Changes in lipid metabolism have been implicated in protection against infectious diseases. In the first experiment of this study, we measured clinical lipid parameters in a murine model where the unmethylated cytidin...Changes in lipid metabolism have been implicated in protection against infectious diseases. In the first experiment of this study, we measured clinical lipid parameters in a murine model where the unmethylated cytidine phosphate guanosine (CpG) oligodinucleotide (ODN1826), a Toll-like receptor 9 (TLR9) agonist was administered in combination with D-galactosamine (GalN) that caused relatively liver-specific inflammation and toxicity. In the control mice group injected with phosphate-buffered saline (PBS) (acute psychological stress model associated with blood sampling), the serum triglyceride (TG) levels showed a rapid decrease followed by a rebound at 24 h as we have recently reported. However, such a TG rebound was impaired in the CpG/GalN- and solely CpG-treated groups of mice despite an absence of liver injury based on serum alanine aminotransferase levels in the latter group. Thus, the stress-associated serum TG rebound was abrogated by the injection of a sub-hepatotoxic CpG dose. In the second experiment, we simply measured the hepatic CD36 and SACRB1 (the gene for scavenger receptor B1 (SR-B1)) transcripts after the i.p. administration of PBS, CpG or CpG/GalN. There was a remarkable elevation of hepatic CD36 transcript expression in both the CpG- and CpG/GalN-treated mice at 8 h post-CpG injection whereas the increase in the PBS-treated mice was slower than the former two groups, suggesting that hepatic CD36 transcript expression is more pronounced in the combined stress models than under psychological stress alone. The individual mice data showed that the increase in CD36 expression was accompanied by a reduction in SCARB1 mRNA, showing reciprocal regulation between these two genes. Together with our previously reported findings, these data suggest that, in a murine model combining psychological stress with TLR-triggered hepatic inflammation, the psychological stress facilitates liver uptake of plasma TG (and its components fatty acids), but the subsequent re-esterification and/or release of TG-rich lipoproteins from the liver is impaired due to the concomitant TLR-signaling. We hypothesize that lipid metabolism during acute stress shifts toward an elevated hepatic uptake of lipids due to concomitant TLR signaling, facilitating the clearance of bacterial lipids by the liver.展开更多
Scavenger receptor class B type Ⅰ (SR-BI) is an important member of the scavenger receptor family of integral membrane glycoproteins. This review highlights studies in SR-BI knockout mice, which concern the role of S...Scavenger receptor class B type Ⅰ (SR-BI) is an important member of the scavenger receptor family of integral membrane glycoproteins. This review highlights studies in SR-BI knockout mice, which concern the role of SR-BI in cholesterol and steroid metabolism. SR-BI in hepatocytes is the sole molecule involved in selective uptake of cholesteryl esters from high-density lipoprotein (HDL). SR-BI plays a physiological role in binding and uptake of native apolipoprotein B (apoB)-containing lipoproteins by hepatocytes, which identif ies SR-BI as a multipurpose player in lipid uptake from the blood circulation into hepatocytes in mice. In adrenocortical cells, SR-BI mediates the selective uptake of HDL-cholesteryl esters, which is eff iciently coupled to the synthesis of glucocorticoids (i.e. corticosterone). SR-BI knockout mice suffer from adrenal glucocorticoid insuff iciency, which suggests that functional SR-BI protein is necessary for