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1.
旨在从GIP/GIPR下游的Akt和PKA信号通路中筛选出调控GIPR表达的调控因子,并解析GIPR的表达调控机制。本研究以小鼠胰岛瘤细胞系Min6为试验材料,在Akt、PKA信号通路阻断的条件下,通过Western blot筛选出与GIPR表达相关的转录因子T细胞因子4(TCF4);利用双荧光素酶报告系统确定TCF4对GIPR表达调控的影响,再通过敲除或过表达TCF4进一步验证两者之间的调控关系;采用CCK8法检测TCF4介导的促增殖作用,ELISA检测胰岛素分泌能力。结果显示,GIP可激活Akt磷酸化,并促进GIPR表达;在GIP激活及Akt、PKA信号通路阻断时,GIPR蛋白表达趋势与TCF4始终一致;TCF4可与GIPR核心启动子区结合,进而调控其表达;TCF4过表达时,GIPR的mRNA和蛋白表达上调,并促进β细胞增殖及胰岛素分泌;干扰TCF4显著降低GIP作用下GIPR的mRNA和蛋白表达,抑制β细胞增殖。综上,GIP结合GIPR后,经Akt信号通路上调TCF4进而增强GIPR表达,形成正反馈加强GIP信号,提高β细胞增殖和胰岛素分泌的功能,维持血糖稳态。因此,在胰岛素抵抗阻断Akt及上游信号通路时,经转录因子TCF4增强GIPR表达可作为改善胰岛β细胞功能障碍的靶点。  相似文献   

2.
鸡脂肪组织TCF21基因启动子区DNA甲基化与其表达的关系   总被引:1,自引:1,他引:0  
旨在研究鸡脂肪组织中TCF21基因启动子区DNA甲基化水平与其表达的关系。以东北农业大学高、低腹脂双向选择品系(简称高、低脂系)第24世代7周龄肉鸡为试验材料,利用RT-qPCR检测高、低脂系肉鸡腹部脂肪组织中TCF21基因的mRNA表达水平;利用生物信息学和双荧光素酶报告系统分析TCF21基因启动子的结构与功能;利用Sequenom MassARRAY飞行质谱检测高、低脂系肉鸡腹部脂肪组织中TCF21基因启动子区CpG位点的甲基化水平;利用CpG甲基转移酶处理TCF21启动子报告基因质粒,分析DNA甲基化对TCF21基因启动子活性的影响。结果显示,高脂系肉鸡腹部脂肪组织中TCF21基因的mRNA表达水平极显著高于低脂系(P<0.001);TCF21基因的启动子区存在40个CpG位点,且在启动子的近端和远端均有分布,但不存在CpG岛;将TCF21基因的启动子划分为5个功能区域,分别为R1区域(-2 000~-1 500 bp)、R2区域(-1 500~-1 000 bp)、R3区域(-1 000~-500 bp)、R4区域(-500~-200 bp)和Core区域(-200~-100 bp);高脂系R2、R3和R2+R3区域的DNA甲基化水平显著或极显著高于低脂系(P<0.05或P<0.001);R2、R3、R2+R3区域的DNA甲基化水平与TCF21基因mRNA表达水平呈显著正相关(R2区域:r=0.438,P<0.05;R3区域:r=0.371,P<0.05;R2+R3区域:r=0.489,P<0.05);R2区域的DNA甲基化显著抑制其转录活性(P<0.05)。综上所述,TCF21基因在高、低脂系肉鸡腹部脂肪组织中的表达水平主要与其启动子R2区域的DNA甲基化水平有关。  相似文献   

