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1.
脂多糖(Lipopolysaccharide,LPS)是革兰阴性杆菌细胞壁的主要组成成分,也是一种很强的炎症反应和氧化应激诱导剂。呼吸道上皮是机体防御外界细菌、病毒、香烟烟雾等生物和化学因素损伤的天然屏障,在维持呼吸道局部微环境稳态中可发挥重要作用,也是吸入性药物治疗的主要靶细胞。呼吸道上皮结构完整性缺陷或功能紊乱还参与了哮喘、慢性阻塞性肺疾病等多种肺部疾病的发生和发展。LPS可引起呼吸道上皮损伤,但其具体的分子机制目前尚不清楚。p38丝裂原活化蛋白激酶(P38mitogen-activated protein kinase,p38 MAPK)作为MAPK家族四个亚家族成员之一,包含四个成员:p38α、p38β、p38γ和p38δ,可通过经典和非经典的p38 MAPK信号通路激活方式及通过激酶活性无关的功能参与调控炎症反应、细胞生长、细胞分化和细胞死亡等多种病理生理过程。本文就p38 MAPK信号通路在LPS致呼吸道上皮损伤中的作用做一综述。  相似文献   

2.
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   

3.
周云飞  刘文虎 《生物磁学》2010,(17):3347-3349,3331
RhoA属于小G蛋白家族成员,p38MAPK属于丝/苏氨酸蛋白激酶家族成员。本文从巨噬细胞、肌肉细胞、成纤维细胞、神经元和肿瘤几个方面阐述RhoA-p38MAPK信号通路的研究进展,此信号通路在细胞骨架的改变和肿瘤的发生发展方面有望成为新的研究热点。  相似文献   

4.
p38 MAPK在小鼠睾丸不同发育阶段的表达和定位   总被引:1,自引:0,他引:1  
为探讨丝裂原活化蛋白激酶p38 MAPK在小鼠睾丸不同发育阶段的表达,应用蛋白质免疫印迹杂交技术和免疫组织化学SABC法检测1至7周龄小鼠睾丸p38 MAPK的表达、定位及发育变化,并通过图像分析技术对免疫组织化学结果进行统计学分析。免疫印迹杂交发现,p38 MAPK在2~7周龄小鼠睾丸中均有表达。免疫组织化学结果显示,在2周龄小鼠睾丸曲细精管上皮中即可观察到p38 MAPK免疫阳性反应,免疫反应阳性细胞为精原细胞;3、4、5周龄小鼠睾丸仅有个别曲细精管上皮可见p38 MAPK免疫阳性反应;6、7周龄小鼠睾丸中p38 MAPK表达较丰富,免疫反应阳性细胞为精原细胞和初级精母细胞,免疫阳性反应物均主要位于细胞核内。在7周龄小鼠睾丸中还可见到部分间质细胞的细胞质亦呈p38 MAPK阳性。这些结果提示,p38 MAPK可能对生精细胞的增殖分化具有调控作用。  相似文献   

5.
[目的]p38 MAPK基因在昆虫的低温响应机制中发挥着重要作用,本研究旨在探究p38 MAPK基因在西方蜜蜂Apis mellifera越冬期内表达规律.[方法]本研究对西方蜜蜂p38 MAPK蛋白序列进行生物信息学分析,并利用荧光定量PCR技术检测该基因在意大利蜜蜂Apis mellifera ligustica、欧洲黑蜂Apis mellifera mellifera、高加索蜂Apis mellifera caucasica和卡尼鄂拉蜂Apis mellifera carnica于不同越冬时期和不同越冬方式下体内的表达量.[结果]西方蜜蜂38 MAPK包含1083 bp的开放阅读框区域,编码360个氨基酸,包含TGY双磷酸化三肽模体序列和磷酸化激活环序列.p38 MAPK在蜜蜂所有组织中均有表达,分别在胸部和腹部处于最高和最低表达丰度.38 MAPK mRNA在不同蜂种不同越冬时期的表达量存在显著差异,4个蜂种于室外越冬时p38 MAPK的表达量均显著高于室内越冬(P<0.05);随着蜜蜂越冬持续时间的延长,意大利蜜蜂和欧洲黑蜂不同越冬方式下体内p38 MAPK的表达均呈现先上升后下降的表达趋势,高加索蜂在室外与室内越冬时体内该基因的表达量均表现出持续上升的表达趋势,该基因在卡尼鄂拉蜂中的表达趋势与其他3个蜂种呈现一定差异,卡尼鄂拉蜂p38 MAPK在室内越冬方式下表达量保持恒定,但在室外越冬方式下表现出先下降后上升的表达趋势;比较室外越冬情况下4个蜂种于不同越冬时期体内38 MAPK表达量后发现,除在次年的1月外,其他越冬时期4个蜂种体内p38 MAPK的表达量均存在显著差异(P<0.05).[结论]p38 MAPK基因在西方蜜蜂越冬期内发挥着重要的生理功能,p38 MAPK信号通路可作为蜜蜂抗寒机制研究的候选信号通路.  相似文献   

