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1.
本实验探讨同型半胱氨酸(Hcy)对人脐静脉内皮细胞(HUVEC)一氧化氮合酶(eNOS)的损伤机制及叶酸(FA)的拮抗效应。HUVEC原代培养,传至第3代后,将其与不同浓度Hcv(10μmol/L、30μmol/L、100μmol/L和300μmol/L)、FA(100μmol/L)或两者联合共同培养72h,用RT-PCR和免疫组织化学技术分别估测细胞eNOS mRNA水平及eNOS蛋白质量;高效液相色谱测定细胞内不对称二甲基精氨酸(ADMA)含量;并分别测定二甲基精氨酸二甲胺水解酶(DDAH)、eNOS活性及一氧化氮(NO)含量。HUVEC与不同浓度Hcy培养72h后,eNOS mRNA和蛋白质表达皆受到抑制;eNOS活性降低;NO生成减少。同时,DDAH活性降低;细胞内ADMA含量呈剂量依赖性增加。加入FA后,eNOS蛋白质水平上调;eNOS活性增强;NO生成增多。同时,DDAH活性增强,ADMA蓄积减少;但eNOS mRNA表达没有改变。Hcy对内皮细胞eNOS的损伤机制涉及eNOS酶蛋白和eNOS的基因表达两个层面,其对eNOS酶蛋白的抑制机制可能通过DDAH-ADMA通路,FA可拮抗Hcy对eNOS酶蛋白的抑制作用,显示出对HHcy有一定的保护作用。但FA对HHcy所导致的eNOS基因表达的抑制无保护效应。  相似文献   

2.
探讨Kruppel样因子4(KLF4)对内毒素所致白介素(IL-6)的基因表达以及释放的影响,并对其调控机制做了初步研究.使用RT-PCR和Western blot检测KLF4 mRNA和蛋白质的表达.采用KLF4过表达的RAW264.7巨噬细胞株或反义寡核苷酸技术抑制内源性KLF4的表达,用RT-PCR和ELISA检测内毒素(LPS)刺激后IL-6 mRNA和蛋白质的表达.采用荧光素酶报告基因检测RAW264.7细胞中KLF4过表达对IL-6基因启动子报告基因转录活性的影响.使用EMSA法检测细胞中KLF4与IL-6基因启动子区KLF4元件的结合.结果表明:LPS可以诱导RAW264.7巨噬细胞KLF4的表达以及IL-6蛋白表达.KLF4过表达明显抑制IL-6的mRNA和蛋白质的表达,而KLF4缺失使这种作用消失.荧光素酶报告基因的结果显示,KLF4可以抑制LPS所致的IL-6基因启动子的转录活性.EMSA显示KLF4不能与IL-6启动子区的KLF4结合元件直接结合.结果表明,LPS可以促进RAW264.7小鼠巨噬细胞KLF4的表达和IL-6的释放.KLF4能抑制LPS诱导的IL-6表达和释放,其机制是抑制IL-6启动子的转录活性,但KLF4的抑制作用不是通过直接与IL-6基因的启动子区相结合而实现的.  相似文献   

3.
Ⅱ型启动子转录的外源短链RNA可以竞争性抑制细胞内源mRNA的核质转运,因而可能会提高植物RNA 病毒载体表达的外源基因在植物中的积累. 为了验证这一假说,利用OE-PCR技术合成拟南芥U6-1核内小RNA序列,并构建其Ⅱ型启动子转录的植物表达载体. 以农杆菌渗滤技术,与烟草花叶病毒(Tobacco mosaic virus, TMV)表达载体共接种寄主植物本氏烟,通过对报告基因绿色荧光蛋白(green fluorescence protein, GFP)的荧光观察,并以Western印迹和ELISA测定GFP在烟草中的表达情况,分析共表达Ⅱ型启动子转录的U6 RNA对外源基因在植物中表达的作用效果. 结果表明,共接种Ⅱ型启动子转录的U6 RNA对TMV病毒表达载体表达外源基因的水平有明显的增效作用,推测RNA核质转运干扰是提高外源基因表达的可能机制.  相似文献   