3.
旨在研究WNT4的一个可变剪接体(WNT4-β)对山羊卵泡颗粒细胞增殖的影响。本研究选取4~6月龄健康母羊20只,采集双侧卵巢,体外分离卵泡颗粒细胞进行培养。通过免疫荧光染色技术确定WNT4-β的表达位置;在山羊颗粒细胞中过表达或干扰WNT4-β后,利用RT-qPCR、Western blot检测WNT4-β和WNT信号通路中关键标记因子ROA1、RHOA及颗粒细胞增殖标记基因cyclin-D2、CDK4的表达变化;CCK-8技术检测颗粒细胞增殖情况;并通过ELISA分析颗粒细胞中生殖激素水平的变化。免疫荧光染色结果显示,WNT4-β只在山羊卵泡颗粒细胞中表达,在卵母细胞不表达;过表达WNT4-β后,WNT4-β和颗粒细胞增殖因子cyclin-D2、CDK4的mRNA相对表达量极显著增加(P<0.01),蛋白表达水平显著增加(P<0.05);WNT信号通路标记因子ROA1、RHOA mRNA表达水平显著增加(P<0.05),β-catenin蛋白表达水平显著增加(P<0.05);干扰WNT4-β后,WNT4-β、cyclin-D2、CDK4、ROA1和RHOA 的mRNA表达显著降低(P<0.05),WNT4-β、cyclin-D2、CDK4及β-catenin蛋白表达显著降低(P<0.05)。CCK-8结果显示,过表达WNT4-β促进颗粒细胞增殖(P<0.05);ELISA结果显示,过表达WNT4-β后,颗粒细胞中雌二醇(estradiol,E2)水平显著增加(P<0.05),孕酮(progesterone,P4)水平升高但不显著(P>0.05);干扰WNT4-β后则结果相反,颗粒细胞增殖受到抑制(P<0.05),E2和P4的水平显著降低(P<0.05)。综上所述,WNT4可变剪接体WNT4-β通过调控WNT信号通路促进山羊卵泡颗粒细胞增殖及类固醇激素分泌,本研究为解析WNT4调控山羊颗粒细胞增殖的潜在分子机制提供理论基础。  相似文献   

4.
旨在探究SMAD7对山羊卵泡颗粒细胞增殖和凋亡的影响。本试验收集3~4月龄大足黑山羊母羊的卵泡颗粒细胞,通过过表达或siRNA干扰、ELISA、qRT-PCR、Western blot及流式细胞术等技术与方法探究SMAD7对颗粒细胞增殖、凋亡及类固醇激素分泌的影响。结果发现,SMAD7过表达显著下调颗粒细胞增殖活力并促进细胞凋亡,抑制PCNA表达(P<0.05),下调BCL2/BAX的比值(P<0.01);同时,SMAD7干扰显著上调颗粒细胞增殖活力,显著上调PCNA表达(P<0.05)与BCL2/BAX表达量比值(P<0.05)。SMAD7过表达极显著上调颗粒细胞的孕酮分泌,下调雌二醇表达水平(P<0.01);同时SMAD7干扰极显著下调孕酮分泌,上调雌二醇分泌(P<0.01)。进一步研究发现,SMAD7过表达显著抑制SMAD2、SMAD3的mRNA和蛋白表达(P<0.05);SMAD7干扰则显著促进SMAD2、SMAD3的mRNA和蛋白表达(P<0.05)。结果表明,SMAD7抑制山羊卵泡颗粒细胞的增殖和雌二醇分泌,促进凋亡和孕酮的合成,并且抑制SMAD2、SMAD3的表达,进而调节卵泡的发育与闭锁。  相似文献   

5.
分离1日龄长白仔猪的胰腺细胞后,通过显微镜和电镜观察细胞生长形态和超微结构,运用细胞计数法制作细胞生长曲线测定其群体倍增时间,采用免疫组化法测定细胞生长不同时期的表面标志蛋白的表达,用肝细胞因子和尼克酰胺联合诱导其向功能性G细胞分化,并测定了分化细胞对葡萄糖的反应能力。结果显示获得的仔猪胰腺祖/干细胞具有多种形态,以神经样细胞克隆生长占优势,电镜超微结构证实其具有核质比高、细胞器不分化的干细胞态特征。试验测得第1代和第3代群体的倍增时间分别为96.0、307.7h,仔猪胰腺祖/干细胞表达胚胎干细胞标志Oct4、SSEA-1、SSEA-4,也表达胰腺干细胞的标志PDX-1、CK7等。仔猪胰腺干/祖细胞的向β细胞诱导分化细胞对22mmol/L葡萄糖的刺激产生强烈的胰岛素分泌反应,胰岛素分泌量可达321.75mIU/L。结果证实仔猪胰腺千/祖细胞具有干细胞和胰腺祖的表面标志和超微结构,同时具有分化成分泌胰岛素β细胞的能力。  相似文献   

