;Lee, Young-Don
    • Nutrition Research and Practice
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    • 제4권1호
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    • pp.3-10
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    • 2010
  • This study was performed to investigate the effect of desalinated underground seawater (named as 'magma seawater', MSW) of Jeju Island in Korea on lipid metabolism and antioxidant activity. MSW was collected from underground of Han-Dong in Jeju Island, and freely given to high fat diet (HFD)-fed C57BL/6 mice for 10 weeks. Although there were no significant differences in the body weight changes and plasma lipid levels, hepatic triglyceride levels were significantly lower in the MSW group than in the normal tap water (TW)-drunken control group. Furthermore, the activity of fatty acid synthase (FAS) was significantly decreased and carnitine palmitoyltransferase (CPT) activity was increased in MSW group compared to TW group. Similarly, real-time PCR analysis revealed that mRNA expressions of lipogenic genes were lowered in MSW groups compared to the control group. In a morphometric observation on the liver tissue, accumulation of fats was remarkably reduced in MSW group. Meanwhile, in vitro assay, tree radical scavenging activity measured by using diphenylpicrylhydrazyl (DPPH) was increased in MSW group. The 2'-7'-dichlorofluorescein diacetate (DCF-DA) staining followed with fluorescent microscopy showed a low intensity of fluorescence in MSW-treated HepG2 cells, compared to TW-treated HepG2 cells, which indicated that the production of reactive oxygen species by tert-butyl hydroperoxide (t-BHP) in HepG2 cells was decreased by MSW treatment. The antioxidant effect of MSW on t-BHP-induced oxidative stress in HepG2 cells was supported by the increased activities of intracellular antioxidant enzymes such as catalase and glutathione reductase. From these results, we speculate that MSW has an inhibitory effect on lipogenesis in liver and might play a protective role against cell damage by t-BHP-induced oxidative stress.

Comparing In Vitro and In Vivo Genomic Profiles Specific to Liver Toxicity Induced by Thioacetamide

  • Kang, Jin-Seok;Jeong, Youn-Kyoung;Shin, Ji-He;Suh, Soo-Kyung;Kim, Joo-Hwan;Lee, Eun-Mi;Kim, Seung-Hee;Park, Sue-Nie
    • Biomolecules & Therapeutics
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    • 제15권4호
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    • pp.252-260
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    • 2007
  • As it is needed to assay possible feasibility of extrapolation between in vivo and in vitro systems and to develop a new in vitro method for toxicity testing, we investigated global gene expression from both animal and cell line treated with thioacetamide (TAA) and compared between in vivo and in vitro genomic profiles. For in vivo study, mice were orally treated with TAA and sacrificed at 6 and 24 h. For in vitro study, TAA was administered to a mouse hepatic cell line, BNL CL.2 and sampling was carried out at 6 and 24 h. Hepatotoxicity was assessed by analyzing hepatic enzymes and histopathological examination (in vivo) or lactate dehydrogenase (LDH) assay and morphological examination (in vitro). Global gene expression was assessed using microarray. In high dose TAA-treated group, there was centrilobular necrosis (in vivo) and cellular toxicity with an elevation of LDH (in vitro) at 24 h. Statistical analysis of global gene expression identified that there were similar numbers of altered genes found between in vivo and in vitro at each time points. Pathway analysis identified several common pathways existed between in vivo and in vitro system such as glutathione metabolism, bile acid biosynthesis, nitrogen metabolism, butanoate metabolism for hepatotoxicty caused by TAA. Our results suggest it may be feasible to develop toxicogenomics biomarkers by comparing in vivo and in vitro genomic profiles specific to TAA for application to prediction of liver toxicity.

Effects of lycopene on abdominal fat deposition, serum lipids levels and hepatic lipid metabolism-related enzymes in broiler chickens