4.
前期工作表明,内皮型一氧化氮合酶(endothelial nitric oxide synthase,eNOS)第4内含子中的27碱基 (nucleotide,nt)重复序列是27-nt microRNA的来源,并对eNOS具有重要的调节作用.为进一步探讨该内含子源性27-nt microRNA参与调节eNOS表达的分子机制及其在内皮细胞增殖中的可能作用,通过构建27-nt microRNA高表达质粒,用脂质体将该质粒转染人脐静脉内皮细胞(human umbilical vein endothelial cells,HUVEC),Western blot和RT-PCR检测该细胞系中eNOS蛋白和mRNA表达情况以及胞核转录因子的表达改变,并观察HUVEC增殖的变化情况.结果发现:27-nt microRNA 高表达能降低eNOSmRNA的水平和蛋白质表达;同时对转录因子Sp1、Ap1的蛋白质表达也产生了不同程度的抑制作用;转染后细胞的生长速度比未转染的细胞明显减慢,尤其转染了27-nt microRNA的双倍长度突变体(pEGP-mut-54nt-mi)质粒的HUVEC,其生长倍增时间比正常对照组明显延长达49.4%.结果表明,27-nt microRNA明显抑制eNOS蛋白及其mRNA表达,同时 HUVEC增殖受到明显抑制,转录因子Sp1 和Ap1 在27-nt microRNA对eNOS的表达调节中起重要作用.实验提示,内含子源性microRNA与转录因子共同参与对内皮细胞增殖及其相关性基因的表达调节,可能是众多真核细胞中某些疾病相关性基因表达自我调节的重要机制之一.  相似文献   

5.
Liu Q  Li H  Chen HH  Wang J 《遗传》2012,34(5):573-583
为了观察热量限制对主动脉内皮细胞中HNF3γ及NOX4基因表达的影响, 揭示HNF3γ-NOX4-活性氧通路介导热量限制抗内皮细胞衰老的分子机制, 文章将主动脉内皮细胞分为5组:对照组、高热量组、低热量组、siRNA+低热量组、siRNA+高热量组。应用逆转录实时定量PCR(Real-time quantitative PCR, RT-qPCR)、Western blotting分析各组HNF3γ、NOX4 mRNA及蛋白水平变化, 并检测各组细胞内活性氧产量及细胞衰老程度变化。采用染色质免疫共沉淀分析HNF3γ蛋白与NOX4基因启动子区域结合情况, 萤光素酶报告基因检测HNF3γ蛋白结合后对NOX4基因启动子活性的影响。结果显示:与对照组比较, 低热量组HNF3γ mRNA和总HNF3γ蛋白表达水平、磷酸化/总HNF3γ比值显著升高(P<0.05), NOX4 mRNA和蛋白表达水平、细胞内活性氧产量及细胞衰老程度显著降低(P<0.05); 高热量组HNF3γ mRNA和总HNF3γ蛋白表达水平、磷酸化/总HNF3γ比值显著降低(P<0.05), NOX4 mRNA和蛋白表达水平、细胞内活性氧产量及细胞衰老程度显著升高(P<0.05); siRNA+低热量组及siRNA+高热量组中NOX4 mRNA和蛋白表达水平、细胞内活性氧水平及细胞衰老程度显著升高(P< 0.05)。染色质免疫共沉淀证实HNF3γ蛋白可与NOX4基因启动区域4个结合位点(-6 bp、-76 bp、-249 bp、-954 bp)结合。萤光素酶报告基因检测显示HNF3γ蛋白与NOX4启动子区域1个位点(-6 bp)、2个位点(-6、-76 bp)、3个位点(-6、-76、-249 bp)、4个位点(-6、-76、-249、-954 bp)结合, 可使NOX4启动子活性分别降低至对照组的80.15±4.64%、40.02.±2.15%、16.46±2.24%、12.13±1.46%, P<0.05。上述结果提示热量限制可上调HNF3γ基因表达, 增强HNF3γ蛋白活性, 促进HNF3γ蛋白同NOX4基因启动子区域结合, 抑制NOX4基因表达, 进而减少细胞内活性氧产生而延缓动脉内皮细胞衰老。  相似文献   