6.
旨在研究视神经蛋白(neuropsin,OPN5)对鸭颗粒细胞凋亡、增殖及类固醇激素生成的影响。本研究分别对鸭颗粒细胞进行OPN5过表达质粒和OPN5 siRNA处理72 h (n=6),应用EdU细胞增殖检测技术、流式细胞技术、Annexin V-FITC、RT-PCR、Western blot及ELISA技术系统地检测颗粒细胞的增殖、凋亡情况及生殖相关基因的mRNA、蛋白水平及激素水平的变化规律。结果显示,OPN5过表达能促进鸭卵泡颗粒细胞增殖,抑制鸭卵泡颗粒细胞凋亡;能极显著地促进GnRHRFSHRLHR的表达 ,并抑制GnIHGnIHR的表达(P<0.01);能显著或极显著上调StARCYP11A1、3β-HSDCYP17A1、CYP19A1的mRNA水平(P<0.05或P<0.01);显著升高OPN5、3β-HSD及CYP19A1的蛋白表达水平(P<0.05)和极显著升高E2、P4分泌水平(P<0.01),并极显著降低INHβ的水平(P<0.01)。OPN5 siRNA能够显著降低OPN5的表达水平(P<0.01),抑制卵泡颗粒细胞增殖并促进凋亡,极显著下调GnRHGnRHRFSHRLHRP<0.01),促进GnIHGnIHR的表达(P<0.01);并极显著抑制StARCYP11A1、CYP17A1的表达(P<0.01);显著降低OPN5、3β-HSD及CYP19A1蛋白表达水平(P<0.05)及极显著降低E2、P4的分泌水平(P<0.01),并能极显著升高INHβ的水平(P<0.01)。研究表明,OPN5能促进鸭卵泡颗粒细胞的增殖,抑制其凋亡,促进颗粒细胞中类固醇激素的生成和分泌。  相似文献   

7.
About 30% of U.S. women of reproductive age are obese, a condition linked to offspring obesity and diabetes. This study utilized an ovine model of maternal obesity in which ewes are overfed to induce obesity at conception and throughout gestation. At mid-gestation, fetuses from these obese ewes are macrosomic, hyperglycemic, and hyperinsulinemic, and they exhibited markedly increased pancreatic weight and β-cell numbers compared with fetuses of ewes fed to requirements. This study was conducted to establish fetal pancreatic phenotype and function in late gestation and at term in this ovine model. Multiparous ewes were fed a control (C, 100% National Research Council [NRC] recommendations) or obesogenic (OB, 150% NRC) diet from 60 days before conception to necropsy at day 135 of gestation or to lambing. No differences were observed in fetal size or weight on day 135 or in lamb birth weights between C and OB ewes. In contrast to our previously published results at mid-gestation, pancreatic weights (P < 0.01) and β-cell numbers (P < 0.05) of OB fetuses were markedly lower than those from C fetuses, whereas the β-cell apoptotic rate was increased (P < 0.05) in day 135 OB versus C fetuses. At birth, blood insulin concentration was lower (P < 0.05) and glucose level was higher (P < 0.05) in newborn lambs from OB versus C ewes. These data demonstrate differential impacts of maternal obesity on fetal pancreatic growth and β-cell numbers during early and late gestation. During the first half of gestation there was a marked increase in pancreatic growth, β-cell proliferation, and insulin secretion, followed by a reduction in pancreatic growth and β-cell numbers in late gestation, resulting in reduced circulating insulin at term. It is speculated that the failure of the pancreas to return to a normal cellular composition and function postnatally could result in glucose/insulin dysregulation, leading to obesity, glucose intolerance, and diabetes in postnatal life.  相似文献   

