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1.
Aggregated LDL (agLDL) is internalized by LDL receptor-related protein (LRP1) in vascular smooth muscle cells (VSMCs) and human monocyte-derived macrophages (HMDMs). AgLDL is, therefore, a potent inducer of massive intracellular cholesteryl ester accumulation in lipid droplets. The adipocyte differentiation-related protein (ADRP) has been found on the surface of lipid droplets. The objectives of this work were to analyze whether agLDL uptake modulates ADRP expression levels and whether the effect of agLDL internalization on ADRP expression depends on LRP1 in human VSMCs and HMDMs. AgLDL strongly upregulates ADRP mRNA (real-time PCR) and protein expression (Western blot) in human VSMCs (mRNA: by 3.06-fold; protein: 8.58-fold) and HMDMs (mRNA: by 3.5-fold; protein: by 3.71-fold). Treatment of VSMCs and HMDMs with small anti-LRP1-interfering RNA (siRNA-LRP1) leads to specific inhibition of LRP1 expression. siRNA-LRP1 treatment significantly reduced agLDL-induced ADRP overexpression in HMDMs (by 69%) and in VSMCs (by 53%). Immunohystochemical studies evidence a colocolocalization between ADRP/macrophages and ADRP/VSMCs in advanced lipid-enriched atherosclerotic plaques. These results demonstrate that agLDL-LRP1 engagement induces ADRP overexpression in both HMDMs and human VSMCs and that ADRP is highly expressed in advanced lipid-enriched human atherosclerotic plaques. Therefore, LRP1-mediated agLDL uptake might play a pivotal role in vascular foam cell formation.  相似文献   
2.
Cytoplasmic lipid droplets (CLDs) are cellular structures composed of a neutral lipid core surrounded by a phospholipid monolayer of amphipathic lipids and a variety of proteins. CLDs have classically been regarded as cellular energy storage structures. However, recent proteomic studies reveal that, although many of the proteins found to associate with CLDs are connected to lipid metabolism, storage, and homeostasis, there are also proteins with no obvious connection to the classical function and typically associated with other cellular compartments. Such proteins are termed refugee proteins, and their presence suggests that CLDs may serve an expanded role as a dynamic protein storage site, providing a novel mechanism for the regulation of protein function and transport.  相似文献   
3.
Adipophilin是细胞内脂质聚集和与脂质聚集有关疾病的标志物,巨噬细胞源性泡沫细胞的形成是动脉粥样硬化性疾病发生的重要环节.为了探讨adipophilin在动脉粥样硬化性疾病的作用,通过高胆固醇饲料喂养新西兰白兔12周,复制动脉粥样硬化疾病模型,同时测定血脂的变化和动脉壁胆固醇,使用HE染色、苏丹Ⅳ染色观察动脉粥样硬化病变的形成,使用免疫组织化学的方法观察动脉粥样硬化病变处和动物肝脏中adipophilin的表达.结果发现,高胆固醇饲料喂养组血清总胆固醇、低密度脂蛋白胆固醇和动脉壁胆固醇明显增高,动脉粥样硬化病变面积增加到(40.06±7.29)%,动脉粥样硬化病变处adipophilin表达呈阳性;而adipophilin在肝脏中的表达无论是高胆固醇饲料喂养组或对照组均为阴性.使用80 mg/L OxLDL与小鼠腹膜巨噬细胞共孵育,复制脂质负荷细胞,然后把构建的1 mmol/L adipophilin反义寡核苷酸与该细胞共孵育.结果发现,使用油红O染色观察的细胞内脂滴明显减少,生化测定细胞内胆固醇酯显著降低,与对照组相比,差别有显著性.说明adipophilin与动脉粥样硬化病变有密切的关系,控制adipophilin的表达能够减少巨噬细胞细胞内胆固醇酯的聚集.  相似文献   
4.
敲除Adipophilin基因对脂质代谢相关疾病的作用   总被引:1,自引:0,他引:1  
Adipophilin是PAT (perilipin/adipophilin/Tip47)蛋白家族的一个成员,定位于细胞质和细胞内的脂滴表面.Adipophilin能促进脂质蓄积和细胞内脂滴的形成,在泡沫细胞的形成中起重要作用,是动脉粥样硬化脂质蓄积的一个标记物.Adipophilin基因敲除小鼠能预防高脂饮食诱导的脂肪肝产生,且在脂肪组织分化过程中也起着一定的作用.本文概述了adipophilin在细胞内脂质代谢中的作用.  相似文献   
5.