optimal adrenal steroidogenesis in mice. SR-BI in macrophages plays a dual role in cholesterol metabolism as it is able to take up cholesterol associated with HDL and apoBcontaining lipoproteins and can possibly facilitate cholesterol efflux to HDL. Absence of SR-BI is associated with thrombocytopenia and altered thrombosis susceptibility, which suggests a novel role for SR-BI in regulating platelet number and function in mice. Transgenic expression of cholesteryl ester transfer protein in humanized SR-BI knockout mice normalizes hepatic delivery of HDL-cholesteryl esters. However, other pathologies associated with SR-BI def iciency, i.e. increased atherosclerosis susceptibility, adrenal glucocorticoid insuffi ciency, and impaired platelet function are not normalized, which suggests an important role for SR-BI in cholesterol and steroid metabolism in man. In conclusion, generation of SR-BI knockout mice has signif icantly contributed to our knowledge of the physiological role of SR-BI. Studies using these mice have identif ied SR-BI as a multi-purpose player in cholesterol and steroid metabolism because it has distinct roles in reverse cholesterol transport, adrenal steroidogenesis, and platelet function.展开更多
The scavenger receptor class B type I (SR-BI) is a high-density lipoprotein (HDL) receptor involved in reverse cholesterol transport. Some studies reported the association to be stronger in the presence of diabetes. T...The scavenger receptor class B type I (SR-BI) is a high-density lipoprotein (HDL) receptor involved in reverse cholesterol transport. Some studies reported the association to be stronger in the presence of diabetes. The full length gene encoding SR-BI is comprised in 13 exons that are alternatively spliced to produce two major transcripts: the full length SR-BI and the splice variant SR-BII, in which exon 12 is skipped. Considering that type 2 diabetes status is characterized by changes in the concentration of plasma lipids, modifications in lipoprotein size and composition, which may be important modulators of the SR-BI expression;the aims of the study were to examine the influence of SR-BI polymorphism (rs838895) on lipid profile and SR-BI mRNA expression in a population of diabetic patients living in Juana Koslay City. Blood samples were drawn from controls (n = 40) and Type 2 diabetic patients (n = 66) and DNA and total RNA were obtained. SR-BI mRNA expression was measured by RT-PCR and SR-BI polymorphism was detected by Tetra Primer ARMSPCR. Compared to controls, diabetic patients had higher fasting serum glucose, glycated hemoglobin, triglycerides, total cholesterol, lowdensity lipoprotein cholesterol, and lower highdensity lipoprotein cholesterol. SR-BI mRNA expression was lower in T2DM when compared to controls, suggesting that the hyperglycemia presents in T2DM patients down-regulates SR-BI mRNA expression. Interestingly, we found that decreased SR-BI expression resulted in markedly increased plasma LDL concentrations in T2DM subjects, and the overexpression of SRBII isoform is responsible for the markedly increased plasma LDL-c concentrations. The polymorphism (rs838895) did not modify the mRNA level of SR-BI in leucocytes from control and diabetic patients. This study provides novel evidence suggesting that hyperglycemia may affect reverse cholesterol transport by controlling SRBI expression in diabetic patients. LDL cholesterol levels are associated with low SR-BI mRNA expression in T2DM.展开更多
