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1.
p38 MAPK参与LPS诱导RAW细胞TNF—α基因表达的调控   总被引:3,自引:0,他引:3  
构建TNF-α启动子驱动的荧光酶报告基因系统,研究p38MAPK信号转导系统对TNF-α基因表达的影响,RAW264.7细胞共转染实验发现,LPS对p38的激活作用与其诱导TNF-α转录活性的作用显著相关,虽然单纯转染p38未见明显诱导TNF-α报告基因系统的转录活性。  相似文献   

2.
探讨p38蛋白激酶信号传导通路在细胞中的特异性作用机制。应用共聚焦激光扫描技术观察心肌细胞中p38蛋白激酶的分布及LPS对其分布的影响。结果提示未受刺激静止的及EGF刺激的心肌细胞中,p38在胞浆和胞核中荧光强度呈散性分布。LPS刺激30分钟后,细胞核区的荧光强度明显增强,而胞浆区域的荧光强度降低,心肌细胞受LPS刺激激活后,其p38蛋白激酶由胞浆转位到胞核。  相似文献   

3.
肺纤维化(Pulmonary fibrosis,PF)是一种进行性发展的、破坏性的纤维化疾病,其主要特征为肺泡上皮细胞损伤、炎性细胞浸润、上皮间充质转变、成纤维细胞的异常增殖和活化、细胞外基质的过度沉积,最终导致肺实质性的破坏。其具体机制不明,目前缺乏有效的治疗手段逆转这种疾病或阻止其发展。近年来的研究发现,信号传导通路在肺纤维化形成过程中的作用越来越受到关注,其中p38丝裂原活化蛋白激酶(p38mitogen-activated protein kinase,p38MAPK)信号通路通过介导炎性细胞浸润、成纤维细胞增殖等参与PF的形成过程。本文就p38MAPK在PF形成过程中的作用作一综述。  相似文献   

4.
由牛副流感病毒3型(Bovine parainfluenza virus type 3,Bpiv3)感染引起的牛副流感病已成为各国牛场最重要的传染病之一,每年都会给世界养牛业造成巨大的经济损失,但关于该病致病的分子机制研究较少。本研究通过观察Bpiv3感染对MDBK细胞中丝裂原活化蛋白激酶(MKK3)及其下游分子p38丝裂酶原活化的蛋白激酶(p38MAPK)的表达的影响,探讨相关的信号转导机制,对p38 MAPK通路在Bpiv3感染过程中的作用进行了初步研究。Bpiv3感染细胞后,采用Western Blot检测MKK3,p38 MAPK在蛋白水平的表达变化,并采用ELISA法检测细胞上清中IL-6,IL-8,IL-13和TNF-α的水平变化,采用SPSS 12软件进行统计学分析。结果表明,Bpiv3在感染后能够诱导MKK3的激活以及p38的磷酸化,激活了p38 MAPK信号通路。而且p38 MAPK信号通路参与了Bpiv3的复制过程。ELISA检测Bpiv3感染后以及使用抑制剂SB202190处理后的细胞上清中IL-6、IL-8、IL-13和TNF-α的水平发现,p38 MAPK信号通路参与了Bpiv3诱导的炎症反应。研究证实Bpiv3感染能够激活p38 MAPK通路,显著上调MKK3的表达并诱导p38发生磷酸化,进一步激活下游分子发挥生物学活性,促进Bpiv3的复制及诱导促炎细胞因子的产生。p38 MAPK信号通路的激活可能是Bpiv3感染诱发炎症反应的机制之一。  相似文献   

5.
肠道病毒-A71型(EV-A71)重症感染患儿多表现为过激的炎症反应,病毒感染引起的细胞焦亡可能是机体炎症发生的重要原因之一。本文旨在探究姜黄素对EV-A71病毒感染引起的细胞焦亡与细胞损伤的保护作用及可能的机制。首先,观察了姜黄素对EV-A71引起的细胞毒性的影响。CCK8检测结果显示,EV-A71感染降低细胞的增殖活力;LDH测定表明,病毒增加细胞培养上清中LDH的释放,造成了细胞的损伤;DAPI核染色及Dil细胞膜染色后观察到,EV-A71感染引起了细胞的形态变化和数量减少。姜黄素可以逆转病毒引起的上述变化,提示姜黄素对病毒感染的细胞毒性具有保护作用。细胞焦亡发生时,可促进炎症因子IL-1β的成熟、产生和释放。我们观察了EV-A71及姜黄素干预对细胞IL-1β产生的影响。Western印迹结果显示,病毒感染细胞内IL-1β的活化增加。ELISA检测结果显示,EV-A71病毒感染引起细胞上清中IL-1β的分泌水平增加;qPCR测定结果显示,EV-A71病毒感染细胞中IL-1β的转录水平上调;而姜黄素干预可抑制染毒细胞IL-1β的活化和分泌。Western印迹检测细胞内焦亡相关分子的...  相似文献   