Adipophilin是细胞内脂质聚集和与脂质聚集有关疾病的标志物 ,巨噬细胞源性泡沫细胞的形成是动脉粥样硬化性疾病发生的重要环节 .为了探讨adipophilin在动脉粥样硬化性疾病的作用 ,通过高胆固醇饲料喂养新西兰白兔 12周 ,复制动脉粥样硬化疾病模型 ,同时测定血脂的变化和动脉壁胆固醇 ,使用HE染色、苏丹Ⅳ染色观察动脉粥样硬化病变的形成 ,使用免疫组织化学的方法观察动脉粥样硬化病变处和动物肝脏中adipophilin的表达 .结果发现 ,高胆固醇饲料喂养组血清总胆固醇、低密度脂蛋白胆固醇和动脉壁胆固醇明显增高 ,动脉粥样硬化病变面积增加到 (40 0 6± 7 2 9) % ,动脉粥样硬化病变处adipophilin表达呈阳性 ;而adipophilin在肝脏中的表达无论是高胆固醇饲料喂养组或对照组均为阴性 .使用80mg/L OxLDL与小鼠腹膜巨噬细胞共孵育 ,复制脂质负荷细胞 ,然后把构建的 1mmol/Ladipophilin反义寡核苷酸与该细胞共孵育 .结果发现 ,使用油红O染色观察的细胞内脂滴明显减少 ,生化测定细胞内胆固醇酯显著降低 ,与对照组相比 ,差别有显著性 .说明adipophilin与动脉粥样硬化病变有密切的关系 ,控制adipophilin的表达能够减少巨噬细胞细胞内胆固醇酯的聚集  相似文献   
6.
以THP-1巨噬细胞为研究对象,观察蛋白激酶C(PKC)激动剂佛波酯(PMA)和抑制剂钙磷酸结合蛋白C(CalphostinC)对胞膜PKC活性、胞膜PKCα及胞浆内过氧化物酶体增殖物激活受体(PPARγ)和adipophilin表达以及细胞内脂质蓄积的影响,初步探讨PKC调控adipophilin表达及脂质蓄积的作用机制.采用PepTagRAssay、RT-PCR、蛋白质印迹、油红O染色和高效液相色谱法,观察到100nmol/LPMA在激活胞膜PKC((0.2514±0.0154)U/ml)的同时可以与氧化低密度脂蛋白(oxLDL)协同增强PKCα、PPARγ和adipophilin表达并使细胞内脂滴的蓄积极大地增强.细胞内胆固醇酯/总胆固醇比值增至(69.8±9.5)%;300nmol/L CalphostinC对荷脂THP-1巨噬细胞的处理则抑制酶活性至((0.0927±0.0056)U/ml,细胞内脂滴减少,胆固醇酯/总胆固醇比值降至(40.1±9.1)%;CalphostinC呈剂量依赖性的方式下调酶活性、PKCα、PPARγ和adipophilin表达,400nmol/LCalphostinC基本上可以逆转50mg/LoxLDL诱导的酶活化和PKCα、PPARγ和adipophilin表达的上调.结果提示,蛋白激酶C活性的改变可以影响adipophilin介导的脂质蓄积,其中PPARγ可能在这一调控机制中发挥了重要作用.  相似文献   
7.
本课题组以前的研究表明,adipophilin通过ERK1/2-PPARγ信号转导通路促进细胞内的脂质蓄积.为了研究高表达和敲减adipophilin是否影响RAW264.7细胞内ERK1/2的活性、PPARγ的表达以及细胞内的脂质蓄积,从而进一步证实这一通路,阐明adipophilin促进泡沫细胞形成的机制.重组pQCXIP-HA-Adipophilin和pSuper-retro-adipophilin siRNA逆转录病毒载体经酶切检测证实,并用SofastTM介导转染到包装细胞PA317中,经培养后释放逆转录病毒.将收集的逆转录病毒感染RAW264.7细胞,经嘌呤霉素筛选后获得稳定高表达和敲减adipophilin的细胞系.用50 mg/L的氧化低密度脂蛋白处理细胞24 h后,用油红O染色法和高效液相色谱法测定细胞内的脂质蓄积情况,用半定量RT-PCR和蛋白质印迹分别检测adipophilin和PPARγ的mRNA和蛋白质的表达,用蛋白质印迹对与动脉粥样硬化发病有关的ERK1/2及其磷酸化进行检测.酶切结果表明,pQCXIP-HA-Adipophilin和pSuper-retro-adipophilin siRNA重组逆转录病毒载体构建成功.在荷脂情况下,pQCXIP-HA-Adipophilin转染的细胞能明显增加细胞内的脂质蓄积,但使PPARγ的表达和ERK1/2的磷酸化下调,这些作用可被adipophilin siRNA逆转.结果表明,adipophilin与泡沫细胞的形成有关,adipophilin可能是通过ERK1/2-PPARγ途径促进细胞内的脂质蓄积.  相似文献   
8.