8.
9.
In the formation of goose fatty liver induced by a high‐carbohydrate diet, it is characterized by the quick cell growth of liver. The carbohydrate is mostly digested and absorbed in the small intestine by the form of glucose. Recent studies have suggested a crucial role for PI3K‐Akt‐mTOR pathway in regulating cell proliferation, and then we speculate that PI3K‐Akt‐mTOR pathway may mediate glucose‐induced liver cell proliferation. Goose primary hepatocytes were isolated and incubated in either no addition as a control or glucose or PI3K‐Akt‐mTOR pathway inhibitors or cotreatment with glucose and PI3K‐Akt‐mTOR pathway inhibitors. The results firstly showed that 35 mmol/l glucose stimulated the mRNA level and protein content of factors involved in PI3K‐Akt‐mTOR signal pathway in goose primary hepatocytes. Secondly, 35 mmol/l glucose evidently changed the cell cycle PI index and protein expression of cyclin D1. Meanwhile, the upregulation of 35 mmol/l glucose on the DNA synthesis rate, cell cycle PI index, the mRNA expression, protein content and protein expression of factors involved in the cell proliferation was decreased significantly by the inhibitors of PI3K‐Akt‐mTOR pathway, LY294002, rapamycin or NVP‐BEZ235. In summary, glucose could stimulate the cell proliferation, and the PI3K‐Akt‐mTOR pathway inhibitors could dismiss glucose‐induced the upregulation of cell proliferation in goose primary hepatocyte.  相似文献   

10.
家蚕类胰岛素肽的结构及信号传导与作用   总被引:1,自引:0,他引:1  
孔祥宾  徐世清 《蚕业科学》2010,36(3):458-464
胰岛素(insulin)及其信号传导途径具有多种生物学效应,在调节生物的生长、代谢、生殖以及衰老等过程中起到非常重要的作用。国内外学者的研究表明:家蚕素(bombyxin)是无脊椎动物中首个被鉴定的类胰岛素肽,分子质量5kD,为异二聚体分子,与人胰岛素的氨基酸组成约有40%的同源性,家蚕素基因为基因组多拷贝基因,已发现的32个家蚕类胰岛素肽家族基因都无内含子,分成7个亚族,集中在基因组的3个片段,并以3种特有的基因排列模式排列;家蚕素基因主要在脑组织表达,在其他组织的表达量较低;家蚕素由脑中央背部的4对大型神经分泌细胞合成,通过神经轴突运送至对侧的咽侧体,然后释放到血淋巴液中,是一种由超日振荡放电节律所控制的分泌模式;家蚕素参与了糖代谢调控,有促进翅芽和造血器官细胞增殖,调控前胸腺分泌活性等作用。家蚕素信号通路的Pi3k60、Pdk、InR和Akt同源基因已相继被克隆,其中Akt编码的蛋白保守性最强,并能被商业化供应的抗哺乳动物丝氨酸-苏氨酸激酶(AKT)和磷酸化AKT抗体识别,为家蚕素信号系统研究提供了便利。鉴于家蚕变态和能量代谢等诸多特点,以家蚕作为模式生物研究胰岛素及其信号传导途径具有独特优势。  相似文献   

11.
旨在研究BMP4对睾丸支持细胞增殖的调控。本试验选取0、1、2和3月龄组的健康大足黑山羊公羊各3只,采集睾丸支持细胞,每次试验均设3个生物学重复和3次技术重复,通过体外培养、细胞免疫荧光、基因干扰、过表达、qPCR和Western blotting等技术对BMP4是否通过Id2对山羊睾丸支持细胞进行调控以及它们的调控关系进行验证。结果发现,BMP4在2月龄组大足黑山羊睾丸支持细胞中的表达量极显著高于0、1月龄组(P<0.01);在一定范围内,随着BMP4浓度的增加睾丸支持细胞的增殖活性有所增强,BMP4浓度为200 ng·mL-1时其增殖能力最强(P<0.05);干扰BMP4后,细胞增殖活力显著下降(P<0.05),但在72 h后回到正常水平(P>0.05),PCNA的表达极显著降低(P<0.01),表明干扰BMP4后细胞的增殖能力受到限制,细胞增殖指数测定结果进一步说明,干扰BMP4后细胞的增殖能力受到限制;过表达BMP4后,Id2基因表达水平极显著增加(P<0.01),表明BMP4对Id2具有正向调控作用;相对过表达BMP4再干扰Id2试验组,干扰Id2试验组的PCNA基因的表达水平显著降低(P<0.05),这进一步证明BMP4可以调控该基因和蛋白表达。综上所述,山羊睾丸支持细胞的增殖活力在一定范围内与BMP4的浓度呈正相关;且BMP4能够正向调控Id2的表达,并通过促进Id2的表达进而促进支持细胞的增殖。本研究为阐明BMP4调控山羊睾丸支持细胞的分子机制和生理功能提供了基础。  相似文献   