  • Wan, Xiaoli;Yang, Zhengfeng;Ji, Haoran;Li, Ning;Yang, Zhi;Xu, Lei;Yang, Haiming;Wang, Zhiyue
    • Animal Bioscience
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    • 제34권3_spc호
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    • pp.385-392
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    • 2021
  • Objective: The present study was conducted to investigate the effects of lycopene on growth performance, abdominal fat deposition, serum lipids levels, activities of hepatic lipid metabolism related enzymes and genes expression in broiler chickens. Methods: A total of 256 healthy one-day-old male Arbor Acres broiler chicks were randomly divided into four groups with eight replicates of eight birds each. Birds were fed basal diet supplemented with 0 (control), 100, 200, and 400 mg/kg lycopene, respectively. Results: Dietary 100 mg/kg lycopene increased the body weight at 21 day of age compared to the control group (p<0.05). Compared to the basal diet, broilers fed diet with 100 mg/kg lycopene had decreased abdominal fat weight, and broilers fed diet with 100 and 200 mg/kg lycopene had decreased abdominal fat percentage (p<0.05). Compared to control, diets with 100, 200, and 400 mg/kg lycopene reduced the levels of total triglyceride and total cholesterol in serum, and diets with 100 and 200 mg/kg lycopene reduced the level of serum low density lipoprotein cholesterol (p<0.05). The activity of fatty acid synthase (FAS) in 400 mg/kg lycopene treated broilers and the activity of acetyl-CoA carboxylase (ACC) in 100, 200, and 400 mg/kg lycopene treated broilers were lower than those fed basal diet (p<0.05). Lycopene increased the mRNA abundance of adenosine monophosphate activated protein kinase α (AMPK-α), whereas decreased the mRNA abundance of sterol regulatory element-binding protein 1, FAS, and ACC compared to the control group (p<0.05). Conclusion: Dietary lycopene supplementation can alleviate abdominal fat deposition and decrease serum lipids levels, possibly through activating the AMPK signaling pathway, thereby regulating lipid metabolism such as lipogenesis. Therefore, lycopene or lycopene-rich plant materials might be added to poultry feed to regulate lipid metabolism.

Induction of Phase I, II and III Drug Metabolism/Transport by Xenobiotics

  • Xu Chang Jiang;Li Christina YongTao;Kong AhNg Tony
    • Archives of Pharmacal Research
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    • 제28권3호
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    • pp.249-268
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    • 2005
  • Drug metabolizing enzymes (DMEs) play central roles in the metabolism, elimination and detoxification of xenobiotics and drugs introduced into the human body. Most of the tissues and organs in our body are well equipped with diverse and various DMEs including phase I, phase II metabolizing enzymes and phase III transporters, which are present in abundance either at the basal unstimulated level, and/or are inducible at elevated level after exposure to xenobiotics. Recently, many important advances have been made in the mechanisms that regulate the expression of these drug metabolism genes. Various nuclear receptors including the aryl hydrocarbon receptor (AhR), orphan nuclear receptors, and nuclear factor-erythoroid 2 p45-related factor 2 (Nrf2) have been shown to be the key mediators of drug-induced changes in phase I, phase II metabolizing enzymes as well as phase III transporters involved in efflux mechanisms. For instance, the expression of CYP1 genes can be induced by AhR, which dimerizes with the AhR nuclear translocator (Arnt) , in response to many polycyclic aromatic hydrocarbon (PAHs). Similarly, the steroid family of orphan nuclear receptors, the constitutive androstane receptor (CAR) and pregnane X receptor (PXR), both heterodimerize with the ret-inoid X receptor (RXR), are shown to transcriptionally activate the promoters of CYP2B and CYP3A gene expression by xenobiotics such as phenobarbital-like compounds (CAR) and dexamethasone and rifampin-type of agents (PXR). The peroxisome proliferator activated receptor (PPAR), which is one of the first characterized members of the nuclear hormone receptor, also dimerizes with RXR and has been shown to be activated by lipid lowering agent fib rate-type of compounds leading to transcriptional activation of the promoters on CYP4A gene. CYP7A was recognized as the first target gene of the liver X receptor (LXR), in which the elimination of cholesterol depends on CYP7A. Farnesoid X receptor (FXR) was identified as a bile acid receptor, and its activation results in the inhibition of hepatic acid biosynthesis and increased transport of bile acids from intestinal lumen to the liver, and CYP7A is one of its target genes. The transcriptional activation by these receptors upon binding to the promoters located at the 5-flanking region of these GYP genes generally leads to the induction of their mRNA gene expression. The physiological and the pharmacological implications of common partner of RXR for CAR, PXR, PPAR, LXR and FXR receptors largely remain unknown and are under intense investigations. For the phase II DMEs, phase II gene inducers such as the phenolic compounds butylated hydroxyanisol (BHA), tert-butylhydroquinone (tBHQ), green tea polyphenol (GTP), (-)-epigallocatechin-3-gallate (EGCG) and the isothiocyanates (PEITC, sul­foraphane) generally appear to be electrophiles. They generally possess electrophilic-medi­ated stress response, resulting in the activation of bZIP transcription factors Nrf2 which dimerizes with Mafs and binds to the antioxidant/electrophile response element (ARE/EpRE) promoter, which is located in many phase II DMEs as well as many cellular defensive enzymes such as heme oxygenase-1 (HO-1), with the subsequent induction of the expression of these genes. Phase III transporters, for example, P-glycoprotein (P-gp), multidrug resistance-associated proteins (MRPs), and organic anion transporting polypeptide 2 (OATP2) are expressed in many tissues such as the liver, intestine, kidney, and brain, and play crucial roles in drug absorption, distribution, and excretion. The orphan nuclear receptors PXR and GAR have been shown to be involved in the regulation of these transporters. Along with phase I and phase II enzyme induction, pretreatment with several kinds of inducers has been shown to alter the expression of phase III transporters, and alter the excretion of xenobiotics, which implies that phase III transporters may also be similarly regulated in a coordinated fashion, and provides an important mean to protect the body from xenobiotics insults. It appears that in general, exposure to phase I, phase II and phase III gene inducers may trigger cellular 'stress' response leading to the increase in their gene expression, which ultimately enhance the elimination and clearance of these xenobiotics and/or other 'cellular stresses' including harmful reactive intermediates such as reactive oxygen species (ROS), so that the body will remove the 'stress' expeditiously. Consequently, this homeostatic response of the body plays a central role in the protection of the body against 'environmental' insults such as those elicited by exposure to xenobiotics.

