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1.
旨在研究自噬调控药物对感染日本脑炎病毒(Japanese encephalitis virus,JEV)小鼠脑部细胞凋亡的影响,本试验建立自噬调控药物处理的感染日本脑炎病毒小鼠的动物模型,其中,雷帕霉素为自噬诱导剂,渥漫青霉素及氯喹为自噬抑制剂。实验动物分成8组:DMEM对照组(Control);JEV感染组(JEV);JEV+雷帕霉素(Rapamycin)组(JEV+Rapa);JEV+渥漫青霉素(Wortmannin)组(JEV+Wort);JEV+氯喹(Chloroquine)组(JEV+CQ);雷帕霉素组(Rapa);渥漫青霉素组(Wort);氯喹组(CQ)。观察不同处理组小鼠的临床症状;透射电镜观察小鼠脑部神经元及胶质细胞的线粒体损伤程度;Tunel染色观察统计小鼠脑部凋亡细胞分布;检测小鼠脑部凋亡因子及凋亡蛋白的表达量。与JEV+Rapa及JEV组相比较,JEV+Wort及JEV+CQ组小鼠出现轻微的神经症状,脑部神经元及胶质细胞线粒体轻度损伤,脑组织较少细胞发生凋亡。不同处理组小鼠脑部凋亡因子及凋亡蛋白的表达量变化差异不显著。综上表明,自噬抑制剂渥漫青霉素和氯喹可以在一定程度上抑制感染日本脑炎病毒小鼠脑组织中细胞凋亡的发生。  相似文献   
2.
The contribution of N remobilization is crucial for new shoots growth and quality formation during spring tea shoots development. However, the translocation mechanism of N from source leaves to sink young shoots is not well understood. In the present study, 15N urea was applied to mature tea leaves one week before bud break to track N remobilization in a field experiment. The dynamic changes in plant 15N abundance, contents of amino acids, and the expression levels of genes related to N metabolism and translocation were followed during the 18‐d development of new spring shoots until three expanding young leaves. The results showed that during the growth of new shoots the amount of 15N in the shoots increased, whereas the Ndff (N derived from 15N‐urea) in mature leaves decreased, showing that the foliar‐applied N in mature leaves was readily exported to new shoots. This process was found to be accompanied by decline of chlorophylls. In the mature leaves, expression CsATG18a and CsSAG12 involved in autophagy was dramatically induced (> 4‐fold) at approximately nine days after the bud breaking. The genes involved in the transformation of amino acids, including primarily CsGDH2, CsGDH4, CsGLT3, CsGS1;3, and CsASN2 were upregulated by > 3‐fold after bud breaking. The expression levels of CsATG8A, CsATG9, CsSAG12, CsGS1;1, CsGDH1, and CsAAP6 correlated negatively with the Ndff in mature leaves, but positively with 15N amount and total N amount in new shoots, suggesting these genes played important roles in N export from mature leaves. In the new shoots, the expression of most genes showed two defined peaks, one on six days and one on 12 days after bud breaking. The expression of CsGS2, CsASN3, CsGLT1, and CsAAP4 positively correlated with the 15N amount and total N amount in new shoots. These genes might be involved in the transport and re‐assimilation of N from mature leaves. The overall results demonstrated that the translocation of 15N from mature leaves to new spring shoots was regulated by the genes involved in autophagy, protein degradation, amino acid transformation and transport.  相似文献   
3.
钠离子依赖性中性氨基酸转运体2(SNAT2)是一种氨基酸转运蛋白,可转运中性氨基酸,广泛分布于多种细胞中。氨基酸既可作为蛋白质合成的底物,也是调节细胞新陈代谢的关键信号分子,但SNAT2是否介导氨基酸调节BMECs增殖和自噬尚未见报道。本研究利用CASY细胞计数和Western blotting技术检测SNAT2过表达和siRNA干扰后牛乳腺上皮细胞(BMECs)增殖情况以及SNAT2对自噬标志蛋白LC3-Ⅰ/Ⅱ表达量的影响,并利用免疫荧光检测细胞自噬斑点(LC3-Ⅱ)变化。结果显示,SNAT2过表达时,p-PI3K、p-mTOR和Cyclin D1表达量增加,反之,p-PI3K、p-mTOR和Cyclin D1表达量下降。SNAT2抑制时,LC3-Ⅱ表达量增加,免疫荧光检测自噬斑点增多。添加自噬增强剂海藻糖(trehalose,Tre)和蛋氨酸(methionine,Met)后,与单一添加Tre组相比,Met+Tre组p-mTOR表达量增加,LC3-Ⅱ表达量降低,胞浆内绿色自噬斑点减少;添加Tre和Met并抑制SNAT2时,p-mTOR表达量下降,LC3-Ⅱ表达量增多,胞浆内绿色自噬斑点增加。以上结果表明,SNAT2可介导Met通过调控PI3K-mTOR/Cyclin D1信号通路调节BMECs的增殖与自噬。  相似文献   
4.
