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1.
张进威  罗毅  王宇豪  何刘军  李明洲  王讯 《遗传》2015,37(12):1175-1184
脂肪组织不仅在维持机体能量代谢和稳态上发挥重要作用,同时也是重要的内分泌器官。脂肪细胞分化是由间充质干细胞(Mesenchymal stem cells, MSC)向成熟脂肪细胞分化的复杂生理过程,该过程由大量转录因子、激素、信号通路分子协同调控。miRNA作为内源性非编码RNA,主要通过抑制转录后翻译等机制来调控基因表达。近年来越来越多的证据表明miRNA通过调控脂肪细胞分化相关的转录因子和重要信号分子进而影响动物脂肪细胞的分化和脂肪形成。本文对miRNA影响动物白色、棕色和米色脂肪细胞分化的作用机制及其相关调控通路和关键因子进行了归纳总结,以期为肥胖等代谢性疾病的治疗提供一定的理论指导和新的治疗思路。  相似文献   

2.
目前随着人们生活水平的不断改善,肥胖及其相关疾病的发生率越来越高.虽然体育锻炼能够增加一定的能量消耗,但并不足以引起负能量平衡和体重下降.棕色和米色脂肪细胞的激活可使耗能增加、体重减轻以及胰岛素敏感性增加.因此,越来越多的研究进一步聚焦这两种产热脂肪组织增加能量消耗的分子机制,希望找到治疗肥胖及其相关疾病的靶点.现系统...  相似文献   

3.
肥胖已经成为威胁人类健康的全球性问题,棕色脂肪(Brown adipose tissue,BAT)及米色脂肪因其能够通过产热作用增加能量消耗这一特性,已成为一种备受关注的潜在肥胖治疗方法。近年来的研究发现M2型巨噬细胞(Alternatively activated macrophages,M2 type)能够促进BAT产热和白色脂肪(White adipose tissue,WAT)的棕色化(即米色脂肪的形成过程),但随后的一些研究却得到了相反的结论。到目前为止,M2型巨噬细胞是否参与促进WAT的棕色化过程仍是一个备受争议的话题。主要对M2型巨噬细胞、II型固有淋巴细胞(Type 2 Innate Lymphoid Cells,ILC2s)和嗜酸性粒细胞(Eosinophils)对BAT产热和WAT的棕色化的促进作用,以及M2型巨噬细胞不参与/抑制WAT棕色化这两个方面的研究状况做一综述。  相似文献   

4.
目的:探索组蛋白H3K27me3甲基转移酶Ezh2对小鼠白色、棕色和米色脂肪细胞分化的影响。方法:构建诱导型Ezh2全身敲除小鼠(Ezh2~(flox/flox) CAGcre)并于6周龄时腹腔注射他莫昔芬诱导敲除,以同窝、同性别、相同基因型假诱导(腹腔注射玉米油)小鼠作为对照。诱导完成后在光镜下观察脂肪细胞形态,采用Western Blot法检测脂肪组织中H3K27me3、Ezh2和Ucp1的蛋白表达量。采用Realtime PCR法检测不同部位脂肪组织的脂肪分化相关基因(Pparγ、Adipoq和Fabp4)、棕色脂肪标志基因(Ucp1、Cidea和Prdm16)和米色脂肪标志基因(CD137、Tmem26和Tbx1)的表达。检测敲除组小鼠的冷耐受能力,并予以高脂饮食诱导肥胖,观察小鼠体重增长情况、诱导结束后小鼠的糖耐量和胰岛素敏感性指标。结果:Ezh2敲除小鼠Ezh2和H3K27me3的蛋白含量降低,背部棕色脂肪细胞脂滴明显小于对照组,Ucp1的基因和蛋白表达明显高于对照组(P0.05);敲除组小鼠白色脂肪细胞分化较差,米色脂肪分化增加,米色脂肪的Ucp1和Tbx1基因表达增加(P0.05)。敲除小鼠可以更好地耐受冷刺激,并抵抗高脂饮食诱导的肥胖和胰岛素抵抗。结论:Ezh2在体内促进白色脂肪细胞的分化,抑制棕色和米色脂肪细胞分化。  相似文献   