6.
鸡Apo-AI基因g.-163 A>T单核苷酸多态性(SNP)与鸡腹脂重和腹脂率显著相关. 生物信息分析显示,该SNP位于鸡Apo AI基因转录起始位点,提示它可能是一个功能性SNP. 为确定该SNP的功能性, 本研究分别构建了含该SNP位点A和T等位基因的启动子报告基因载体,分别在DF1细胞和HepG2细胞中比较这2个等位基因对鸡Apo AI基因启动子活性的影响. 研究发现,T等位基因的启动子报告基因活性及报告基因mRNA表达水平均显著高于A等位基因(P<0.05),表明该SNP影响基因表达,是1个功能性SNP. 本研究结果提示,鸡Apo-AI基因g.-163 A>T有望作为优质鸡育种的功能性分子标记.  相似文献   

7.
目的 研究精胺对Azin1基因敲除小鼠体内Atp8a1基因表达的影响,并对其作用机理进行初步的探讨.方法 利用Real-time PCR检测正常小鼠和Azin1基因敲除小鼠体内Atp8a1基因的在mRNA水平上的差异表达情况;构建Atp8a1基因的启动子虫荧光素酶报告质粒;将启动子重组质粒转染NTH3T3细胞后,在细胞培养液中加入精胺,检测精胺对启动子活性的影响.结果 Atp8a1基因在Azin1基因敲除小鼠体内的表达量明显增加;精胺能够增强Atp8a1的启动子活性.结论 精胺能够通过增强Atp8a1的启动子活性而增强其在Ain1基因敲除小鼠体内转录水平的表达.  相似文献   

8.
Ye H  Bi HR  Lü CL  Tang XB  Zhu DL 《生理学报》2005,57(5):612-618
15-羟二十碳四烯酸(15-hydroxyeicosatetraenoic acid,15-HETE)在低氧性肺血管收缩中起着重要作用,低氧肺动脉高压下调内皮型。氧化氮合酶(endothelial nitric oxide synthase,eNOS),使一氧化氮(nitric oxide,NO)的产量下降,但目前尚无关于15-HETE与eNOS/NO相互作用研究的报道。我们通过Wistar大鼠肺动脉环张力、牛肺动脉内皮细胞NO产量、总eNOS表达及eNOS磷酸化测定等方法对15-HETE与eNOS/NO的相互作用进行研究。首先分离人鼠肺动脉,分为eNOS抑制剂L-NAME组(0.1mmol/L)、去缸管内皮组与内皮完整组,用15-HETE作用夫鼠离体肺动脉环,测定肺动脉张力。结果表明,L-NAME组、去除内皮组与内皮完整组分别比较,15-HETE对血管的收缩作用增强,且都有统计学意义(P〈0.05)。培养牛肺动脉内皮细胞,分别用15-HETE、15-脂氧酶(15-lipoxygenase,15-LO)抑制剂[(cinnamyl 3,4-dihydroxy-[alpha]-cyanocinnamate,CDC)和(nordihydroguiairetic acid,YDGA)]处理细胞,通过Greiss方法检测亚硝酸盐含量,间接测定NO产量,与对照组比较,1μmol/L 15-HETE明显降低肺动脉内皮细胞NO水平(P〈0.05),10μmol/L CDC和0.1mmol/L NDGA显著增加NO水平(分别是P〈0.05,P〈0.01);通过Western blot检测不同时间(5,10,15,20,30,60min)eNOS的表达情况,结果显示,15-HETE的不同作用时间,没有引起eNOS表达的明显不同;用苏氨酸495位点磷酸化eNOS(Thr495)抗体进行免疫沉淀,再用总eNOS抗体和15-LO抗体通过Western blot检测磷酸化型含量,问接测定eNOS活性,结果表明15-HETE增强Thr495磷酸化型eNOS含量。由于Thr495为eNOS抑制性磷酸化位点,因此15-HETE降低eNOS活性。这些数据表明:15-HETE的缩血管作用有eNOS/NO参与,15-HETE可以通过磷酸化Thr495位点降低eNOS活性,并且首次发现磷酸化eNOS(Thr495)和15-LO之间存在蛋白质相互作用。  相似文献   