清道夫受体B类成员1(scavenger receptor class B member 1,Scarb1)作为细胞表面的膜受体蛋白,在动物体色形成过程中发挥重要作用。为了解Scarb1基因在虹鳟(Oncorhynchus mykiss)体色形成中的作用,通过RACE技术克隆虹鳟Scarb1基因的cDN...清道夫受体B类成员1(scavenger receptor class B member 1,Scarb1)作为细胞表面的膜受体蛋白,在动物体色形成过程中发挥重要作用。为了解Scarb1基因在虹鳟(Oncorhynchus mykiss)体色形成中的作用,通过RACE技术克隆虹鳟Scarb1基因的cDNA全长,并运用生物信息学方法分析该基因及其序列结构特征,同时使用实时定量PCR(qRT-PCR)检测Scarb1基因在虹鳟、金鳟及其杂交F_(1)代不同发育阶段和不同组织中的表达情况。结果显示,Scarb1基因cDNA序列全长为2032 bp,开放阅读框1479 bp,编码492个氨基酸,预测分子质量为55.59 ku,且存在保守的CD36结构域和2个跨膜区。序列同源性分析显示,虹鳟与其他硬骨鱼类的氨基酸序列相似度为71.69%~98.58%;进化分析发现虹鳟与大马哈鱼亲缘关系最近,与哺乳动物和两栖动物亲缘关系最远。qRT-PCR检测结果表明,在虹鳟与金鳟胚胎期及出膜后各发育阶段中Scarb1基因均有不同程度表达,且表现为受精期至桑葚期的表达显著高于其他时期(P<0.05),对虹鳟与金鳟同一时期的差异分析发现该基因在胚胎期及7 dph(days post hatch)、1 M(month post hatch)、2 M和3 M时期中表达存在显著差异(P<0.01)。Scarb1基因在虹鳟与金鳟背部皮肤和背部肌肉等色素沉着性组织中表达量较高,其中在金鳟背部皮肤的表达量显著高于虹鳟(P<0.01)。此外,Scarb1基因在杂交F_(1)代不同发育时期中的表达规律与双亲一致;在不同组织中,该基因在杂交F_(1)代背部皮肤中的表达量介于双亲之间。研究结果表明,Scarb1基因与虹鳟体色形成有着密切关系,且可能在金鳟黄色体色形成过程中发挥重要作用。展开更多
随着年龄的增长,机体胆固醇代谢失调和叶黄素水平异常易导致视网膜异常脂质沉积和玻璃膜疣,进而增加年龄相关性黄斑变性(age-related macular degeneration,AMD)的患病风险。视网膜细胞上的B类1型清道夫受体(scavenger receptor class B...随着年龄的增长,机体胆固醇代谢失调和叶黄素水平异常易导致视网膜异常脂质沉积和玻璃膜疣,进而增加年龄相关性黄斑变性(age-related macular degeneration,AMD)的患病风险。视网膜细胞上的B类1型清道夫受体(scavenger receptor class B type 1,SR-B1)在脂质代谢和视网膜保护中至关重要。组织细胞表面的SR-B1通过识别并结合细胞外的高密度脂蛋白(high-density lipoprotein,HDL),将游离胆固醇逆向转运至肝脏,对维持全身包括视网膜的脂质代谢平衡与避免脂质沉积至关重要。此外,HDL同样作为转运体参与叶黄素的视网膜转运过程。叶黄素,以其独特的蓝光过滤和抗氧化功能,减少蓝光对视网膜的潜在损伤并清除有害的氧自由基,发挥保护视网膜的作用。本综述将详细探讨SR-B1在视网膜中的作用,尤其是在协助胆固醇清除和叶黄素抗氧化防御方面的重要性,并评述SR-B1以及携带的有益成分如HDL和叶黄素对缓解AMD发病的机制与最新研究进展。展开更多
目的综述B类I型清道夫受体(scavenger receptor class B type I,SR-BI)基因表达上调剂的研究进展。方法查阅近年来国内外相关文献29篇,对其进行归纳总结和分析。结果 SR-BI是高密度脂蛋白(high density lipoprotein,HDL)受体,能选择性...目的综述B类I型清道夫受体(scavenger receptor class B type I,SR-BI)基因表达上调剂的研究进展。方法查阅近年来国内外相关文献29篇,对其进行归纳总结和分析。结果 SR-BI是高密度脂蛋白(high density lipoprotein,HDL)受体,能选择性介导胆固醇和HDL颗粒中胆固醇酯的吸收,在HDL的代谢中起重要作用。提高SR-BI基因表达,可促进胆固醇外流,降低血浆胆固醇水平,因此SR-BI基因表达上调剂有望成为新型抗动脉粥样硬化药物。许多报道的天然或合成小分子化合物具有SR-BI基因表达上调活性,有进一步研究价值。结论已报道的化合物虽然活性值不高,直接作为SR-BI基因表达上调剂候选药物应用较为困难,但以其为先导化合物,进行结构优化,对发现新的结构新颖、活性显著的SR-BI基因表达上调剂有重要意义。展开更多
目的探讨苯扎贝特干预后小鼠肝脏B族I型清道夫受体(SR-B1)m RNA变化及对小鼠体内胆固醇逆转运的影响。方法 28只C57BL/6小鼠随机分为4组,分别给予普通饲料、不同剂量的苯扎贝特(0.10%、0.25%、0.50%)添加普通饲料喂养4周后,腹腔注射经...目的探讨苯扎贝特干预后小鼠肝脏B族I型清道夫受体(SR-B1)m RNA变化及对小鼠体内胆固醇逆转运的影响。方法 28只C57BL/6小鼠随机分为4组,分别给予普通饲料、不同剂量的苯扎贝特(0.10%、0.25%、0.50%)添加普通饲料喂养4周后,腹腔注射经乙酰化低密度脂蛋白(ac-LDL)及3H-胆固醇处理过的小鼠巨噬细胞悬液(0.5 m L/鼠,细胞数达5.0×106),单独笼养24 h后取血,酶法测定血脂;测定血清、肝脏和粪便中的3H-胆固醇含量(占注射总量的百分比);逆转录聚合酶链反应测定小鼠肝脏SR-B1 m RNA表达。结果与对照组比较,苯扎贝特组小鼠肝脏SR-B1 m RNA表达水平增高,粪便中的胆固醇流出率增加。不同剂量苯扎贝特(0.10%、0.25%、0.50%)干预组血清3H-胆固醇含量较对照组显著增加,分别增加100%、131%和110%。不同剂量苯扎贝特(0.10%、0.25%、0.50%W/W)干预组小鼠肝脏3H-胆固醇含量较对照组显著增加,分别增加86.4%、52.3%和51.6%。不同剂量苯扎贝特(0.10%、0.25%、0.50%)干预组小鼠粪便3H-胆固醇含量较对照组显著增加,分别增加为110%、140%和160%。结论苯扎贝特能上调肝脏SR-B1 m RNA表达,促进体内胆固醇逆转运,加速胆固醇由粪便清除,利于动脉粥样硬化的防治。展开更多
文摘Changes in lipid metabolism have been implicated in protection against infectious diseases. In the first experiment of this study, we measured clinical lipid parameters in a murine model where the unmethylated cytidine phosphate guanosine (CpG) oligodinucleotide (ODN1826), a Toll-like receptor 9 (TLR9) agonist was administered in combination with D-galactosamine (GalN) that caused relatively liver-specific inflammation and toxicity. In the control mice group injected with phosphate-buffered saline (PBS) (acute psychological stress model associated with blood sampling), the serum triglyceride (TG) levels showed a rapid decrease followed by a rebound at 24 h as we have recently reported. However, such a TG rebound was impaired in the CpG/GalN- and solely CpG-treated groups of mice despite an absence of liver injury based on serum alanine aminotransferase levels in the latter group. Thus, the stress-associated serum TG rebound was abrogated by the injection of a sub-hepatotoxic CpG dose. In the second experiment, we simply measured the hepatic CD36 and SACRB1 (the gene for scavenger receptor B1 (SR-B1)) transcripts