6.
p38MAPK介导的胶质细胞iNOS的转录激活机制   总被引:6,自引:2,他引:4  
丝裂原激活蛋白激酶(MAPK)酶级联反应系统参与胶质细胞中iNOS的合成.通过瞬时转染p38MAPK途径中上游激酶,MAPK激酶3(MKK3)和MAPK激酶6 (MKK6 )表达质粒,进一步了解p38MAPK级联传导信号系统调节iNOS基因在胶质细胞中的转录激活机制.MKK3或MKK6表达质粒与接有荧光素酶(luciferase ,Luc)的大鼠iNOS启动基因质粒(iNOS Luc)联合转染C6星形胶质细胞株引起iNOS Luc的激活,并且使细胞因子诱导的iNOSmRNA的表达增强.这两种效应都能够被p38MAPK抑制剂SB2 0 35 80所抑制.MKK3 6也可以诱导核因子κB(NFκB Luc)依赖的转录活性.这些分子水平的研究结果为p38MAPK信号级联传导途径在调节大鼠胶质细胞中iNOS基因转录激活中的重要作用,包括转录因子NFκB的作用提供了证据.通过阻断iNOS表达或NO的生成,抑制细胞炎症发生,为防治神经细胞炎症反应性疾病提供实验依据.  相似文献   

7.
LPS介导的小鼠腹腔巨噬细胞免疫调变的信号和机理是不清楚的.应用LPS和PMA处理抑制性巨噬细胞后,发现Ras下游信号分子Raf-1,MAPK和cPLA2均被活化,包括Raf-1的磷酸化,MAPK p44和p42磷酸化以及cPLA_2的活化,使花生四烯酸的释放显著增加,结合新近发现的LPS、PMA能诱导抑制性巨噬细胞PKC-α和PKC-ε同工酶的激活与转位,认为在LPS介导的免疫调变中,PKC信号通路的活化及其与Raf-1/MAPK通路的“连接”是主要信号传导通路.同时调变巨噬细胞也能分泌IL-12.  相似文献   

8.
以α1,2-岩藻糖转移酶基因转染前后卵巢癌细胞RMG-I、RMG-I-H为细胞模型,用细胞免疫荧光方法检测转染前后细胞p38MAPK和p-p38MAPK的细胞内定位,RT-PCR和Western blot方法从mRNA和蛋白质两个水平检测转染前后细胞p38MAPK表达的变化;以兔抗人IgG抗体处理组为对照,分别利用RT-PCR和Western blot方法检测Lewisy单克隆抗体处理前后RMG-I-H细胞p38MAPK mRNA和蛋白质表达水平的变化;以0.1%DMSO为对照,用流式细胞仪(FCM)检测p38MAPK特异性抑制剂SB203580处理后RMG-I-H凋亡比率的变化,并利用RT-PCR和Western blot方法检测caspase-3的mRNA和蛋白质水平的变化;用RT-PCR方法检测卡铂和SB203580处理后p38MAPK及caspase-3表达的变化.结果表明,RMG-I与RMG-I-H的p38MAPK蛋白主要定位在细胞质,p-p38MAPK蛋白定位在细胞核,转染后p38MAPK的mRNA水平明显高于转染前(P<0.05);Lewisy单克隆抗体处理后RMG-I-H细胞p38MAPK m...  相似文献   