9.
目的:对比研究波动性高浓度胰岛素与恒定性高浓度胰岛素对体外培养的人脐静脉内皮细胞eNOS mRNA转录水平的影响,从而探究波动性高浓度胰岛素血症在糖尿病动脉粥样硬化形成中的致病机制.方法:采用体外培养的人脐静脉内皮细胞为对象,研究波动性高胰岛素对血管内皮细胞eNOS mRNA转录水平的影响.实验分为4组,即对照组(不含胰岛素)、正常浓度胰岛素组(含胰岛素1 nmol/L)、恒定性高胰岛素组(含胰岛素100 nmol/L)与波动性高胰岛素组(含胰岛素1 nmol/L及含胰岛素100nmol/L两种条件培养液,每8小时轮换一次),每间隔8小时更换新鲜条件培养液一次,一共作用72小时.应用应用逆转录聚合酶链反应(RT-PCR)检测内皮细胞eNOS基因mRNA转录水平.结果:经不同浓度的胰岛素作用72小时后,正常浓度组、恒定性高胰岛素组与波动性高胰岛素组内皮细胞eNOS mRNA转录水平均不同程度上调,分别为对照组的2.25倍(p<0.001)、6.00倍(p<0.001)和6.88倍(p<0.001),其中以波动性高胰岛素组上调尤为明显,且明显高于恒定性高胰岛素组(p<0.05).结论:波动性高胰岛素相对于恒定性高胰岛素能增强人脐静脉内皮细胞eNOS mRNA的转录.  相似文献   

10.
该文采用Western blot技术检测人食管癌EC109细胞、鼻咽癌CNE2细胞和宫颈癌HeLa细胞Ezrin蛋白的表达:采用DNA片段定向克隆技术构建一系列携带ezrin基因增强子区-1541/-706序列的报告基因表达载体,将载体瞬时转染EC109、CNE2和HeLa细胞,检测荧光素酶活性;研究肿瘤细胞中ezrin基因增强子区的转录调控特性。实验结果显示,在被检测的三种肿瘤细胞中,Ezfin蛋白的表达水平没有明显不同。Ec109细胞中,当ezrin基因-1541/-706N段正向位于无启动子的报告基因上游时,表现出类似启动子的转录激活作用:当这一片段反向连接时转录激活作用几乎消失。当-1541/-706片段正向位于ezrin启动子或SV40启动子上游时,显著增强荧光素酶表达;然而,当这一片段反向位于启动子上游以及正向或反向位于启动子控制的报告基因下游时,转录增强作用消失。ezrin基因-1541/-706N段在CNE2和HeLa细胞中的转录调控作用,与其在EC109细胞中的转录调控作用部分相似,但不完全相同。结果表明,ezrin基因增强子区具有转录激活和转录增强双重作用,这种作用具有DNA序列位置和方向依赖性以及细胞特异性。  相似文献   