6.
LPS介导细胞激活的信号转导:从CD14到p38MAPK通路的研究   总被引:27,自引:0,他引:27  
近年来对脂多糖(LPS)介导细胞激活的信号转导过程已取得实质性进展,LPS与血浆LPS结合蛋白(LBP)结合被运输到单核巨噬细胞表面,与mCD14受体结合起起细胞激活。MAPK参与了LPS激活细胞产生肿瘤坏死因子(TNF)等活性物质的细胞内信号转导过程。p38MAPK对TNF-α等细胞因子具有重要的调节作用。对LPS激活细胞的信号转导研究呆能为治疗内毒素休克提供新的理论和思路。  相似文献   

7.
目的:观察脑内远位触液神经元内p-p38丝裂原活化蛋白激酶(MAPK)的分布及其在噪声应激时的表达。方法:用霍乱毒素亚单位B与辣根过氧化物酶复合物(CB-HRP)标记和免疫组织化学相结合的双重标记技术.观察SD大鼠脑实质内远位触液神经元中p-p38MAPK的分布:进一步制作噪声应激动物模型,观察噪声应激后该类神经元中p-p38MAPK的表达变化。结果:在脑干的特定部位恒定出现被CB-HRP标记的两组神经细胞簇,其他脑区未见CB-HRP标记神经细胞簇。不予应激刺激,该细胞簇内仅有个别神经元见有CB-HRP/p—p38MAPK;噪声应激刺激1d时,上述特定部位细胞簇的CB-HRP/p-p38MAPK双重标记神经元数目没有明显变化;噪音应激刺激5d时,CB-HRP/p—p38MAPK双重标记神经元数目较对照组显著增多(P〈0.05);噪音应激刺激10d时CB-HRP/p—p38MAPK双重标记神经元数目较对照组显著增多(P〈0.05);噪音应激刺激20d时,CB-HRP/p—p38MAPK双重标记神经元数目较对照组显著增多(P〈0.01):结论:在脑干特定部位恒定存在的两组被CBHRP标记的细胞团为远位触液神经元,其中少数触液神经元有p-p38MAPK表达,且当给予动物噪声应激刺激时,p-p38MAPK免疫阳性神经元和CB-HRP/p—p38MAPK双重标记神经元数量显著增加,提示脑实质内的这种远位触液神经元中的P—p38MAPK可能参与了机体对噪声应激的信息传递或调控,其作用随应激天数增加而日趋增强.  相似文献   

8.
应用免疫荧光标记、基因转染等方法,观察脂多糖(LPS)刺激对单核细胞系Raw264.7细胞骨架的影响,探讨p38家族不同亚型对LPS诱导的细胞骨架蛋白微管蛋白与肌动蛋白变化的调控作用结果显示,未受LPS刺激的细胞富含微管蛋白,微管蛋白交联形成辐射状的交联丝网,丝网在细胞中分布均匀;LPS刺激后,微管蛋白募集在细胞膜、核膜周围;p38α、p38β、p38γ亚型的特异性抑制剂FHPI对LPS诱导的微管蛋白募集无影响,而p38无活性突变体p38δ(AF)的基因转染,可抑制LPS诱导的细胞骨架微管蛋白的募集;肌动蛋白在静息的细胞内主要存在于细胞膜周围,LPS作用后,肌动蛋白在细胞中形成广泛分布的辐射状应激纤维;p38上游激酶活性诱变体MKK6b基因转染可诱导Raw细胞形成类似的应激纤维,而p38γ(AF)的基因转染,可抑制LPS诱导的细胞应激纤维的形成.上述结果表明,p38δ可能参与了LPS诱导的微管蛋白的重构;而LPS诱导Raw细胞应激纤维的形成,可能是通过p38γ蛋白激酶而发挥作用.  相似文献   