9.
目的:探究云芝糖肽(PSP)对静息和脂多糖(LPS)过度刺激两种不同状态的巨噬细胞Raw264.7产生活性氧簇(ROS)及p38、p-p38的影响及其相关机制。方法:采用流式细胞术方法检测ROS的表达;Western blot方法检测MAPK信号通路中p38磷酸化及非磷酸化的相对表达量。结果:100g/ml PSP下调1g/ml LPS单独作用于巨噬细胞时ROS及p-p38的表达量;100g/mlPSP上调正常巨噬细胞p-p38的表达量;p38表达量基本不变。结论:PSP通过ROS,p38两条通路参与巨噬细胞的免疫调节作用。  相似文献   

10.
目的探讨乳腺浸润性导管癌组织中血管内皮生长因子C(VEGF—C)和丝裂原激活蛋白激酶p38(p38MAPK)的表达关系,以及与乳腺浸润性导管癌淋巴结转移等生物学行为的关系。方法采用免疫组织化学sP法检测70例乳腺浸润性导管癌组织及15例癌旁正常组织中VEGF-C和p38MAPK蛋白的表达,并采用Westernblot法检测13例伴有淋巴结转移的乳腺癌及12例无淋巴结转移的乳腺癌的新鲜组织中VEGF—C和p38MAPK蛋白表达。结果VEGF—C和p38MAPK在乳腺浸润性导管癌组织中的表达(阳性率分别为67.0%和61.4%)明显高于癌旁正常组织;VEGF-C和p38MAPK蛋白在伴有淋巴结转移组的乳腺癌组织中的表达均高于无淋巴结转移组(P=0.005,P=0.005);在乳腺浸润性导管癌组织中VEGF-C和p38MAPK表达存在显著正相关(r=0.383,P=0.001),并与乳腺浸润性导管癌的TNM分期(P=0.019,P=0.010)有关;VEGF-C和p38MAPK蛋白表达与乳腺浸润性导管癌肿块的大小(P=0.203,P=0.086)和患者的年龄(P=0.0.266,P=0.087)无明显关系。Western blot也证实,VEGF-C和p38MAPK蛋白在有淋巴结转移组中表达高于无淋巴结转移组。结论VEGF-C和p38MAPK的蛋白表达与乳腺浸润性导管癌的淋巴结转移密切相关,其有望成为乳腺癌治疗的新靶点。  相似文献   

11.
p38 MAPK介导高糖诱导的肾小管上皮细胞向间充质细胞转变   总被引:2,自引:0,他引:2  
本文旨在观察p38MAPK与高糖诱导的肾小管上皮细胞向间充质细胞转变之间的关系。将雄性Sprague—Dawley(SD)大鼠随机分为对照组、糖尿病组、胰岛素治疗组,用免疫组织化学、Western blot检测p38MAPK和磷酸化p38MAPK(P—p38MAPK)蛋白表达。采用机械分离和酶消化获取SD大鼠肾小管节段,进行肾小管上皮细胞培养,将肾小管上皮细胞分为对照组、高渗组(20mmol/L D—mannitol)、高糖组(20mmol/L D—glucose)和SB202190(p38MAPK特异性抑制剂)+高糖组,处理72h后收集细胞,用免疫细胞化学检测α-平滑肌肌动蛋白(α—smooth muscleactin,α-SMA)、p-p38MAPK和Snaill蛋白表达,Western blot检测p38MAPK、p-p38MAPK、Snaill、转化生长因子β1(transforming growth factor—β1,TGF-β1)、α-SMA和E-cadherin的表达,RT-PCR检测α-SMA和E-cadherin mRNA的表达。体内和体外结果均显示,高糖状态激活了p38MAPK,这种活化作用在体内可因胰岛素控制血糖而被消除,在体外可被p38MAPK特异性抑制剂SB202190显著抑制;高糖组α-SMA蛋白和mRNA在原代培养肾小管上皮细胞的表达较对照组分别增加12倍和8倍(P〈0.01),SB202190处理组其表达则较高糖组分别减少67%和50%(P〈0.01)。SB202190不影响TGF—β1蛋白表达,但下调Snaill蛋白表达,并部分恢复高糖组E—cadherin蛋白和mRNA的表达。上述结果提示,p38MAPK可能通过转录因子Snaill介导高糖诱导的肾小管上皮细胞向间充质细胞转变。  相似文献   