11.
Persistent pulmonary hypertension of the newborn (PPHN) is characterized by endothelial dysfunction and decreased vascular growth. The role of Rho kinase activity in modulating endothelial function and regulating angiogenesis during normal lung development and in PPHN is unknown. We hypothesized that PPHN increases Rho kinase activity in fetal pulmonary artery endothelial cells (PAECs) and impairs angiogenesis in vitro. Proximal PAECs were harvested from fetal sheep with partial ligation of the ductus arteriosus in utero (PPHN) and age-matched controls. Rho kinase activity was measured by RhoA, Rho GTP, and phosphorylated MYPT-1 protein content. The effects of Rho kinase activity on angiogenesis, endothelial nitric oxide (NO) synthase (eNOS) protein expression, and NO production were determined in normal and PPHN PAECs. Angiogenesis was assessed by tube formation in vitro with/without Y-27632 (a Rho kinase inhibitor) and calpeptin (a Rho kinase activator) in the presence/absence of N-nitro-l-arginine (l-NA, an NOS inhibitor). RhoA, Rho GTP, and phosphorylated MYPT-1 protein were increased in PPHN PAECs. Tube formation was reduced 29% in PPHN PAECs (P < 0.001) and increased with Y-27632 treatment in normal and PPHN PAECs, with PPHN PAECs achieving levels similar to those of normal PAECs. l-NA inhibited the Y-27632-induced increase in tube formation in normal, but not PPHN, PAECs. Calpeptin reduced tube formation in normal and PPHN PAECs. eNOS expression was reduced 42% in PPHN PAECs (P < 0.01). Y-27632 increased eNOS protein and NO production in normal and PPHN PAECs. Calpeptin decreased eNOS protein only in normal PAECs but reduced NO production in normal and PPHN PAECs. We conclude that Rho kinase activity is increased in PPHN PAECs and impairs angiogenesis and downregulates eNOS protein and NO production in vitro.  相似文献   

12.

Rationale

There is evidence that impairments in nitric oxide (NO) signaling contribute to chronic hypoxia-induced pulmonary hypertension. The L-arginine-NO precursor, L-citrulline, has been shown to ameliorate pulmonary hypertension. Sodium-coupled neutral amino acid transporters (SNATs) are involved in the transport of L-citrulline into pulmonary arterial endothelial cells (PAECs). The functional link between the SNATs, L-citrulline, and NO signaling has not yet been explored.

Objective

We tested the hypothesis that changes in SNAT1 expression and transport function regulate NO production by modulating eNOS coupling in newborn piglet PAECs.

Methods and Results

A silencing RNA (siRNA) technique was used to assess the contribution of SNAT1 to NO production and eNOS coupling (eNOS dimer-to-monomer ratios) in PAECs from newborn piglets cultured under normoxic and hypoxic conditions in the presence and absence of L-citrulline. SNAT1 siRNA reduced basal NO production in normoxic PAECs and prevented L-citrulline-induced elevations in NO production in both normoxic and hypoxic PAECs. SNAT1 siRNA reduced basal eNOS dimer-to-monomer ratios in normoxic PAECs and prevented L-citrulline-induced increases in eNOS dimer-to-monomer ratios in hypoxic PAECs.

Conclusions

SNAT1 mediated L-citrulline transport modulates eNOS coupling and thus regulates NO production in hypoxic PAECs from newborn piglets. Strategies that increase SNAT1-mediated transport and supply of L-citrulline may serve as novel therapeutic approaches to enhance NO production in patients with pulmonary vascular disease.  相似文献   

13.
Intrauterine growth restriction (IUGR) increases the risk for bronchopulmonary dysplasia (BPD). Abnormal lung structure has been noted in animal models of IUGR, but whether IUGR adversely impacts fetal pulmonary vascular development and pulmonary artery endothelial cell (PAEC) function is unknown. We hypothesized that IUGR would decrease fetal pulmonary alveolarization, vascular growth, and in vitro PAEC function. Studies were performed in an established model of severe placental insufficiency and IUGR induced by exposing pregnant sheep to elevated temperatures. Alveolarization, quantified by radial alveolar counts, was decreased 20% (P < 0.005) in IUGR fetuses. Pulmonary vessel density was decreased 44% (P < 0.01) in IUGR fetuses. In vitro, insulin increased control PAEC migration, tube formation, and nitric oxide (NO) production. This response was absent in IUGR PAECs. VEGFA stimulated tube formation, and NO production also was absent. In control PAECs, insulin increased cell growth by 68% (P < 0.0001). Cell growth was reduced in IUGR PAECs by 29% at baseline (P < 0.01), and the response to insulin was attenuated (P < 0.005). Despite increased basal and insulin-stimulated Akt phosphorylation in IUGR PAECs, endothelial NO synthase (eNOS) protein expression as well as basal and insulin-stimulated eNOS phosphorylation were decreased in IUGR PAECs. Both VEGFA and VEGFR2 also were decreased in IUGR PAECs. We conclude that fetuses with IUGR are characterized by decreased alveolar and vascular growth and PAEC dysfunction in vitro. This may contribute to the increased risk for adverse respiratory outcomes and BPD in infants with IUGR.  相似文献   