9.
目的:研究慢性间歇低氧对幼鼠部分脑区p38MAPK的影响。方法:SPF级健康雄性SD幼鼠(3-4周龄)50只,随机分为5组(n=10):间歇低氧2周组(2IH组)、间歇低氧4周组(4IH组)、间歇低氧4周后恢复组(4F组)、对照2周组(2C组)和对照4周组(4C组)。建立慢性间歇低氧幼鼠模型,以RT-PCR法和Westemblot法分别测幼鼠海马及前额叶皮层p38MAPKmRNA和磷酸化p38MAPK(p-p38)蛋白的表达。结果:21H、4IH和4F组幼鼠海马、前额叶皮层的p38MAPK mRNA及p-p38蛋白均明显高于相应对照组(P均〈0.05)。结论:慢性间歇低氧可激活幼鼠部分脑区D38MAPK。  相似文献   

10.
为研究HSP27的磷酸化与其细胞内定位之间的关系,利用定点突变和DNA重组技术构建EGFP融合的HSP27野生型和第82位丝氨酸突变体的真核表达载体并转染NIH 3T3细胞,观察两者在静息状态和亚砷酸盐刺激下的细胞内定位情况.利用p38 MAPK特异性抑制剂SB203580预处理细胞后,观察对HSP27磷酸化和细胞内定位的影响.结果发现,野生型HSP27受到NaAsO2刺激后移位入核,而其突变体HSP27(S82A)不能入核.同时,SB203580的预处理使HSP27的磷酸化和NaAsO2诱导的移位入核都被阻断.这些结果表明,p38介导的HSP27磷酸化在其细胞内定位中具有重要作用  相似文献   

11.
Disruption of the actin cytoskeleton in subconfluent mesenchymal cells induces chondrogenic differentiation via protein kinase C (PKC) alpha signaling. In this study, we investigated the role of p38 mitogen-activated protein (MAP) kinase in the chondrogenic differentiation of mesenchymal cells that is induced by depolymerization of the actin cytoskeleton. Treatment of mesenchymal cells derived from chick embryonic limb buds with cytochalasin D (CD) disrupted the actin cytoskeleton with concomitant chondrogenic differentiation. The chondrogenesis was accompanied by an increase in p38 MAP kinase activity and inhibition of p38 MAP kinase with SB203580 blocked chondrogenesis. Together these results suggest an essential role for p38 MAP kinase in chondrogenesis. In addition, inhibition of p38 MAP kinase did not alter CD-induced increased expression and activity of PKC alpha, whereas down-regulation of PKC by prolonged exposure of cells to phorbol ester inhibited CD-induced p38 MAP kinase activation. Our results therefore suggest that PKC is involved in the regulation of chondrogenesis induced by disruption of the actin cytoskeleton via a p38 MAP kinase signaling pathway.  相似文献   

12.
13.
The majority of bones comprising the adult vertebrate skeleton are generated from hyaline cartilage templates that form during embryonic development. A process known as endochondral ossification is responsible for the conversion of these transient cartilage anlagen into mature, calcified bone. Endochondral ossification is a highly regulated, multistep cell specification program involving the initial differentiation of prechondrogenic mesenchymal cells into hyaline chondrocytes, terminal differentiation of hyaline chondrocytes into hypertrophic chondrocytes, and finally, apoptosis of hypertrophic chondrocytes followed by bone matrix deposition. Recently, extensive research has been carried out describing roles for the three major mitogen-activated protein kinase (MAPK) signaling pathways, the extracellular signal-regulated kinase 1/2 (ERK1/2), p38, and c-jun N-terminal kinase (JNK) pathways, in the successive stages of chondrogenic differentiation. In this review, we survey this research examining the involvement of ERK1/2, p38, and JNK pathway signaling in all aspects of the chondrogenic differentiation program from embryonic through postnatal stages of development. In addition, we summarize evidence from in vitro studies examining MAPK function in immortalized chondrogenic cell lines and adult mesenchymal stem cells. We also provide suggestions for future studies that may help ameliorate existing confusion concerning the specific roles of MAPK signaling at different stages of chondrogenesis.  相似文献   