5.
全球性肥胖症及其代谢疾病已经严重影响人类健康。因此,对其进行治疗变得愈加重要。新近研究表明,激活棕色和米色脂肪可能成为对抗肥胖的有效途径。白色脂肪棕色化可使储存能量的白色脂肪转化为具有类似棕色脂肪产热特性的米色脂肪,来增加耗能,对抗肥胖。本文综述了棕色和米色脂肪激活剂及其作用机制的研究进展,并从纳米技术的角度展望了其在肥胖症治疗中的应用前景。  相似文献   

6.
脂肪细胞分化过程中的分子事件   总被引:3,自引:0,他引:3  
脂肪细胞来源于间充质干细胞,其分化过程经历了间充质干细胞、成脂肪细胞、前体脂肪细胞、不成熟脂肪细胞和成熟脂肪细胞几个阶段。现就脂肪细胞分化过程及其标志基因的表达时序和近年来发现的关键新调控基因的研究进展进行综述。  相似文献   

7.
棕色脂肪组织 (BAT)是由棕色脂肪细胞和血管基质成分 (SVF)组成,其中SVF中包括内皮细胞、淋巴细胞、成纤维细胞以及具有多种分化功能的干细胞,在调节心血管健康与疾病上扮演着重要角色,参与心血管疾病的发生与发展。一方面,BAT通过能量代谢以及自分泌或旁分泌方式分泌的细胞因子对机体产生重要影响。BAT可以作用于心血管系统,发挥抗炎、抗心室重构等作用,从而对心血管起到保护作用。另一方面,脂肪组织来源干细胞的发现与应用,也为心血管疾病的治疗提供了有效途径。本文回顾了BAT自发现以来在人体及动物模型上的相关研究进展,论述了其与心血管损伤的相关性。  相似文献   

8.
微小RNA(microRNA,miRNA)是一类长度约为20~24个核苷酸序列的内源性的具有转录后调节功能的单链非编码小RNA,在基因表达调控方面具有广泛作用,参与了生物体生长发育、细胞增殖、分化、凋亡等多种生物学过程.最新研究发现,microRNA193b-365在棕色脂肪细胞分化过程中,通过上调或下调一些影响棕色脂肪细胞分化方向的因子(如Runx1t1 、Cdon、Igfbp5、PRDM16等)的表达水平,而发挥促进棕色脂肪细胞分化的功能.促进棕色脂肪形成可增加热量的产生,同时减少脂肪堆积,从而有助于减少肥胖症及其相关疾病的发生.microRNA正性调控棕色脂肪细胞分化这一作用机制为治疗肥胖症的研究提供了新方向,有可能成为脂类代谢性疾病治疗的潜在靶点.  相似文献   

9.
脂肪细胞分化及其调控的研究进展   总被引:1,自引:0,他引:1  
肥胖症等多种代谢疾病在全世界范围内的流行使得人们高度关注脂肪沉积调控的机制研究。在细胞水平上,脂肪组织的沉积是脂肪细胞数目增加和单个细胞体积增大的结果。其中,脂肪细胞数目由多潜能干细胞定向分化为前体脂肪细胞的程度决定,而单个细胞体积则与其分化程度和甘油三酯积累量相关。因此,揭示脂肪细胞分化的细胞和分子机制,将为上述代谢性疾病预防和治疗提供重要的理论基础。本文对脂肪细胞的起源、脂肪细胞分化的体外研究模型、脂肪细胞分化的规律和调控以及脂肪细胞分化研究中关键的问题等方面的研究成果进行总结,综述了近年来关于脂肪细胞分化及其调控的研究进展。  相似文献   