after the i.p. administration of PBS, CpG or CpG/GalN. There was a remarkable elevation of hepatic CD36 transcript expression in both the CpG- and CpG/GalN-treated mice at 8 h post-CpG injection whereas the increase in the PBS-treated mice was slower than the former two groups, suggesting that hepatic CD36 transcript expression is more pronounced in the combined stress models than under psychological stress alone. The individual mice data showed that the increase in CD36 expression was accompanied by a reduction in SCARB1 mRNA, showing reciprocal regulation between these two genes. Together with our previously reported findings, these data suggest that, in a murine model combining psychological stress with TLR-triggered hepatic inflammation, the psychological stress facilitates liver uptake of plasma TG (and its components fatty acids), but the subsequent re-esterification and/or release of TG-rich lipoproteins from the liver is impaired due to the concomitant TLR-signaling. We hypothesize that lipid metabolism during acute stress shifts toward an elevated hepatic uptake of lipids due to concomitant TLR signaling, facilitating the clearance of bacterial lipids by the liver.
基金Supported by Top Institute Pharma (TIPharma Project T2-110 Hoekstra M and Van Berkel TJC)+2 种基金Grant 2008T070 from the Netherlands Heart Foundation (Hoekstra M)VIDI Grant 917.66.301 from the Netherlands Organization for Scientific Research (Van Eck M)Van Eck Mis an Established Investigator of the Netherlands Heart Foundation (Grant 2007T056)
文摘Scavenger receptor class B type Ⅰ (SR-BI) is an important member of the scavenger receptor family of integral membrane glycoproteins. This review highlights studies in SR-BI knockout mice, which concern the role of SR-BI in cholesterol and steroid metabolism. SR-BI in hepatocytes is the sole molecule involved in selective uptake of cholesteryl esters from high-density lipoprotein (HDL). SR-BI plays a physiological role in binding and uptake of native apolipoprotein B (apoB)-containing lipoproteins by hepatocytes, which identif ies SR-BI as a multipurpose player in lipid uptake from the blood circulation into hepatocytes in mice. In adrenocortical cells, SR-BI mediates the selective uptake of HDL-cholesteryl esters, which is eff iciently coupled to the synthesis of glucocorticoids (i.e. corticosterone). SR-BI knockout mice suffer from adrenal glucocorticoid insuff iciency, which suggests that functional SR-BI protein is necessary for optimal adrenal steroidogenesis in mice. SR-BI in macrophages plays a dual role in cholesterol metabolism as it is able to take up cholesterol associated with HDL and apoBcontaining lipoproteins and can possibly facilitate cholesterol efflux to HDL. Absence of SR-BI is associated with thrombocytopenia and altered thrombosis susceptibility, which suggests a novel role for SR-BI in regulating platelet number and function in mice. Transgenic expression of cholesteryl ester transfer protein in humanized SR-BI knockout mice normalizes hepatic delivery of HDL-cholesteryl esters. However, other pathologies associated with SR-BI def iciency, i.e. increased atherosclerosis susceptibility, adrenal glucocorticoid insuffi ciency, and impaired platelet function are not normalized, which suggests an important role for SR-BI in cholesterol and steroid metabolism in man. In conclusion, generation of SR-BI knockout mice has signif icantly contributed to our knowledge of the physiological role of SR-BI. Studies using these mice have identif ied SR-BI as a multi-purpose player in cholesterol and steroid metabolism because it has distinct roles in reverse cholesterol transport, adrenal steroidogenesis, and platelet function.