14.
15.
Li XY 《生理学报》2001,53(6):414-418
实验旨在研究糖皮质激素快速、非基因组作用的细胞内信号传导机制。Western分析研究结果表明,皮质酮可快速激活PC12细胞中p38丝列原激活的蛋白激酶(mitogen-activated protein kinase,MAPK),时间、浓度曲线均为钟形,最大激活为10^-9mol/L和15min。糖皮质激素受体阻断剂RU38486不能阻断此作用,而小牛血清白蛋白耦联的皮质酮也能快速激活p38。受体酪氨酸激酶阻断剂genistein对此作用无影响,表明此快速作用不涉及受体酪氨酸激酶活性。此作用能被蛋白激酶C(protein kinase C,PKC)激动剂PMA模拟,而被PKC阻断剂Goe6976所阻断。结果表明,皮质酮可能通过推测的膜受体以PKC依赖的方式快速激活p38 MAPK。  相似文献   

16.
Fibroblast growth factors (FGFs) and their receptors, regularly expressed at high levels in gliomas, are further upregulated during the transition of the tumor from low- to high-grade malignancy, and are essential for glioma progression. FGFs induce upregulation of the mitogen-activated protein kinase (MAPK) signaling cascade in cultured glioma cells, which suggests that MAPK pathway participates in the FGF-dependent glioma development. Recently, it has been shown that dobesilate, an inhibitor of FGF mitogenic activity, shows antiproliferative and proapoptotic activities in glioma cell cultures. Accordingly, it should be expected this new synthetic FGF inhibitor to affect the activation levels of MAPK. Here we report that immunocytochemical and Western blot data unequivocally show that treatment of cell cultures with dobesilate causes a significant decrease of the intracellular levels of ERK1/2 activation, one of the components of the MAPK signalling cascade. This finding supports an important role for dobesilate in glioma growth, suggesting that dobesilate should be a treatment to be born in mind for glioma management.  相似文献   

17.
促分裂原激活的蛋白激酶(MAPK)信号传导通路的研究进展   总被引:12,自引:0,他引:12  
牟金叶  陈晓光 《生命科学》2002,14(4):208-211,203
MAPK信号传导通路在真核生物细胞的生化和分化、细胞周期调节和细胞凋亡过程中发挥着重要的作用。生物化学研究和分子生物学鉴定表明:在酵母和哺乳动物细胞中MAPK信号传导通路都有一个保守的三组分激活模件,该模件内的激酶引发了一系列的磷酸化级联反应。了解MAPK信号传导通路的组成部分、调控方式和作用机制,有助于对因信号传导通路的调节失控而引起的疾病进行预防和治疗。  相似文献   

18.
Ando H  Kurita S  Takamura T 《Life sciences》2004,74(14):1817-1827
The p38 mitogen-activated protein kinase (MAPK) pathway is important in Th1 immunity, macrophage activation, and apoptosis. Since they may be associated with beta-cell destruction during the development of type 1 diabetes, we investigated the role of the p38 MAPK pathway in female nonobese diabetic (NOD) mice. Phosphorylated p38 MAPK was observed immunohistochemically in CD4+ cells that had infiltrated into the islets and part of beta-cells, increasing in proportion to the severity of insulitis. Continuous oral administration of 0.08% FR167653, a specific p38 MAPK pathway inhibitor, significantly reduced the ex vivo production of interferon-gamma by splenic Th1 cells without affecting interleukin-4 production by Th2 cells. FR167653 administration from 4-30 weeks of age prevented NOD mice from developing diabetes without affecting the severity of insulitis. Treatment with FR167653 after insulitis had developed (i.e. from 10-30 weeks of age) also prevented diabetes, further suggesting that treatment with the p38 MAPK pathway inhibitor keeps insulitis benign in NOD mice, partly by inhibiting Th1 immunity. These findings suggest that p38 MAPK is a key mediator that switches insulitis from benign to destructive in the development of type 1 diabetes.  相似文献   

19.
Ineukaryocyte,themitogen-activatedproteinkinases(MAPKs)playcriticalrolesinmanysignaltransductionprocesses[1].p38signalpathwayisanimportantbranchoftheMAPKs[2].Oneoftheprimaryfunctionsofp38medicatestheinflammatorysignalbyphosphorylatingATF[3].Itisknownthatinhibitingthep38activitycanblockthesignaltransductionofinflammationandsub-sequentlyalleviateinflammatoryresponse[4].Inrecentyears,severalresearchgroupshavetriedtousesomespecificinhibitorsofp38forclinictrial[5—7].IthasbeendemonstratedthatP…  相似文献   

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