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1.
旨在研究猪C1QTNF3基因可变剪接体的特性及miR-101通过C1QTNF3基因促进猪脂肪SV细胞成脂分化的机制。本研究采集3头30日龄健康马身猪仔公猪心、肝、脾、肺、肾、胃、股二头肌、腰大肌、皮下脂肪和背部脂肪组织样品,首先利用RT-PCR技术和生物信息学方法对C1QTNF3基因的不同转录本进行扩增和生物学特性分析,采用qRT-PCR技术检测C1QTNF3基因不同转录本在猪组织中的表达变化。随后,利用生物信息学预测发现,C1QTNF3上游的调控因子是miR-101,采用双荧光素酶报告试验验证miR-101对C1QTNF3的调控作用。最后,利用油红O染色和qRT-PCR技术检测过表达miR-101对猪脂肪SV细胞成脂分化的影响。基因克隆得到猪C1QTNF3存在两个转录本C1QTNF3和C1QTNF3-1,其中C1QTNF3-1为新鉴定的转录本;测序分析显示,与C1QTNF3相比,C1QTNF3-1的第1外显子区域缺失了219个碱基,少编码73个氨基酸。进化树分析显示,猪C1QTNF3和C1QTNF3-1蛋白序列与人和马来亚穿山甲等物种的亲缘关系较近。C1QTNF3和C1QTNF3-1在猪各组织中均有表达,且在各组织中C1QTNF3-1的表达量均极显著高于C1QTNF3(P<0.01)。过表达miR-101极显著下调C1QTNF3 3'UTR区域的荧光素酶活性(P<0.01)和C1QTNF3 mRNA的表达(P<0.01),同时增加了脂肪细胞成脂分化关键基因PPARγC/EBPβSREBP-1c和FABP4的mRNA表达量(P<0.01)。本试验成功克隆了猪C1QTNF3基因的两个可变剪接体,其中C1QTNF3-1在猪不同组织中均高表达,推测该转录本为基因发挥功能的主要亚型。并深入研究了C1QTNF3基因的上游调控因子,揭示了miR-101靶向C1QTNF3促进成脂分化的机制,丰富了C1QTNF3的生物学作用和调控网络。  相似文献   
2.
The degree of intramuscular adipose tissue accumulation is one of the factors affecting meat quality. Accumulation of adipocytes is also observed under the pathological condition of skeletal muscle such as muscular dystrophy and sarcopenia. The origin of adipocytes seen in skeletal muscle is mesenchymal progenitor cells that can give rise to both adipocytes and fibroblasts. In the present study, we demonstrated that siRNA-mediated suppression of MyoD expression in rat skeletal muscle progenitor cell culture, which comprises both myogenic satellite cells and mesenchymal progenitor cells, resulted in diminished myotube formation and an unexpected spontaneous appearance of white adipocytes. Suppressing myomaker expression also resulted in complete absence of myotube formation without reducing MyoD expression, but no adipogenesis was seen in this scenario, indicating that decline in MyoD expression rather than decreased myotube formation is necessary to induce adipogenesis. In addition, spontaneous adipogenesis induced by suppressing MyoD expression in culture was inhibited by the conditioned medium from control culture, indicating that anti-adipogenic factor(s) are secreted from MyoD-positive myogenic cells. These results indicate the presence of regulatory mechanism on adipogenesis by myogenic cells.  相似文献   
3.