10.
采用RT-PCR、油红O染色法、油红O染色提取法和分光光度计法,探讨不同浓度9-顺式维甲酸(9-cisRA)(0-10$mol/L)对体外原代培养猪前体脂肪细胞分化的影响及其可能机制。结果表明,9-cisRA在脂肪细胞分化中因浓度不同而发挥不同作用。低浓度9-cisRA(0-10nmol/L)促进前体脂肪细胞分化,并上调RXRα、PPARγmRNA表达,增加前体脂肪细胞分化标志酶3-磷酸甘油脱氢酶(glyc-erol-3-phosphate dehydrogenase,GPDH)的活性;高浓度9-cisRA(100nmol/L-10$mol/L)则抑制前体脂肪细胞分化,并下调RXRα、PPARγmRNA表达,减少GPDH的活性。结果提示9-cisRA在猪前体脂肪细胞分化中,可能通过调控RXRα和PPARγ基因表达变化来发挥其促进或抑制作用。  相似文献   

11.
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Highlights
  • •First comparative proteomic analysis of white and brown adipocyte secretomes.
  • •100 novel adipokines differentially secreted from white versus brown adipocytes.
  • •Functionally enriched protein class changes in white and brown adipocytes.
  • •200 novel, NE-responsive adipokines from brown adipocytes.
  相似文献   

12.
Adipose tissue is a major metabolic organ, and it has been traditionally classified as either white adipose tissue(WAT) or brown adipose tissue(BAT). WAT and BAT are characterized by different anatomical locations, morphological structures, functions, and regulations. WAT and BAT are both involved in energy balance. WAT is mainly involved in the storage and mobilization of energy in the form of triglycerides, whereas BAT specializes in dissipating energy as heat during cold- or diet-induced thermogenesis. Recently, brownlike adipocytes were discovered in WAT. These brownlike adipocytes that appear in WAT are called beige or brite adipocytes. Interestingly, these beige/brite cells resemble white fat cells in the basal state, but they respond to thermogenic stimuli with increased levels of thermogenic genes and increased respiration rates. In addition, beige/brite cells have a gene expressionpattern distinct from that of either white or brown fat cells. The current epidemic of obesity has increased the interest in studying adipocyte formation(adipogenesis), especially in beige/brite cells. This review summarizes the developmental process of adipose tissues that originate from the mesenchymal stem cells and the features of these three different types of adipocytes.  相似文献   

13.
二十二碳六烯酸对大鼠脂肪细胞增殖分化的影响   总被引:4,自引:1,他引:4  
体外培养大鼠脂肪细胞,分别以0 μmol/L(对照组)、40 μmol/L(低剂量组)和160 μmol/L(高剂量组)的二十二碳六烯酸(DHA)处理细胞。采用台盼蓝排斥试验和MTT比色法检测细胞活性及增殖状况;油红O染色化学比色法定量分析细胞内脂肪生成及细胞分化程度;逆转录聚合酶链反应 (RT-PCR) 分析过氧化物酶增殖物激活受体γ2(PPARγ2)mRNA表达情况,探讨DHA对前体脂肪细胞增殖分化的影响及其可能机制。结果显示,各组细胞活力及MTT测得的光密度值(OD值)均低于对照组,160μmol/L组在60~72h作用显著(P<0.05);脂肪细胞经DHA处理后, 160μmol/L组细胞油红O染色的OD值及PPARγ2 mRNA表达量均显著下降(P<0.01)。以上结果说明,DHA对脂肪细胞增殖分化均有一定抑制作用,高剂量DHA(160μmol/L)可显著减少细胞内脂肪的合成、抑制脂肪细胞分化,PPARγ2 mRNA表达量的下降可能是DHA抑制细胞分化的部分原因。  相似文献   

14.
Adipose tissue is a major metabolic organ, and it has been traditionally classified as either white adipose tissue (WAT) or brown adipose tissue (BAT). WAT and BAT are characterized by different anatomical locations, morphological structures, functions, and regulations. WAT and BAT are both involved in energy balance. WAT is mainly involved in the storage and mobilization of energy in the form of triglycerides, whereas BAT specializes in dissipating energy as heat during cold- or diet-induced thermogenesis. Recently, brown-like adipocytes were discovered in WAT. These brown-like adipocytes that appear in WAT are called beige or brite adipocytes. Interestingly, these beige/brite cells resemble white fat cells in the basal state, but they respond to thermogenic stimuli with increased levels of thermogenic genes and increased respiration rates. In addition, beige/brite cells have a gene expression pattern distinct from that of either white or brown fat cells. The current epidemic of obesity has increased the interest in studying adipocyte formation (adipogenesis), especially in beige/brite cells. This review summarizes the developmental process of adipose tissues that originate from the mesenchymal stem cells and the features of these three different types of adipocytes.  相似文献   

