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지질대사 이상 질환에서 핵 수용체 LXR의 역할 및 기전에 대한 연구 : Role of liver X receptors in the pathogenesis of lipid metabolism disorders

DC Field Value Language
dc.contributor.advisor이미옥-
dc.contributor.author나태영-
dc.date.accessioned2017-07-13T16:32:18Z-
dc.date.available2017-07-13T16:32:18Z-
dc.date.issued2013-02-
dc.identifier.other000000008313-
dc.identifier.urihttps://hdl.handle.net/10371/120043-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 약학과, 2013. 2. 이미옥.-
dc.description.abstractThe liver X receptors (LXRs) are nuclear receptors that are activated by endogenous oxysterols, oxidized derivatives of cholesterol. The LXRs are involved in the process of reverse cholesterol transport which is the process by which the lipoprotein particle, HDL, carries cholesterol from the peripheral tissues to the liver and play a critical role in metabolic abnormalities, including insulin resistance, obesity, dyslipidemia and hypertention.
The first part of this study describes the role of LXRs in hepatitis B virus X protein-induced lipogenesis in hepatitis B virus-associated hepatocellular carcinoma. Several studies have suggested that infection by HBV genotypes B is associated with an increased risk of HCC
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dc.description.abstracthowever, the molecular mechanism by which HBV induces events leading to HCC has not been clearly elucidated. In this study, HBx induced expression of LXRs and its lipogenic target genes, which was accompanied by the accumulation of lipid droplets. RNA interference of LXRα or β expression effectively blocked the amount of lipid droplets as well as the expression of the lipogenic genes, indicating that the HBx-induced lipogenesis was LXR-dependent. HBx and LXRα are physically associates in the nucleus. HBx enhanced transactivation function of LXRα by recruiting CBP to the SREBP-1c promoter. Furthermore, the expression of LXRs was significantly increased in the liver of HBx-transgenic mice. Finally, there was a significant increase in the expression of LXRα and its lipogenic target genes in human HBV-associated HCC specimens. These results suggest a novel association between HBx and LXR-induced hepatic lipogenesis, which may constitute a pivotal molecular mechanism underlying the development of HBV-associated HCC.
The second part of this study describes the role of cross-talk between LXRα and HIF-1α for the formation of triglyceride-rich foam cells during the development of atherosclerosis. Atherosclerosis is characterized by subendothelial accumulation of lipid-rich macrophages, called foam cells. Hypoxic conditions in the atherosclerotic lesions contribute to the formation of these lipid-loaded macrophages. The liver X receptor is a regulator of lipid metabolism in many tissues, however, role of LXRα in the foam cell formation is not known. In this study, the expression of LXRα was time-dependently induced under hypoxia in human primary macrophages and RAW 264.7 cells. Knockdown of HIF-1α using si-RNA completely abolished the induction of LXRα and its target genes indicating that the induction of LXRα was HIF-1α dependent. TO901317, an activator of LXRα, enhanced the expression level and the transcriptional activity of HIF-1α, which was also decreased by knockdown of LXRα. Second, LXRα increased HIF-1α protein stability through a physical interaction between the ligand binding domain of LXRα and the oxygen-dependent degradation domain of HIF-1α. Third, the activation of HIF-1α or LXRα synergistically induced triglyceride accumulation in the macrophages. Finally, LXRα and HIF-1α were codistributed in the macrophages of atherosclerotic arteries obtained from patients. These results suggest that the positive feedback regulation of transcriptional induction and protein stability of LXRα and HIF-1α may have an important impact for foam-cell formation and the development of atherosclerotic lesions.
Taken together, it is suggested that that the molecular mechanism of LXR activation may turn on a vicious cycle of lipid production and inflammation in the lipid metabolism disorder.
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dc.description.tableofcontentsCONTENTS