12.
旨在通过干扰或过表达盘状蛋白结构域受体1(DDR1)基因,探讨其对奶牛乳腺上皮细胞增殖、凋亡及周期的影响。本研究将DDR1基因小干扰RNA片段和过表达载体pcDNA3.1-DDR1转染奶牛乳腺上皮细胞,采用qRT-PCR和Western blot检测细胞中DDR1的干扰和过表达效果;利用CCK-8法检测细胞增殖能力;流式细胞术检测细胞周期和细胞凋亡(早凋、晚凋)的变化;利用qRT-PCR检测增殖与凋亡相关基因的表达情况。结果,在奶牛乳腺上皮细胞中干扰DDR1基因后,其mRNA和蛋白表达分别下调94%和30%,而过表达DDR1基因后,其mRNA和蛋白表达分别上调68.24和1.38倍;干扰DDR1极显著抑制细胞的增殖(P<0.01),细胞早凋与晚凋比例极显著上升(P<0.01);干扰组G1期细胞比例极显著上升(P<0.01),S期细胞比例极显著下降(P<0.01),G2期细胞比例显著下降(P<0.05),提示细胞阻滞在G0/G1期。相反,过表达DDR1能显著促进细胞增殖(P<0.05),显著抑制细胞晚期凋亡(P<0.05),G1期细胞比例极显著下降(P<0.01),S期细胞比例极显著上升(P<0.01),促进细胞由G1期向S期的转换。qRT-PCR检测结果显示,干扰DDR1后显著上调BAX、Caspase9基因的表达(P<0.05),极显著上调P53、FAS基因的表达(P<0.01),且显著下调PCNA、CyclinB1基因的表达(P<0.05);过表达DDR1后,分别显著和极显著下调CytcBAX基因的表达(P<0.05,P<0.01),并极显著上调CyclinB1基因的表达(P<0.01)。综上可见,DDR1能够调控奶牛乳腺上皮细胞的增殖、凋亡和周期,可为阐明DDR1参与奶牛乳腺上皮细胞生长发育的分子机制提供参考。  相似文献   

13.
The aim of this study was to investigate the effect of discoidin domain receptor 1 (DDR1) gene on the proliferation, apoptosis and cell cycle of dairy cow mammary epithelial cells through interfering and overexpressing DDR1. The small RNA interference fragment of DDR1 gene and overexpression vector pcDNA3.1-DDR1 were transfected into dairy cow mammary epithelial cells, qRT-PCR and Western blot were used to detect the interference and overexpression efficiency of DDR1; CCK-8 was employed to detect cell proliferation; Flow cytometry was performed to detect the changes of cell cycle and apoptosis (early apoptosis and late apoptosis). qRT-PCR was used to detect the expression of genes related to proliferation and apoptosis. After interfering DDR1 gene in dairy cow mammary epithelial cells, mRNA and protein expression levels of DDR1 were down-regulated by 94% and 30%, respectively; While after overexpressing DDR1 gene, its mRNA and protein expression were up-regulated 68.24 and 1.38 times, respectively. Interfering DDR1 extremely significantly inhibited the proliferation of cells (P<0.01), the ratio of early and late apoptotic cells was extremely significantly increased (P<0.01); the ratio of G1 phase cells in the interference group was extremely significantly increased (P<0.01), and the proportions of S and G2 phase cells were significantly decreased (P<0.01 and P<0.05), which suggested that the cells were blocked in G0/G1 phase. Conversely, overexpression of DDR1 could significantly promote cell proliferation (P<0.05), significantly inhibit the late apoptosis of cells (P<0.05), the proportion of G1 phase cells was extremely significantly decreased (P<0.01), and the proportion of S phase cells was extremely significantly increased (P<0.01), suggesting the enhancement of transition from G1 to S phase. The results of qRT-PCR detection showed that after interfering DDR1, the expressions of BAX and Caspase9 genes were significantly up-regulated (P<0.05), and the expressions of P53 and FAS genes were extremely significantly up-regulated (P<0.01), while the expressions of PCNA and CyclinB1 genes were significantly down-regulated (P<0.05). After overexpression of DDR1, the expressions of Cytc and BAX genes were significantly (P<0.05) and extremely significantly down-regulated(P<0.01), respectively, and the expression of CyclinB1 gene was extremely significantly up-regulated (P<0.01). In summary, DDR1 can regulate the proliferation, apoptosis and cycle of dairy cow mammary epithelial cells, this result will provide a reference for elucidating the molecular mechanism of DDR1 involved in the growth and development of dairy cow mammary epithelial cells.  相似文献   