알코올성 간 손상 조직에서 TGF-β1와 c-Myc, Erb-B2, Thymosin-β4 유전자 발현 융합 연구 (A study of Expression of TGF-β1, c-Myc, Erb-B2 and Thymosin-β4 Gene in Alcoholic Liver Damage Tissue.)

  • 김진수;최상기
    • 한국융합학회논문지
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    • 제9권5호
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    • pp.91-97
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    • 2018
  • 본 연구는 25% 에탄올에 손상된 간조직에서 $TGF-{\beta}_1$와 c-Myc, Erb-B2, $Thymosin-{\beta}_4$ 유전자의 발현을 알아 보고자 실시 하였다. 실험군은 2군으로 나누어 25% 에탄올로 간 손상을 유발한 실험군과 정제수를 투여한 대조군으로 나누어 실험하였다. 검사 결과는 25% 에탄올를 투여 했던 실험군은 대조군에 비하여 $TGF-{\beta}_1$, c-Myc 및 $Thymosin-{\beta}_4$ 유전자의 발현 증가를 알 수 있었으며 Erb-B2 유전자는 뚜렷한 발현을 알 수 없었다. 또한 손상된 간 조직에서 헤마톡실린 에오진 염색을 통한 세포 손상을 관찰 할 수 있었다. 결론적으로 기존 임상에서 간 기능 관련 질병 예방과 질환 판정 시 혈청학적, 조직학적 검사 외에 $TGF-{\beta}_1$, c-Myc 및 $Thymosin-{\beta}_4$의 분자 진단 기법에 의한 유전자 발현 상태를 융합 검사함으로써 간 질환 판정의 보조 자료로 활용 될 수 있을 것으로 사료 된다.

장기 고온 스트레스에 대한 미꾸라지(Misgurnus mizolepis) 간 조직 내 유전자 발현 반응의 cDNA microarray 분석 (Survey of Genes Responsive to Long-Term Heat Stress Using a cDNA Microarray Analysis in Mud Loach (Misgurnus mizolepis) Liver)

  • 조영선;이상윤;노충환;남윤권;김동수
    • 한국어류학회지
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    • 제18권2호
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    • pp.65-77
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    • 2006
  • 우리나라 주요 담수 어종인 미꾸라지(Misgurnus mizolepis)를 실험 모델로 이용하여 실험적으로 설정한 고온 노출($32^{\circ}C$)에 특이적으로 반응하는 유전자들을 cDNA microarray 분석을 통해 탐색하였다. 미꾸라지 간조직 expressed sequence tag (EST) 데이터베이스 분석을 통해 1,124개의 unigene들을 선발하여 제작한 cDNA microarray을 이용하여 $23^{\circ}C$$32^{\circ}C$에 4주간 노출된 실험어의 간(liver)조직의 전사 발현 양상을 3반복 분석하였다. 다양한 유전자군이 $32^{\circ}C$ 고온 노출에 전사 발현의 증감 또는 감소 양상을 보였으며 $23^{\circ}C$에 비해 $32^{\circ}C$군에서 2배 이상의 발현 증가를 보인 클론들은 총 93종류로서 에너지 대사, 단백질 대사, 면역/항산화 기능, 세포골격 및 구조, 물질수송 및 세포 신호전달등에 관여하는 단백질들을 암호화하는 유전자들이었고 최대 15배 이상의 전사발현이 관찰되었다. 반면 고온 노출군에서 유의적인 발현 감소(50% 이하)를 보인 유전자들(n=85) 역시 탐색되어 상기 단백질 분류군외에 vitellogenin 전구체들 및 리보좀 단백질류에서 특이적인 전사활성의 저하가 관찰되었고, vitellogenin 유전자에서 가장 많은 mRNA 수준의 감소가 관찰되었다.