文摘The scavenger receptor class B type I (SR-BI) is a high-density lipoprotein (HDL) receptor involved in reverse cholesterol transport. Some studies reported the association to be stronger in the presence of diabetes. The full length gene encoding SR-BI is comprised in 13 exons that are alternatively spliced to produce two major transcripts: the full length SR-BI and the splice variant SR-BII, in which exon 12 is skipped. Considering that type 2 diabetes status is characterized by changes in the concentration of plasma lipids, modifications in lipoprotein size and composition, which may be important modulators of the SR-BI expression;the aims of the study were to examine the influence of SR-BI polymorphism (rs838895) on lipid profile and SR-BI mRNA expression in a population of diabetic patients living in Juana Koslay City. Blood samples were drawn from controls (n = 40) and Type 2 diabetic patients (n = 66) and DNA and total RNA were obtained. SR-BI mRNA expression was measured by RT-PCR and SR-BI polymorphism was detected by Tetra Primer ARMSPCR. Compared to controls, diabetic patients had higher fasting serum glucose, glycated hemoglobin, triglycerides, total cholesterol, lowdensity lipoprotein cholesterol, and lower highdensity lipoprotein cholesterol. SR-BI mRNA expression was lower in T2DM when compared to controls, suggesting that the hyperglycemia presents in T2DM patients down-regulates SR-BI mRNA expression. Interestingly, we found that decreased SR-BI expression resulted in markedly increased plasma LDL concentrations in T2DM subjects, and the overexpression of SRBII isoform is responsible for the markedly increased plasma LDL-c concentrations. The polymorphism (rs838895) did not modify the mRNA level of SR-BI in leucocytes from control and diabetic patients. This study provides novel evidence suggesting that hyperglycemia may affect reverse cholesterol transport by controlling SRBI expression in diabetic patients. LDL cholesterol levels are associated with low SR-BI mRNA expression in T2DM.