14.
The hormonal mediators of obesity-induced insulin resistance and compensatory hyperinsulinemia in dogs have not been identified. Plasma samples were obtained after a 24-h fast from 104 client-owned lean, overweight, and obese dogs. Plasma glucose and insulin concentrations were used to calculate insulin sensitivity and β-cell function with the use of the homeostasis model assessment (HOMAinsulin sensitivity and HOMAβ-cell function, respectively). Path analysis with multivariable linear regression was used to identify whether fasting plasma leptin, adiponectin, or glucagon-like peptide-1 concentrations were associated with adiposity, insulin sensitivity, and basal insulin secretion. None of the dogs were hyperglycemic. In the final path model, adiposity was positively associated with leptin (P < 0.01) and glucagon-like peptide-1 (P = 0.04) concentrations. No significant total effect of adiposity on adiponectin in dogs (P = 0.24) was observed. If there is a direct effect of leptin on adiponectin, then our results indicate that this is a positive relationship, which at least partly counters a negative direct relationship between adiposity and adiponectin. Fasting plasma leptin concentration was directly negatively associated with fasting insulin sensitivity (P = 0.01) and positively associated with β-cell function (P < 0.01), but no direct association was observed between adiponectin concentration and either insulin sensitivity or β-cell function (P = 0.42 and 0.11, respectively). We conclude that dogs compensate effectively for obesity-induced insulin resistance. Fasting plasma leptin concentrations appear to be associated with obesity-associated changes in insulin sensitivity and compensatory hyperinsulinemia in naturally occurring obese dogs. Adiponectin does not appear to be involved in the pathophysiology of obesity-associated changes in insulin sensitivity.  相似文献   

15.
为了研究核不均一核糖核蛋白AB(heterogeneous nuclear ribonucleoprotein AB, HNRNPAB)对牛骨骼肌卫星细胞增殖与分化的影响。本研究以体外分离培养的鲁西黄牛胎牛原代骨骼肌卫星细胞为试验材料,体外诱导成肌分化,分别收取分化前和分化后第1、2、3天的细胞,提取RNA(每组设置4个重复)或蛋白质(每组设置3个重复),通过qRT-PCR、Western blot检测HNRNPAB在成肌分化前后的表达情况。随后合成HNRNPAB的干扰RNA,并转染牛骨骼肌卫星细胞干扰HNRNPAB的表达,设置阴性对照组;在试验组和对照组中,分别利用EdU试验检测细胞增殖情况,qRT-PCR技术、Western blot技术检测HNRNPAB、增殖标志因子Pax7、Cyclin D1及分化标志因子MyoG、MyHC的mRNA表达水平及蛋白表达水平。结果显示,HNRNPAB在牛骨骼肌卫星细胞成肌分化过程中的mRNA表达呈现先升后降的趋势,在分化第1天表达量最高,分化前后蛋白表达水平也具有显著差异。干扰HNRNPAB后,EdU细胞阳性率极显著上升(P<0.01),增...  相似文献   