为探讨体外棕榈酸(Palmitic acid,PA)是否可以通过自噬调节奶牛淋巴细胞炎症信号通路的激活,分离健康奶牛淋巴细胞,采用3-MA(3-Methyladenin,细胞自噬抑制剂)和不同质量浓度PA作用于淋巴细胞,收集细胞及上清,利用qRT-PCR检测淋巴细胞LC3B、Beclin1、mTOR、UKL1、SQSTM1、IL-1β、IL-6和TNF-αmRNA表达情况;利用CCK-8和酶联免疫吸附法分别测定细胞活性和促炎细胞因子TNF-α、IL-6和IL-1β的释放量。CCK-8结果表明:PA显著抑制淋巴细胞活性(P0.01),添加自噬抑制剂3-MA后细胞活性显著增强(P0.01);qRT-PCR结果表明:与对照组(PA=0μg/mL)相比,PA处理组(不含3-MA)ULK1和LC3B mRNA表达极显著增加(P0.01),mTOR、Beclin1和SQSTM1 mRNA表达极显著降低(P0.01);IL-1β和IL-6 mRNA表达显著增强(P0.01),而TNF-α未表达;添加3-MA后,与1μg/mL PA处理组相比较,SQSTM1和Beclin1极显著增加,而LC3B mRNA表达极显著降低(P0.01);IL-1β和IL-6 mRNA表达显著下调(P0.01);PA增加促炎因子IL-6和IL-1β的释放(P0.01),显著抑制TNF-α释放(P0.01),而含有3-MA的PA混合处理组则显著降低(P0.01)。综上,PA可通过自噬调节奶牛淋巴细胞炎症信号通路的激活。  相似文献   
5.
LC3 − the mammalian homolog of Atg8 − was found as autophagosome membrane binding protein in mammals and widely used as an autophagosomal marker. LC3A, B and C show different expression patterns in each tissue. The aim of this study was to reveal the differences of expression patterns among LC3 families in mouse placenta under normal condition and nutrient starving condition. LC3A and B were highly expressed in decidual cells. LC3A and B were increased in D14 compared with D12 and D16 in mouse placenta, while LC3C was decreased. Starvation induced increase in LC3B expression specifically. Immunohistochemistry showed different expression patterns among LC3A, B and C. LC3A expression in syncytiotrophoblast was vanished by starvation. The results of real time RT-PCR suggested differences between D12 and D16 in autophagic cascade induced by starvation. Taken together, this study suggests that autophagy could play a role in placental invasion system and that nutrient starvation affects LC3B expression.  相似文献   
6.
7.
AIM To analyze the regulatory effect of quercetin (QUE) on PTEN-induced putative kinase 1 (PINK1)/parkin mitochondrial autophagy pathway, and to explore the mechanism of quercetin in relieving cerebral ischemia/reperfusion (I/R) injury. METHODS Sixty SD male rats were randomly divided into sham operation group, model group (I/R group), QUE group,3-methyladenine (3-MA) group and QUE+3-MA group. Administration started in each group 3 days before modeling, once a day, at 30 min after the last administration,except sham group, the other groups used 4-vessel blockage method to establish the whole brain I/R model. On the day after modeling, the neural function was evaluated by neuropathy disability score (NDS). The volume of cerebral infarction was measured by 2,3,5-triphenyltetrazolium chloride (TTC) staining. The morphological changes of mitochondria in hippocampus were observed by transmission electron microscopy. The contents of interleukin-6 (IL-6) and tumor necrosis factor-α (TNF-α) in hippocampus were measured by ELISA. The activity of superoxide dismutase (SOD) and contents of malondialdehyde (MDA) in hippocampus were detected by xanthine oxidase method, thiobarbituric acid condensation method. Western blot was used to detect the proteinex pression of PINK1, parkin and LC3-II in brain tissue. RESULTS Compared with sham group, the hippocampus of the rats in I/R group and QUE+3-MA group showed swelling of mitochondria, destruction or disappearance of internal crista and other pathological damage,also the volume of cerebral infarction, the contents of IL-6, TNF-α and MDA, the protein expression levels of PINK1, parkin and LC3-II were increased (P<0.05), while NDS score and activity of SOD were decreased (P<0.05). Compared with I/R group and QUE+3-MA group, the pathological damage degree of hippocampus in QUE group was reduced, the volume of cerebral infarction, the contents of IL-6, TNF-α and MDA were decreased (P<0.05), the proteinexpression levels of PINK1, parkin and LC3-II, and NDS score and activity of SOD were increased (P<0.05).The above indexes in 3-MA group were opposite to QUE group. No significant difference in the above indexes between I/R group and QUE+3-MA group was observed (P>0.05). CONCLUSION Quercetin activates mitochondrial autophagy and reduces cerebral I/R by regulating the expression of PINK1/parkin pathway proteins.  相似文献   
8.