Although neutral lipid storage droplets are ubiquitous in eukaryotic cells, very little is known about how their synthesis and turnover are controlled. Adipocyte differentiation-related protein (ADRP; also known as adipophilin) is found on the surface of lipid droplets in most mammalian cell types. To learn how ADRP affects lipid storage, we stably expressed the protein in human embryonic kidney 293 (HEK 293) cells, which express little endogenous ADRP. As expected, ADRP was targeted to the surface of lipid droplets and caused an increase in triacylglycerol (TAG) mass under both basal and oleate-supplemented conditions. At least part of the increased mass resulted from a 50% decrease in the rate of TAG hydrolysis in ADRP-expressing cells. Furthermore, ADRP expression increased the fraction of total cellular TAG that was stored in lipid droplets. ADRP expression induced a striking decrease in the association of adipose triglyceride lipase (ATGL) and mannose-6-phosphate receptor tail-interacting protein of 47 kDa with lipid droplets and also decreased the lipid droplet association of several other unknown proteins. Transient expression of ADRP in two other cell lines also reduced the lipid droplet association of catalytically inactive ATGL. We conclude that the reduced lipid droplet association of ATGL and/or other lipases may explain the decrease in TAG turnover observed in ADRP-expressing HEK 293 cells.  相似文献   
9.
We examined the effects of chronic TNFα and dibutyryl-cAMP (Db-cAMP) pre-treatment on the lipolytic machinery of human hMADS adipocytes. TNFα decreased adipose triglyceride lipase (ATGL) and hormone-sensitive lipase (HSL) protein content and triglycerides (TG)-hydrolase activity but increased basal lipolysis due to a marked reduction in perilipin (PLIN) protein content. Conversely, Db-cAMP increased ATGL and HSL protein content but prevented PLIN phosphorylation, the net result being accentuated basal lipolysis. In forskolin-stimulated conditions, TNFα and Db-cAMP pre-treatment decreased stimulated TG-hydrolase activity and impaired PLIN phosphorylation. Together, this resulted in a severely attenuated response to forskolin-stimulated lipolysis.  相似文献   
10.
The majority of eukaryotic cells synthesize neutral lipids and package them into cytosolic lipid droplets. In vertebrates, triacylglycerol-rich lipid droplets of adipocytes provide a major energy storage depot for the body, whereas cholesteryl ester-rich droplets of many other cells provide building materials for local membrane synthesis and repair. These lipid droplets are coated with one or more of five members of the perilipin family of proteins: adipophilin, TIP47, OXPAT/MLDP, S3-12, and perilipin. Members of this family share varying levels of sequence similarity, lipid droplet association, and functions in stabilizing lipid droplets. The most highly studied member of the family, perilipin, is the most abundant protein on the surfaces of adipocyte lipid droplets, and the major substrate for cAMP-dependent protein kinase [protein kinase A (PKA)] in lipolytically stimulated adipocytes. Perilipin serves important functions in the regulation of basal and hormonally stimulated lipolysis. Under basal conditions, perilipin restricts the access of cytosolic lipases to lipid droplets and thus promotes triacylglycerol storage. In times of energy deficit, perilipin is phosphorylated by PKA and facilitates maximal lipolysis by hormone-sensitive lipase and adipose triglyceride lipase. A model is discussed whereby perilipin serves as a dynamic scaffold to coordinate the access of enzymes to the lipid droplet in a manner that is responsive to the metabolic status of the adipocyte.  相似文献   
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