16.
为了探讨c-Myc基因对细胞增殖及相关基因表达的调控作用,本试验构建了c-Myc-(G4S3-EGFP融合基因的真核表达载体pc-Myc-EGFP,并利用生物信息学分析了其结构和理化特征。转染后分别通过细胞计数和qRT-PCR检测了其对绵羊胚胎成纤维细胞(sheep embryonic fibroblasts,SEF)增殖及相关基因表达的影响,并利用启动子分析软件解析了相应的表达调控机制。酶切鉴定和测序结果表明,载体构建成功。生物信息学分析表明,绵羊c-Myc蛋白主要定位于细胞核,含有螺旋环螺旋(helix-loop-helix,HLH)结构域,其分子量为48 474.78 u。融合蛋白c-Myc-(G4S)3-EGFP有较强的亲水性,且含有31个磷酸化位点。因(G4S)3有较高的灵活度(9.848 5),两侧的c-Myc和EGFP都保持各自的空间构象且互不干扰。进一步的细胞试验结果表明,重组质粒pc-Myc-EGFP在SEF中能够表达。过表达c-Myc促进了SEF的增殖,使cyclin D2、Cdk4、Cdk6、cyclin E1、cyclin A2、cdc25A mRNA的表达水平分别升高至5.20、3.10、6.54、6.52、23.37和8.22倍(P<0.01),E2F1 mRNA的表达升高至1.83倍(P<0.05)。启动子分析结果表明,各基因的5'调控区存在c-Myc和E2F1的结合元件。综上所述,绵羊c-Myc通过上调细胞周期相关基因的表达促进SEF细胞增殖,c-Myc的作用机制可能是通过直接作用于靶基因5'调控区的E-box元件,也可能是通过其他转录因子(如E2F1)的间接调控作用而实现。  相似文献   

17.
旨在探究5-氮杂-2-脱氧胞苷(5-Aza-2’-deoxycytidine,5-Aza-dC)对牛成肌细胞的增殖和肌分化因子(myogenic differentiation 1,MyoD1)启动子甲基化以及mRNA表达的影响。本研究复苏了前期冻存的关岭牛成肌细胞,并进行培养,待其生长到对数生长期,再通过不同浓度的5-Aza-dC对牛成肌细胞进行处理,利用流式细胞仪检测细胞凋亡和周期;结合高通量检测方法检测MyoD1启动子甲基化水平,并利用qRT-PCR检测MyoD1及相关基因的表达水平。研究发现,0.1 μmol·L-15-Aza-dC为最适浓度,该浓度下细胞抗凋亡因子Bcl的表达极显著降低(P<0.01),促凋亡因子Bax的表达极显著提高(P<0.01),促凋亡因子Caspase-9的表达显著提高(P<0.05);周期因子Cyclin A2的表达显著提高(P<0.05),而细胞因子Cyclin B1、Cyclin D的表达无显著变化;检测空白组和试验组MyoD1启动子甲基化水平发现,试验组甲基化水平极显著低于空白组(P<0.01);而mRNA的表达水平极显著高于空白组(P<0.01)。5-Aza-dC能够通过改变Caspase-9、Bcl、Bax、Cyclin A2等基因的表达来调节关岭牛成肌细胞的增殖和凋亡,并能够有效降低MyoD1基因启动子的甲基化水平(P<0.01);极显著提高其mRNA的表达量(P<0.01)。低浓度的5-Aza-dC能通过促进细胞凋亡及调控关岭牛MyoD1的甲基化水平来调控MyoD1的表达;同时推测,MyoD1基因启动子的甲基化水平能够影响关岭牛成肌细胞的生长发育,可为遗传标记辅助关岭牛的改良提供理论参考。  相似文献   