14.
Previously, we have shown that pulmonary arterial endothelial cells (PAECs) isolated from fetal lambs produce significant levels of nitric oxide (NO) but minimal superoxide upon stimulation, whereas PAECs isolated from 4-wk-old lambs produce significant amounts of both NO and superoxide. These data indicated that a certain degree of uncoupling of endothelial NO synthase (eNOS) occurs in PAECs during postnatal development. In this study, we sought to extend these studies by investigating the potential role of heat shock protein 90 (HSP90) in eNOS coupling. Western blot analyses revealed higher HSP90 expression in PAECs isolated from fetal compared with 4-wk-old lambs, whereas the analysis of recombinant human eNOS activation in vitro in the presence of HSP90 indicated that HSP90 significantly augmented NO production while inhibiting superoxide generation from eNOS. To further investigate whether HSP90 could be involved in uncoupling of eNOS in PAECs isolated from 4-wk-old lambs, we utilized an adenovirus to overexpress HSP90. We found that overexpression of HSP90 significantly increased the shear-stimulated association of HSP90 with eNOS and led to significant increases in NO production and reduced NOS-dependent superoxide generation. Conversely, the exposure of PAECs isolated from fetal lambs to the HSP90 inhibitor radicicol led to significant decreases in eNOS-HSP90 interactions, decreased shear-stimulated NO generation, and increased NOS-dependent superoxide production indicative of eNOS uncoupling. Finally, we examined eNOS-HSP90 interactions in our lamb model of pulmonary hypertension associated with increased pulmonary blood flow (shunt). Our data indicate that HSP90-eNOS interactions were decreased in shunt lambs and that this was associated with decreased NO generation and an increase in eNOS-dependent generation of superoxide. Together, our data support a significant role for HSP90 in promoting NO generation and inhibiting superoxide generation by eNOS and indicate that the disruption of this interaction may be involved in the endothelial dysfunction associated with pulmonary hypertension.  相似文献   

15.
一氧化氮抑制AngⅡ介导的心肌肥大反应的信号机制   总被引:12,自引:0,他引:12  
Liu PQ  Lu W  Pan JY 《生理学报》2002,54(3):213-218
本文主要利用培养的新生大鼠心肌细胞,从细胞学及分子生物学角度研究一氧化氮(NO)信号系统在AngⅡ介导的心肌肥大反应中的作用及机制。实验以心肌细胞蛋白合成速率、心房钠尿肽(ANP)的表达作为心肌肥大反应的指标,以硝酸盐及亚硝酸盐含量反映心肌细胞NO水平,以免疫印迹法测定MKP-1蛋白表达,以RT-PCR测定eNOS mRNA水平。结果发现:(1)L-精氨酸(L-Arg)10,100μmol/L分别增加心肌细胞NO水平16%及31%,L-Arg(100μmol/L)还可增加心肌细胞eNOS mRNA表达,其作用可被NOS抑制剂L-NAME所抑制;(2)L-Arg(100μmol/L)可降低AngⅡ(0.1μmol/L)诱导的心肌细胞ANP mRNA表达水平和蛋白合成速率,而在L-Arg处理之前用针对MKP-1的反义寡核苷酸转染心肌细胞,蛋白合成速率明显增加,可取消L-Arg的抑制作用,甚至超过AngⅡ组;(3)L-Arg(100μmol/L)明显增加MKP-1蛋白表达,比对照组增加225%,NOS抑制剂L-NAME及蛋白激酶G(PKG)抑制剂KT-5823皆可抑制L-Arg诱导的MKP-1蛋白表达,分别抑制88%、83%,而AngⅡ能增加L-Arg诱导的MKP-1的表达,较对照组增加365%,增强了L-Arg的作用。以上结果表明,NO抑制AngⅡ介导心肌肥大反应的机制可能是通过激活PKG,促进MKP-1的表达,从而增加MAPK去磷酸化实现的。  相似文献   