本研究旨在分析miR-199a-5p对猪肌内脂肪细胞脂质生成的影响及作用机制。采集淮南猪不同育肥时期(育肥前期、中期和后期)的背最长肌和皮下脂肪组织,通过实时荧光定量PCR分析其表达变化趋势;合成miR-199a-5p的mimics,转染猪原代肌内脂肪细胞,诱导分化后通过油红O染色观察过表达miR-199a-5p对脂质生成的影响;结合之前筛选到的脂肪型和瘦肉型猪差异表达mRNAs、lncRNAs和circRNAs,使用miRanda软件筛选miR-199a-5p的靶分子,并用GO和KEGG富集分析法对这些mRNAs、lncRNAs的共表达基因和circRNAs的来源基因进行功能分析。结果显示,随着育肥进程,miR-199a-5p在背最长肌中表达量持续上调,而在皮下脂肪组织中表达量先下调后上调;过表达miR-199a-5p可抑制肌内脂肪细胞的脂质生成。共筛选到9个mRNAs、5个lncRNAs和1258个circRNAs包含miR-199a-5p结合位点,GO分析主要富集于内质网和肌动蛋白结合,KEGG分析发现主要富集于糖、脂质和蛋白质代谢。提示miR-199a-5p可能通过与lncRNAs和circRNAs互作间接调控靶基因,参与调控肌肉发育、脂质生成和代谢,可作为影响肉质性状的候选miRNA。  相似文献   
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To investigate genes involved in intramuscular adipogenesis in ruminants, 16 genes with dramatic variable expression were selected. These were selected from the differentiation‐ and proliferation‐phase libraries of our previous serial analysis of gene expression (SAGE) studies of a clonal bovine intramuscular preadipocyte (BIP) cell line. We harvested the BIP cells over 12 days after adipogenic stimulation with all‐trans retinoic acid (ATRA). Quantitative real‐time PCR confirmed the earlier SAGE study results of the expression patterns of 15 of the genes. On day 6, TG accumulation increased significantly in the BIP cells but was completely inhibited in the 3T3‐L1 cells (the monogastric reference). ATRA enhanced expression levels of six genes whereas it suppressed expression of eight genes on day 3 of adipogenesis in the BIP cells. Forty‐eight hours after transfection, the messenger RNA expression level of the adipose differentiation‐related protein (ADFP), encoded by one of the upregulated genes, in the ADFP small interference RNA (siRNA)‐transfected cells was 3.5% of that in negative control‐transfected cells. Also, 6 days after induction the TG level in the ADFP siRNA‐transfected cells was 21.8% lower than that in negative control‐transfected cells. This analysis of gene expression profiles after ATRA treatment will contribute to our understanding of the molecular mechanisms involved in bovine intramuscular adipogenesis.  相似文献   
7.
Intramuscular fat (IMF) content is considered to be a key factor that affects the marbling, tenderness, juiciness and lfavor of pork. To investigate the effects of myristic acid (MA) on the differentiation of porcine intramuscular adipocytes, cells were isolated from longissimus dorsi muscle (LDM) and treated with 0, 10, 50 or 100μmol L-1 MA. The results showed that MA signiifcantly promotes the differentiation of intramuscular adipocytes in a dose-dependent manner. MA also led to a parallel increase in the expression of peroxisome proliferator activated receptor-γ(PPARγ) and adipose-related genes, such as glucose transporter 1 (GLUT1), lipoprotein lipase (LPL), adipocyte fatty acid binding protein 4 (FABP4/aP2), fatty acid translocase (FAT), acetyl-CoA carboxylaseα(ACCα), adipose triglyceride lipase (ATGL) and fatty acid synthase (FASN). However, no signiifcant effects of MA were observed on the expression of CAAT enhancer binding protein-α(C/EBPα) or hormone sensitive lipase (HSL). The expression of pyruvate dehydrogenase kinase 4 (PDK4) was increased by MA during the early stages of differentiation (day 1-3). In addition, MA also increased the absolute content of C14 (P〈0.001) and saturated fatty acids (SFA) (P〈0.05) to varying degrees, but no effects were observed on other fatty acids. These results suggest that MA might be able to enhance the IMF content of pork and increase the accumulation of myristic and myristoleic acid in muscle, which might have beneifcial implications for human health.  相似文献   
8.
Intramuscular fat (IMF) content is considered to be a key factor that affects the marbling, tenderness, juiciness and flavor of pork. To investigate the effects of myristic acid (MA) on the differentiation of porcine intramuscular adipocytes, cells were isolated from longissimus dorsi muscle (LDM) and treated with 0, 10, 50 or 100 μmol L-1 MA. The results showed that MA significantly promotes the differentiation of intramuscular adipocytes in a dose-dependent manner. MA also led to a parallel increase in the expression of peroxisome proliferator activated receptor-γ (PPARγ) and adipose-related genes, such as glucose transporter 1 (GLUT1), lipoprotein lipase (LPL), adipocyte fatty acid binding protein 4 (FABP4/aP2), fatty acid translocase (FAT), acetyl-CoA carboxylase α (ACCα), adipose triglyceride lipase (ATGL) and fatty acid synthase (FASN). However, no significant effects of MA were observed on the expression of CAAT enhancer binding protein-α (C/EBPα) or hormone sensitive lipase (HSL). The expression of pyruvate dehydrogenase kinase 4 (PDK4) was increased by MA during the early stages of differentiation (day 1-3). In addition, MA also increased the absolute content of C14 (P<0.001) and saturated fatty acids (SFA) (P<0.05) to varying degrees, but no effects were observed on other fatty acids. These results suggest that MA might be able to enhance the IMF content of pork and increase the accumulation of myristic and myristoleic acid in muscle, which might have beneficial implications for human health.  相似文献   
9.