18.
试验旨在探究UBC13蛋白对支气管哮喘小鼠体内Th2、Th17细胞极化的影响。18只BALB/c小鼠随机均分为3组:PBS组、哮喘模型(OVA)组和UBC13蛋白(UBC13)组,OVA组和UBC13组采用卵清蛋白(OVA)和脂多糖(LPS)进行致敏和雾化建立哮喘模型,其中UBC13组于每次雾化前0.5 h腹腔注射100 μg UBC13蛋白。末次雾化激发24 h后处死小鼠,采集样品,通过HE染色观察肺脏切片病理学变化、PAS染色观察气道黏液的分泌,ELISA法检测血清IgE浓度和肺支气管肺泡灌洗液(BALF)上清中IL-4、IL-5和IL-17A的水平,实时荧光定量PCR法检测肺脏Th2型相关因子IL-4、IL-5、IL-13、IFN-γ mRNA和Th17型细胞因子IL-1β、IL-6、IL-17A、IL-23 mRNA的相对表达量。结果显示,试验成功建立了哮喘模型,与PBS组相比,OVA组IgE浓度极显著上升(P < 0.01),肺脏病理切片炎性细胞浸润和中性黏液分泌现象明显,肺脏中IL-1β、IL-4、IL-6、IL-13和IL-17A mRNA相对表达量均极显著升高(P < 0.01),IL-5和IL-23 mRNA相对表达量显著升高(P < 0.05),IFN-γ mRNA相对表达量极显著下降(P < 0.01),BALF中IL-4、IL-5和IL-17A的水平极显著上升(P < 0.01);与OVA组相比,UBC13组IgE浓度显著降低(P < 0.05),病理切片炎性细胞浸润现象减轻、黏液分泌减少,肺脏IL-1β、IL-4、IL-17A、IL-13和IL-23 mRNA相对表达量均显著下降(P < 0.05),IFN-γ mRNA相对表达量显著升高(P<0.05);IL-6 mRNA相对表达量极显著下降(P < 0.01),BALF中IL-5的水平极显著下降(P < 0.01),IL-4的水平显著下降(P < 0.05),IL-17A的水平无显著差异(P > 0.05)。由此可见,UBC13蛋白能下调Th2和Th17型细胞因子的表达量,影响哮喘模型Th2和Th17细胞的极化。  相似文献   

19.
旨在鼠伤寒沙门菌hfq基因缺失株转录组测序中分析适应环境变化及细菌分泌通路,筛选相关基因。通过使用实时荧光定量PCR对鼠伤寒沙门菌hfq基因缺失株转录组测序结果进行验证,从而对鼠伤寒沙门菌hfq基因缺失株的细菌趋化性通路、细菌双组分通路、细菌分泌通路进行深入分析,筛选相关的重要调控基因。结果显示:在细菌趋化性通路中筛选出yiaD、STM3138、STM3216和malE等4个共表达基因;在细菌分泌通路中筛选出spaP、invA、prgH、invE、spaS、invGssaV等7个共表达基因;在细菌双组分通路中筛选出ybfM、htrA、pagO、STM3138、STM3031、ttrB、hilD、pstS、STM1530、hilA、pgtC、hydH、pocR、STM3216、ttrRfljB等16个共表达基因。在鼠伤寒沙门菌hfq基因缺失株的趋化性通路、细菌双组分通路、细菌分泌通路中筛选出差异表达基因,hfq能够对这些基因进行调控,从而影响如运动性、毒力等相关作用,为沙门菌中的sRNA与hfq后续研究及沙门菌的防治奠定一定基础。  相似文献   

20.
乙烯应答因子(ethylene response factor,ERF)是植物特有的一类转录因子,参与植物生长发育和胁迫应答等多个生理生化过程。本研究以拟南芥AP2结构域为探针搜索美国国立生物技术信息中心(NCBI)的苜蓿属蛋白质数据库,运用生物信息学软件分析苜蓿乙烯应答因子的系统进化、疏水轮廓、二级结构、信号肽以及亚细胞定位情况。运用半定量RT-PCR技术研究5个紫花苜蓿乙烯应答因子基因(MsERF1, MsERF2,MsERF6, MsERF7, MsERF9)表达的组织差异性以及多种处理条件下的表达特性。结果表明,5个乙烯应答因子基因在叶中的表达量都明显高于其他组织,不同基因有不同的组织表达特性;NaCl和PEG6000对MsERF2的表达没有影响,但Al2(SO4)3能诱导其表达,其余基因的表达都受这3种处理的诱导;脱落酸对MsERF2的表达没有影响,能够诱导其他基因的表达;生长素只能诱导MsERF6的表达,对其他基因的表达没有影响;赤霉素、茉莉酸甲酯和乙烯利对5个基因的表达都起促进作用。本研究为进一步研究苜蓿乙烯应答因子的结构和功能奠定了基础,同时为研究不同信号传导途径之间的相互作用提供了依据。  相似文献   

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