ABSTRACT ----------------------------------------------------------------------------------- i
CONTENTS ---------------------------------------------------------------------------------- v
LIST OF FIGURES ------------------------------------------------------------------------ x
ABBREVIATIONS ---------------------------------------------------------------------- xiii
I. INTRODUCTION
1. Biological roles of Liver X Receptors -------------------------------------------------- 2
1.1. The nuclear receptors LXR and LXR as the NR family of transcription factors
1.2. Synthetic and natural exogenous LXR ligands
1.3. Physiological functions of LXR
2. Hepatic metabolism in HBV-associated hepatocarcinoma ----------------------- 11
2.1. Clinical significance of hepatitis B virus
2.2. Structure and function of Hepatitis B Virus X gene, HBx
2.3. The development of hepatocellular carcinoma by hepatitis virus infection
2.4. The development of hepatic steatosis by hepatitis virus infection
3. LXRs in pathphysiology of atherosclerosis ------------------------------------------ 21
3.1. The role of macrophages in atherosclerosis
3.2. LXRs and macrophages
3.3. Hypoxia and lipid metabolism in atherosclerosis
3.4. The paradoxical effect of LXR in atherosclerosis disease models
II. PURPOSE OF THIS STUDY ----------------------------------------------------- 34
III. MATERIALS AND METHODS
1. Molecules and cell-based experiments ----------------------------------------------- 39
1.1. Cells and cell culture
1.2. Western blotting, immunoprecipitation and immunocytochemistry
1.3. Plasmids, transient transfection and reporter gene analysis
1.4. Transfection of small interfering RNA duplexes
1.5. Reverse transcriptase-polymerase chain reaction and real-time PCR
1.6. Oil-red O, Nile-red staining and lipid analysis
1.7. Chromatic immunoprecipitation (CHIP) assay

2. HBx-transgenic mice --------------------------------------------------------------------- 43
3. Experiments with clinical samples ---------------------------------------------------- 44
3.1. HCC samples, qRT-PCR and immunohistochemistry
3.2. Human atherosclerotic specimens and immunohistochemistry
3.3. Statistics
IV. RESULTS
1. Roles of LXRs in HBx-induced lipogenesis in HBV-associated HCC ---------- 57
1.1. HBx induces expression and transcriptional activity of LXR
1.2. LXR mediates HBx-induced lipogenesis in liver cells
1.3. HBx interacts with LXR
1.4. HBx increases transactivation function of LXR
1.5. Increases in expression level of LXR in liver samples of HBx-expressing transgenic mice
1.6. Enhances in expression level of LXR and target genes in liver tissues of HCC patients

2. Roles of LXRs in hypoxia-induced foam cell formation in atherosclerotic lesion ------------------------------------------------------------------------------------------- 75
2.1. Expression of LXR and its downstream Ttarget genes increases under hypoxia
2.2. TO901317 induces protein stability and transcriptional activation of HIF-1
2.3. Activation of LXR enhances HIF-1 stability
2.4. LXR Interacts with HIF-1 in the nucleus
2.5. LXR Increases the transactivation function of HIF-1
2.6. Positive cross-talk between HIF-1 and LXR in the lipogenesis of macrophages
2.7. Enhances in expression of lipogenic genes under hypoxia or after LXR ligand treatment
2.8. Enhances in expression of LXRα and HIF-1α by inflammatory responses
2.9. The expression of LXRα and HIF-1α in atherosclerotic lesions
V. DISCUSSION ------------------------------------------------------------------------- 109
1. Liver X receptor mediates hepatitis B virus X protein-induced lipogenesis in hepatitis B virus-associated hepatocellular carcinoma ----------------------------- 111
1.1. Development of lipogenesis in tumor
1.2. Development of LXR-dependent steatosis in HBV-induced HCC
1.3. The potential role of the LXR pathway in HBV-associated metabolic syndromes
1.4. The role of HCV in hepatic steatosis
2. Positive cross-talk between hypoxia inducible factor-1α and liver X receptor α induces formation of triglyceride-loaded foam cells -------------------------------- 116
2.1. Cross-talk between HIF-1 and LXR in macrophage
2.2. The role of LXR in foam-cell formation
2.3. The role of HIF-1 and LXR in inflammatory response
2.4. LXR is controversial in application of LXR ligands for therapeutics
VI. CONCLUSIONS ---------------------------------------------------------------- 126
VII. REFERENCES ---------------------------------------------------------------- 129
국문 초록 ---------------------------------------------------------------------------------- 155
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dc.formatapplication/pdf-
dc.format.extent4057493 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectHepatitis B Virus-
dc.subjectHBx-
dc.subjectLiver X Receptor-
dc.subjectHepatocellular carcinogenesis-
dc.subjectHepatosteatosis-
dc.subjectHypoxia-
dc.subjectHIF-1α-
dc.subjectFoam cell-
dc.subjectAtherosclerosis-
dc.subject.ddc615-
dc.title지질대사 이상 질환에서 핵 수용체 LXR의 역할 및 기전에 대한 연구-
dc.title.alternativeRole of liver X receptors in the pathogenesis of lipid metabolism disorders-
dc.typeThesis-
dc.contributor.AlternativeAuthorNA TAE YOUNG-
dc.description.degreeDoctor-
dc.citation.pages158-
dc.contributor.affiliation약학대학 약학과-
dc.date.awarded2013-02-
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