Ghrelin and growth hormone secretagogues receptor (GHS‐R or ghrelin receptor) have been reported as being one of the factors of adipogenesis in adipocytes. To investigate the involvement of ghrelin and GHS‐R in adipocytes, the effect of the GHS‐R antagonist, [D‐Lys‐3]‐GHRP‐6 (His‐D‐Trp‐D‐Lys‐Trp‐D‐Phe‐Lys‐NH2), on the process of adipogenesis in ovine and rat adipocytes was evaluated. [D‐Lys‐3]‐GHRP‐6 (10?7 mol/L) significantly inhibited adipogenic differentiation of ovine and rat preadipocytes prepared from adipose tissues. The level of peroxisome proliferator activated receptor (PPAR)‐γ2 mRNA, an adipogenic marker, was decreased during the differentiation of adipocytes treated with [D‐Lys‐3]‐GHRP‐6 for 10 days. Ghrelin stimulated adipogenesis, also causing an increment of glycerol‐3‐phosphate dehydrogenase and upregulation of PPAR‐γ2. Furthermore, the antilipolytic effect of ghrelin was attenuated by treatment with [D‐Lys‐3]‐GHRP‐6 in both types of isolated adipocytes. Overall, the results of the present study highlight that GHS‐R in adipogenesis can be blocked by treatment with [D‐Lys‐3]‐GHRP‐6.  相似文献   
10.
 【目的】选用320只1日龄AA肉公鸡,研究谷胺酰胺和天冬胺酰胺对肉鸡部分脂肪性状、血脂指标及相关生脂基因mRNA表达水平的影响,研究2种氨基酸对肉鸡脂代谢的影响机制。【方法】采用双因子完全随机设计,将试验鸡按体重随机分为4个处理组,分别在玉米-豆粕型基础饲粮中添加1%的谷氨酰胺和天冬胺酰胺,试验期为42 d。屠宰后测腹脂率,游标卡尺测皮下脂肪和肌间脂肪厚度,比色法测定血清甘油三酯(TG)、胆固醇(TC)、高密度脂蛋白固醇(HDL-C),RT-PCR技术检测肝脏、腹脂组织中乙酰辅酶A羧化酶(ACC)、脂肪酸合成酶(FAS)、肉毒碱棕榈酰基转移酶Ⅰ(CPT-1)、脂蛋白酯酶(LPL)、肉毒碱棕榈酰基转移酶α(PPARα)mRNA水平的变化。【结果】饲粮中混合添加谷氨酰胺和天冬胺酰胺可显著提高肉鸡增重(P<0.05),对料肉比无显著影响(P>0.05),显著提高肌间脂肪宽和皮下脂肪厚(P<0.05),对腹脂率和全净膛率无显著影响(P>0.05);谷氨酰胺组和天冬胺酰胺组可显著降低腹脂率(P<0.05),显著增加皮下脂肪厚和肌间脂肪宽(P<0.05);添加谷氨酰胺和天冬胺酰胺后可显著降低血液TG含量(P<0.05),提高血液TC含量和降低HDL-C水平,影响血脂代谢。3个试验组肝脏中ACC、FAS、CPT-1、PPARα基因转录表达显著降低(P<0.05);谷氨酰胺组LPL 基因表达显著增加(P<0.05)。3个试验组脂肪组织PPARα转录表达显著增加(P<0.05),谷氨酰胺组和天冬胺酰胺组脂肪组织ACC转录表达显著降低(P<0.05),混合组脂肪组织FAS、LPL基因转录显著降低(P<0.05),而CPT-1转录则表达显著增加(P<0.05)。【结论】饲粮中添加谷胺酰胺和天冬胺酰胺可提高肉鸡生产性能,在一定程度上减少腹脂沉积,改善胴体性状。  相似文献   
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