12.
p38 MAPK signaling during murine preimplantation development   总被引:7,自引:0,他引:7  
Mitogen-activated protein kinase (MAPK) pathways mediate some important cellular processes and are likely to also regulate preimplantation development. The role of p38 MAP kinase signaling during murine preimplantation development was investigated in the present study. p38 MAPK, p38-regulated or -activated kinase (PRAK; MK5), map kinase-activated protein kinase 2 (MK2), and heat shock protein 25 (hsp25) mRNAs and proteins were detected throughout preimplantation development. Two-cell stage embryos cultured in the presence of SB220025 and SB203580 (specific inhibitors of p38 MAPK alpha/beta), progressed to the eight-cell stage with the same frequency as controls; however, treated embryos halted their development at the 8- to 16-cell stage. In addition, embryos treated with p38 MAPK inhibitors displayed a complete loss of MK2 and hsp25 phosphorylation and also a complete loss of filamentous actin as indicated by the absence of rhodamine-phalloidin staining. In these inhibitor-treated groups, the embryos were composed of a mixture of compacting and noncompacting cells, and the embryos were one to two cell divisions behind controls. Treated embryos remained viable as the developmental blockade was rescued by removing embryos from the drug treatment and placing them in drug-free medium until they progressed to the blastocyst stage. This study demonstrates that p38 MAPK activity is required to support development through the murine preimplantation interval.  相似文献   

13.
磷酸化的p44/42MAPK在成年猫端脑和间脑内的分布   总被引:1,自引:0,他引:1  
为研究丝裂原激活的蛋白激酶(p44/42mitogen-activated protein kinase,缩写为p44/42MAPK)在正常动物脑内的功能,用免疫组织化学方法对正常家猫端脑和间脑内,磷酸化p44/42MAPK的分布进行了研究,结果表明在正常猫端脑和间脑内,磷酸化p44/42MAPK的存在范围比较广泛,嗅球,岛叶,梨状皮质,外侧隔区,海马锥体细胞层,下丘脑腹内侧核及弓状核内均有较多的阳性神经元,杏仁核存在中等量的阳性神经元,另外,新皮质Ⅱ层,内侧隔区,齿状回,纹状体,后脑室旁核和外侧缰核,下丘脑室旁核有散在分布的阳性神经元,外侧膝状体和丘脑腹后核有许多胶质细胞呈免疫阳性染色。咱束内有浓密的阳性纤维。本研究结果表明p44/42MAPK存在于与嗅觉,情绪,内分泌和记忆活动等功能有关的脑区和核团,提示其参与这些功能过程,本文还提示p44/42MAPK既与神经细胞,也与神经胶质细胞的信号转导有关。  相似文献   

14.
Vacuolization of the cytoplasm is one of the dramatic and frequently observed phenomena in various cell types. Cellular vacuoles occur spontaneously or via a wide range of inductive stimuli, but the molecular mechanism involved in this process remains largely unknown. In this study, we investigated the role of the p38 and JNK pathways in the formation of cytoplasmic vacuoles. We found that p38 and JNK agonist anisomycin abolishes spontaneous cytoplasmic vacuolization of HepG2 cells through p38 activation, but not through JNK activation. Importantly, blocking the activity of p38 or suppression the expression of p38 elicits cytoplasmic vacuoles formation in various cancer cells. Furthermore, cytoplasmic vacuoles induced by p38 blocking are derived from the perinuclear region. These observations provide direct evidence for a role of p38 signaling in regulating the formation of cytoplasmic vacuoles. J. Cell. Biochem. 114: 1789–1799, 2013. © 2013 Wiley Periodicals, Inc.  相似文献   