文摘清道夫受体B类成员1(scavenger receptor class B member 1,Scarb1)作为细胞表面的膜受体蛋白,在动物体色形成过程中发挥重要作用。为了解Scarb1基因在虹鳟(Oncorhynchus mykiss)体色形成中的作用,通过RACE技术克隆虹鳟Scarb1基因的cDNA全长,并运用生物信息学方法分析该基因及其序列结构特征,同时使用实时定量PCR(qRT-PCR)检测Scarb1基因在虹鳟、金鳟及其杂交F_(1)代不同发育阶段和不同组织中的表达情况。结果显示,Scarb1基因cDNA序列全长为2032 bp,开放阅读框1479 bp,编码492个氨基酸,预测分子质量为55.59 ku,且存在保守的CD36结构域和2个跨膜区。序列同源性分析显示,虹鳟与其他硬骨鱼类的氨基酸序列相似度为71.69%~98.58%;进化分析发现虹鳟与大马哈鱼亲缘关系最近,与哺乳动物和两栖动物亲缘关系最远。qRT-PCR检测结果表明,在虹鳟与金鳟胚胎期及出膜后各发育阶段中Scarb1基因均有不同程度表达,且表现为受精期至桑葚期的表达显著高于其他时期(P<0.05),对虹鳟与金鳟同一时期的差异分析发现该基因在胚胎期及7 dph(days post hatch)、1 M(month post hatch)、2 M和3 M时期中表达存在显著差异(P<0.01)。Scarb1基因在虹鳟与金鳟背部皮肤和背部肌肉等色素沉着性组织中表达量较高,其中在金鳟背部皮肤的表达量显著高于虹鳟(P<0.01)。此外,Scarb1基因在杂交F_(1)代不同发育时期中的表达规律与双亲一致;在不同组织中,该基因在杂交F_(1)代背部皮肤中的表达量介于双亲之间。研究结果表明,Scarb1基因与虹鳟体色形成有着密切关系,且可能在金鳟黄色体色形成过程中发挥重要作用。
文摘随着年龄的增长,机体胆固醇代谢失调和叶黄素水平异常易导致视网膜异常脂质沉积和玻璃膜疣,进而增加年龄相关性黄斑变性(age-related macular degeneration,AMD)的患病风险。视网膜细胞上的B类1型清道夫受体(scavenger receptor class B type 1,SR-B1)在脂质代谢和视网膜保护中至关重要。组织细胞表面的SR-B1通过识别并结合细胞外的高密度脂蛋白(high-density lipoprotein,HDL),将游离胆固醇逆向转运至肝脏,对维持全身包括视网膜的脂质代谢平衡与避免脂质沉积至关重要。此外,HDL同样作为转运体参与叶黄素的视网膜转运过程。叶黄素,以其独特的蓝光过滤和抗氧化功能,减少蓝光对视网膜的潜在损伤并清除有害的氧自由基,发挥保护视网膜的作用。本综述将详细探讨SR-B1在视网膜中的作用,尤其是在协助胆固醇清除和叶黄素抗氧化防御方面的重要性,并评述SR-B1以及携带的有益成分如HDL和叶黄素对缓解AMD发病的机制与最新研究进展。
文摘目的综述B类I型清道夫受体(scavenger receptor class B type I,SR-BI)基因表达上调剂的研究进展。方法查阅近年来国内外相关文献29篇,对其进行归纳总结和分析。结果 SR-BI是高密度脂蛋白(high density lipoprotein,HDL)受体,能选择性介导胆固醇和HDL颗粒中胆固醇酯的吸收,在HDL的代谢中起重要作用。提高SR-BI基因表达,可促进胆固醇外流,降低血浆胆固醇水平,因此SR-BI基因表达上调剂有望成为新型抗动脉粥样硬化药物。许多报道的天然或合成小分子化合物具有SR-BI基因表达上调活性,有进一步研究价值。结论已报道的化合物虽然活性值不高,直接作为SR-BI基因表达上调剂候选药物应用较为困难,但以其为先导化合物,进行结构优化,对发现新的结构新颖、活性显著的SR-BI基因表达上调剂有重要意义。
文摘目的探讨苯扎贝特干预后小鼠肝脏B族I型清道夫受体(SR-B1)m RNA变化及对小鼠体内胆固醇逆转运的影响。方法 28只C57BL/6小鼠随机分为4组,分别给予普通饲料、不同剂量的苯扎贝特(0.10%、0.25%、0.50%)添加普通饲料喂养4周后,腹腔注射经乙酰化低密度脂蛋白(ac-LDL)及3H-胆固醇处理过的小鼠巨噬细胞悬液(0.5 m L/鼠,细胞数达5.0×106),单独笼养24 h后取血,酶法测定血脂;测定血清、肝脏和粪便中的3H-胆固醇含量(占注射总量的百分比);逆转录聚合酶链反应测定小鼠肝脏SR-B1 m RNA表达。结果与对照组比较,苯扎贝特组小鼠肝脏SR-B1 m RNA表达水平增高,粪便中的胆固醇流出率增加。不同剂量苯扎贝特(0.10%、0.25%、0.50%)干预组血清3H-胆固醇含量较对照组显著增加,分别增加100%、131%和110%。不同剂量苯扎贝特(0.10%、0.25%、0.50%W/W)干预组小鼠肝脏3H-胆固醇含量较对照组显著增加,分别增加86.4%、52.3%和51.6%。不同剂量苯扎贝特(0.10%、0.25%、0.50%)干预组小鼠粪便3H-胆固醇含量较对照组显著增加,分别增加为110%、140%和160%。结论苯扎贝特能上调肝脏SR-B1 m RNA表达,促进体内胆固醇逆转运,加速胆固醇由粪便清除,利于动脉粥样硬化的防治。