경신강지환(輕身降脂丸)18의 분자생물학적인 비만조절 기전에 관한 연구 (Molecular biologic mechanism of obesity by GGEx18)

  • 이희영;윤기현;서부일;박규열;윤미정;심지빈;최홍화;신순식
    • 대한본초학회지
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    • 제26권1호
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    • pp.65-74
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    • 2011
  • Objectives : This study was undertaken to verify the modulation mechanism of Gyeongshingangjeehwan18 (GGEx18) in ob/ob male mice. Methods : Eight-week old mice (wild-type C57BL/6J and ob/ob) were used for all experiments. Wild-type C57BL/6J mice were used as lean control and obese ob/ob mice were randomly divided into 5 groups : obese control, GGEx15 (Ephedra sinica Stapf + Rheum palmatum L.), GGEx16 (Ephedra sinica Stapf + Laminaria japonica Aresch), GGEx17 (Rheum palmatum L. + Laminaria japonica Aresch), and GGEx18 (Ephedra sinica Stapf + Laminaria japonica Aresch + Rheum palmatum L.). After mice were treated with several kinds of GGEx for 11 weeks, the mRNA expression of peroxisome proliferator-activated receptor (PPAR) target genes and uncoupling protein (UCP) were measured. In addition, $PPAR{\alpha}$ and $PPAR{\beta}$ transactivation was examined in NMu2Li hepatocytes, C2C12 myocytes, and 3T3-L1 preadipocytes using transient transfection assays. Results : 1. Hepatic $PPAR{\alpha}$ target genes, such as ACOX and VLCAD mRNA levels were significantly increased by GGEx18 compared with obese controls. In skeletal muscle, LCAD mRNA expression was stimulated by GGEx16, GGEx17, and GGEx18, whereas MCAD mRNA expression by GGEx17 and GGEx18. $PPAR{\beta}$ target LPL mRNA levels were also increased by GGEx16, GGEx17, and GGEx18 in skeletal muscle, but adipose LPL mRNA levels were decreased. In addition, GGEx18 upregulated UCP mRNA expression in skeletal muslce. 2. $PPAR{\alpha}$ reporter gene expression was increased by GGEx18 in NMu2Li cells compared with vehicle. $PPAR{\alpha}$ and $PPAR{\beta}$ reporter activities were also increased by all GGEx treatments in C2C12 and 3T3-L1 cells. Conclusions : These results suggest that GGEx can act as $PPAR{\alpha}$ and $PPAR{\beta}$ activators, and that GGEx may regulate obesity by stimulating $PPAR{\alpha}$, $PPAR{\beta}$, and UCP activity. Of the 4 compositions, GGEx18 seems to be most effective in improving obesity and lipid disorders.

Association of a c.1084A>G (p.Thr362Ala)Variant in the DCTN4 Gene with Wilson Disease

  • Lee, Robin Dong-Woo;Kim, Jae-Jung;Kim, Joo-Hyun;Lee, Jong-Keuk;Yoo, Han-Wook
    • Journal of Genetic Medicine
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    • 제8권1호
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    • pp.53-57
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    • 2011
  • 목 적: 윌슨병은 간조직에 구리의 과도한 침착으로 발병하는 상염색체 열성 유전질환이다. 지금까지 ATP7B 유전자가 유일한 원인유전자로 알려져 왔다. 그러나, 약 15%의 환자에서는 ATP7B 유전자 돌연변이가 발견되지 않는다. 본 연구는 ATP7B 유전자의 돌연변이가 발견되지 않은 윌슨병 환자를 대상으로 새로운 원인 유전자를 발견하기 위하여 시행되었다. 대상 및 방법: ATP7B 돌연변이가 발견되지 않은 12명의 윌슨병 환자를 대상으로 ATP7B 와 상호작용을 하는 것으로 알려진 ATOX1, COMMD1, GLRX, DCTN4와 ZBTB16 유전자의 전사부위와 엑손-인트론 경계부위의 염기서열을 분석하였다. 결 과: DCTN4 유전자의 12번 엑손에 존재하는 c.1084A>G(p.Thr362Ala)를 포함하는 3가지의 변이가 환자에서 발견되었다. in silico 분석을 통해 3가지 변이 중 c.1084A>G가 유일하게 단백질 기능 변화를 일으킬 것으로 예측되었다. 176명의 윌슨병 환자와 414명의 정상인을 대상으로 이 변이의 빈도를 조사한 결과, 정상인보다 윌슨병 환자에서 더 높은 빈도를 나타내었다(상대비, odds ratio [OR]=3.14, 95% 신뢰도=1.36-7.22, P=0.0094). 결 론: 본 연구의 결과는 ATP7B 와 상호작용하는 DCTN4 유전자의 c.1084A>G (p.Thr362Ala) 다형성이 윌슨병의 발병과 연관이 있음을 시사한다.