15.
Skeletal muscle differentiation is marked by enhanced myotube formation and increased cytoskeletal rearrangement. Actin, a cytoskeletal protein is involved in various cellular functions such as glucose transport, intracellular trafficking, cell shape, and coordinated cell movement in response to various extracellular signals. The present study reveals an association between actin and p38 MAPK only in differentiated myotubes, not in proliferating myoblasts. Actin filament disassembly caused by cytochalasinD can be reversed using the potent activator of p38 MAPK, anisomycin. Pretreatment of myotubes with anisomycin partially resisted the effect of cytochalasinD. However, inhibition of p38 MAPK completely abolished the anisomycin-mediated actin remodeling. Data suggests that p38 MAPK interacts with actin and modulates actin filament rearrangement in differentiated L6E9 skeletal muscle cells.  相似文献   

16.
17.
Although adult mammals are unable to significantly regenerate their heart, this is not the case for a number of other vertebrate species. In particular, zebrafish are able to fully regenerate their heart following amputation of up to 20% of the ventricle. Soon after amputation, cardiomyocytes dedifferentiate and proliferate to regenerate the missing tissue. More recently, identical results have also been obtained in neonatal mice. Ventricular amputation of neonates leads to a robust regenerative response driven by the proliferation of existing cardiomyocytes in a similar manner to zebrafish. However, this ability is progressively lost during the first week of birth. The fact that adult zebrafish retain the capacity to regenerate their heart suggests that they either possess a unique regenerative mechanism, or that adult mammals lose/ inhibit this process. p38α ΜAPK has previously been shown to negatively regulate the proliferation of adult mammalian cardiomyocytes. We sought to determine whether a similar mechanism exists in adult zebrafish, and whether this needs to be overcome to allow regeneration to proceed. To determine whether p38α ΜAPK also regulates zebrafish cardiomyocytes in a similar manner, we generated conditional transgenic zebrafish in which either dominant-negative or active p38α ΜAPK are specifically expressed in cardiomyocytes. We found that active p38α ΜAPK but not dominantnegative p38α ΜAPK blocks proliferation of adult zebrafish cardiomyocytes and, consequently, heart regeneration as well. It appears that adult zebrafish cardiomyocytes share many characteristics with adult mammalian cardiomyocytes, including p38α MAPK-mediated cell cycle inhibition. These findings raise the possibility that zebrafish-like heart regeneration could be achieved in adult mammals.  相似文献   

18.
p38 MAPK信号转导途径在关节软骨细胞中的激活和作用   总被引:2,自引:0,他引:2  
p38信号转导途径是MAPK途径的一种,软骨细胞是关节软骨中唯一的细胞成分。软骨细胞中的p38 MAPK可以被多种细胞因子、机械因素等所激活,它与软骨细胞表型的保持和分化、软骨细胞的肥大化和钙化、凋亡、软骨基质金属蛋白酶的合成、软骨炎性细胞因子的产生等有密切关系,可能在关节炎的发生发展中发挥了重要作用。  相似文献   

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Although adult mammals are unable to significantly regenerate their heart, this is not the case for a number of other vertebrate species. In particular, zebrafish are able to fully regenerate their heart following amputation of up to 20% of the ventricle. Soon after amputation, cardiomyocytes dedifferentiate and proliferate to regenerate the missing tissue. More recently, identical results have also been obtained in neonatal mice. Ventricular amputation of neonates leads to a robust regenerative response driven by the proliferation of existing cardiomyocytes in a similar manner to zebrafish. However, this ability is progressively lost during the first week of birth. The fact that adult zebrafish retain the capacity to regenerate their heart suggests that they either possess a unique regenerative mechanism, or that adult mammals lose/ inhibit this process. p38α ΜAPK has previously been shown to negatively regulate the proliferation of adult mammalian cardiomyocytes. We sought to determine whether a similar mechanism exists in adult zebrafish, and whether this needs to be overcome to allow regeneration to proceed. To determine whether p38α ΜAPK also regulates zebrafish cardiomyocytes in a similar manner, we generated conditional transgenic zebrafish in which either dominant-negative or active p38α ΜAPK are specifically expressed in cardiomyocytes. We found that active p38α ΜAPK but not dominantnegative p38α ΜAPK blocks proliferation of adult zebrafish cardiomyocytes and, consequently, heart regeneration as well. It appears that adult zebrafish cardiomyocytes share many characteristics with adult mammalian cardiomyocytes, including p38α MAPK-mediated cell cycle inhibition. These findings raise the possibility that zebrafish-like heart regeneration could be achieved in adult mammals.  相似文献   

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