15.
Objective: The aim of this study was to evaluate the effects of the selective angiotensin receptor 1 antagonist irbesartan on the growth and differentiation of the adipocytes in obese Zucker fa/fa rats. Research Methods and Procedures: Obese Zucker fa/fa rats were treated by oral route for 3 weeks with irbesartan at doses of 3–10‐30 mg/kg per day. The adipocyte differentiation was evaluated by analyzing tissue samples of white (retroperitoneal) or brown (interscapular) adipose tissue for the presence of peroxisome proliferator activated receptor γ, leptin, and the activity of glycerol‐3‐phosphate dehydrogenase. Results: This study showed that the treatment of obese Zucker fa/fa with irbesartan effectively reduced the differentiation of adipocytes within brown (interscapular) and white (retroperitoneal) adipose tissue. In fact, irbesartan significantly (p < 0.01) and dose‐dependently reduced the tissue levels of leptin, peroxisome proliferator activated receptor γ, and the activity of the enzyme glycerol‐3‐phoshate dehydrogenase accepted markers of adipocyte differentiation. None of the tested doses of irbesartan affected these markers in non‐obese rats. Discussion: The antagonism of the angiotensin receptor 1 receptors with irbesartan reduces the adipogenic activity of angiotensin II in obese Zucker rats, with the endpoint being reduction of the growth and differentiation of the adipocytes within the adipose tissue.  相似文献   

16.
《Tissue & cell》2016,48(5):452-460
Brown adipose tissue (BAT) is mainly composed of adipocytes, it is highly vascularized and innervated, and can be activated in adult humans. Brown adipocytes are responsible for performing non-shivering thermogenesis, which is exclusively mediated by uncoupling protein (UCP) -1 (a protein found in the inner mitochondrial membrane), the hallmark of BAT, responsible for the uncoupling of the proton leakage from the ATP production, therefore, generating heat (i.e. thermogenesis). Besides UCP1, other compounds are essential not only to thermogenesis, but also to the proliferation and differentiation of BAT, including peroxisome proliferator-activated receptor (PPAR) family, PPARgamma coactivator 1 (PGC1)-alpha, and PRD1-BF-1-RIZ1 homologous domain protein containing protein (PRDM) -16. The sympathetic nervous system centrally regulates thermogenesis through norepinephrine, which acts on the adrenergic receptors of BAT. This bound leads to the initialization of the many pathways that may activate thermogenesis in acute and/or chronic ways. In summary, this mini-review aims to demonstrate the latest advances in the knowledge of BAT.  相似文献   

17.
郭玲  丁振华 《生命的化学》2007,27(3):227-229
GW小体(GW bodies,GWB)是利用自身免疫血清免疫标记蛋白GW182而鉴定的胞质聚集区,被认为是mRNA结构组分的储存中心和降解位点,是参与mRNA降解的浓缩的蛋白质.它与酵母菌中的胞质加工小体(cytoplasmic processing bodies,P-小体)蛋白具有同源性.它们的大小和数量随着细胞周期的不同而变化,且在S期和G,期体积最大,数量最多.GWB的破坏和降解使干扰小RNA(siRNA)和微RNA(miRNA)的功能减弱,且导入人的外源性的Argonaut蛋白也在GWB浓聚,说明RNAi功能可能与GWB存在着某些未知的联系.由于miRNA也参与调节细胞周期进程和细胞增殖,因此GWB不仅对miRNA的功能起关键作用,也与细胞的周期进程有很大联系.  相似文献   

18.
《Cell reports》2020,30(10):3424-3433.e4
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  相似文献   

19.
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