布鲁菌是布鲁菌病的病原体,在世界范围内给养殖业带来巨大损失。自噬是细胞的一种代谢方式,细胞在自噬相关基因的调控下清除细胞内病原微生物和吞噬降解受损、衰老细胞器及大分子物质,以维持机体内环境平衡。布鲁菌入侵细胞后,能够诱发细胞自噬,而这一复杂的过程需要很多细胞因子的参与,探究布鲁菌引发的细胞自噬已成为揭示布鲁菌致病机制的新热点,现就这一新热点的研究进展进行综述。  相似文献   
9.
新城疫病毒(NDV)通过启动不依赖p53的内源性凋亡通路特异性诱导肿瘤细胞凋亡.最新研究表明NDV可以引起U251肿瘤细胞发生自噬,并在后期导致细胞凋亡,但其机理尚不清楚.本研究通过反向遗传操作技术对NDV Clone30疫苗株F蛋白的碱性裂解位点进行突变,将F蛋白的裂解位点由弱毒株的GGRQGR ↓ L突变为强毒株的GRRQRR ↓ F基序,并成功拯救出突变改造病毒rC30-FmF.分别将Clone30野生型病毒株rC30-wt与rC30-FmF感染HepG2肝癌细胞,通过透射电镜检测细胞超微结构显示,rC30-FmF感染4h后细胞内出现大量自噬小体及自噬溶酶体.通过westem blot检测自噬标志蛋白LC-3 Ⅱ表明,rC30-FmF感染4h后LC3Ⅱ表达量显著上调,与rC30-wt对照组相比差异极显著(p<0.01).研究表明,rC30-FmF可以在感染早期增加HepG2细胞自噬程度.从而初步证明F蛋白的裂解位点在诱导HepG2细胞自噬过程中具有关键作用.  相似文献   
10.
卵泡是雌性哺乳动物发挥其繁殖能力的基础,其发育是一个动态的过程,主要涉及原始卵泡的形成、卵泡的募集、优势卵泡的选择、成熟卵泡的排卵以及排卵后卵泡的黄体化。卵泡发育的整个过程受内分泌系统、细胞自噬、细胞凋亡等的调控。自噬是一种进化上保守的应激反应过程,通过将细胞内物质包裹形成自噬体并传递到溶酶体中进行降解,以帮助细胞维持胞内物质代谢平衡,其在卵泡发育的过程中发挥着重要作用,一方面它能够通过降解或回收受损的蛋白质或有害代谢产物缓解应激造成的卵泡损伤,另一方面它又通过产生大量自噬体导致细胞器过度降解而引起卵泡闭锁。自噬对卵泡发育的调控需要PI3K-Akt-mTOR、MAPK-ULK1、ERK1/2、Sirt1-FOXO1-Atg7等多种经典信号通路的参与,这些信号通路在激素、氧化应激、细胞饥饿等的刺激下,通过独立作用或相互作用促进或抑制自噬调控卵泡细胞的生理活动。目前已知不同的自噬水平对卵泡细胞的存活具有不同作用,但关于决定细胞能否存活的自噬水平的研究还比较少。此外,自噬对卵泡发育调控的研究主要集中在颗粒细胞中,而对卵母细胞的成熟和卵泡膜细胞的作用的报道较少。文章简述了自噬在卵巢储备的形成、生长卵泡的发育、黄体的形成和退化及卵泡闭锁中的作用,并分析了一些常见的化工产品和应激诱导的自噬对卵泡发育的影响,以期为全面了解自噬在卵泡发育中的调控作用提供一定的参考。  相似文献   
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