16.
Nitric oxide (NO) is synthesized from l-arginine by the Ca(2+)/calmodulin-sensitive endothelial NO synthase (NOS) isoform (eNOS). The present study assesses the role of Ca(2+)/calmodulin-dependent protein kinase II (CaMK II) in endothelium-dependent relaxation and NO synthesis. The effects of three CaMK II inhibitors were investigated in endothelium-intact aortic rings of normotensive rats. NO synthesis was assessed by a NO sensor and chemiluminescence in culture medium of cultured porcine aortic endothelial cells stimulated with the Ca(2+) ionophore A23187 and thapsigargin. Rat aortic endothelial NOS activity was measured by the conversion of l-[(3)H]arginine to l-[(3)H]citrulline. Three CaMK II inhibitors, polypeptide 281-302, KN-93, and lavendustin C, attenuated the endothelium-dependent relaxation of endothelium-intact rat aortic rings in response to acetylcholine, A23187, and thapsigargin. None of the CaMK II inhibitors affected the relaxation induced by NO donors. In a porcine aortic endothelial cell line, KN-93 decreased NO synthesis and caused a rightward shift of the concentration-response curves to A23187 and thapsigargin. In rat aortic endothelial cells, KN-93 significantly decreased bradykinin-induced eNOS activity. These results suggest that CaMK II was involved in NO synthesis as a result of Ca(2+)-dependent activation of eNOS.  相似文献   

17.
尾加压素对新生大鼠心肌细胞一氧化氮合成的影响   总被引:6,自引:0,他引:6  
Li L  Yuan WJ  Pan XJ  Wang WZ  Qiu JW  Tang CS 《生理学报》2002,54(4):307-310
应用半定量逆转录-多聚酶链反应法,观察尾加压素(urotensin Ⅱ,UⅡ)对培养的新生SD大鼠心肌细胞内皮型一氧化氮合酶(endothelial nitric oxide synthase,eNOS)mRNA表达的影响,并测定UⅡ对心肌细胞内一氧化氮合酶(nitric oxide synthase,NOS)活性和一氧化氮(nitric oxide,NO)释放的影响。结果显示:UⅡ抑制培养的新生大鼠心肌细胞eNOS mRNA表达、抑制NOS的活性及NO释放;0.1μmol/L浓度的UⅡ呈时间依赖性抑制心肌细胞NOS的活性及NO生成。上述实验结果提示UⅡ的心血管作用可能与NO合成系统有关。  相似文献   

18.
19.
Nitric oxide (NO), produced by endothelial (e) nitric oxide synthase (NOS), is a critical mediator of vascular function and growth in the developing lung. Pulmonary eNOS expression is diminished in conditions associated with altered pulmonary vascular development, suggesting that eNOS may be modulated by changes in pulmonary artery endothelial cell (PAEC) growth. We determined the effects of cell growth on eNOS expression in cultured ovine fetal PAEC studied at varying levels of confluence. NOS enzymatic activity was sixfold greater in quiescent PAEC at 100% confluence compared with more rapidly replicating cells at 50% confluence. To determine if there is a reciprocal effect of NO on PAEC growth, studies of NOS inhibition or the provision of exogenous NO from spermine NONOate were performed. Neither intervention had a discernable effect on PAEC growth. The influence of cell growth on NOS activity was unique to pulmonary endothelium, because varying confluence did not alter NOS activity in fetal systemic endothelial cells. The effects of cell growth induced by serum stimulation were also evaluated, and NOS enzymatic activity was threefold greater in quiescent, serum-deprived cells compared with that in serum-stimulated cells. The increase in NOS activity observed at full confluence was accompanied by parallel increases in eNOS protein and mRNA expression. These findings indicate that eNOS gene expression in fetal PAEC is upregulated during cell quiescence and downregulated during rapid cell growth. Furthermore, the interaction between cell growth and NO in the PAEC is unidirectional.  相似文献   

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