951 resultados para RNA interference (RNAi)
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Dans cette thèse, je présente une étude (1) du rôle de la 17β-HSD5 dans la modulation des taux d’hormones et dans la prolifération, et l’impact de l’expression de la 17β-HSD5 sur d’autres protéines de BC cellules; (2) une étude comparative sur trois enzymes (17β-HSD1, 17β-HSD7 et 3α-HSD3) avec la provision de DHEA et ses substrats directes soit l’E1 ou la DHT. Les principaux résultats obtenus dans cette étude sont les suivants: (1) en utilisant l’ARN d’interférence de la 17β-HSD5, des immunodosages enzymatiques et des tests de prolifération de cellules démontrent que l’expression de la 17β-HSD5 est positivement corrélée à un niveau de T et de DHT dans les BCC, mais négativement corrélée pour l’E2 et la prolifération des cellules de BC (2) les analyses quantitatives de PCR en temps réel et de Western blot ont démontré que l’inhibition de l’expression de la 17β-HSD5 régule à la hausse l’expression de l’aromatase dans les cellules MCF-7. (3) L’analyse d’ELISA de la prostaglandine E2 a vérifié que l’expression accrue de l’aromatase a été modulée par des niveaux élevés de PGE2 après l’inactivation de l’expression du gène de la 17β-HSD5. (4) Le test de cicatrisation a montré que l’inactivation de l’expression du gène de la 17β-HSD5 favorise l’augmentation de la migration cellulaire. (5) L’expression du gène 17β-HSD5 dans des échantillons cliniques, à partir de l’analyse de base de données ONCOMINE, a montré que sa plus faible expression a été corrélée avec le statut de l’HER-2 et de la métastase de la tumeur. (6) Les données protéomiques révèlent également que des protéines impliquées dans les voies métaboliques sont fortement exprimées dans les cellules MCF-7 après l’inactivation de l’expression du gène de la 17β-HSD5. (7) L’étude n’a démontré aucune différence dans la fonction biologique de la 17β-HSD1 et de la 17β-HSD7 lorsqu’elles sont cultivées avec différentes stéroïdes: tel que les niveaux de stéroides, la prolifération cellulaire et les protéines régulées. (8) Toutefois, la supplémentation du milieu de culture se révèle avoir un impact marqué sur l’étude de la 3α-HSD3. (9). Nous avons proposé que l’utilisation de la DHEA comme source d’hormone puisse entraîner une meilleure imitation des conditions physiologiques post-ménopausales en culture cellulaire selon l’intracrinologie.
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随着RNAi调控目的基因表达机理研究的深入,RNAi技术也发展为一种强有力的实验工具,用来控制目的基因的表达以获取预期的生物表型。目前在植物中至少发现存在三种不同的RNAi途径,这些途径中基因沉默信号可以放大、传递和自我调控。为了建立高效、经济的RNAi技术体系,必须解决以下几个问题:即RNAi的有效传递,稳定性的提高,非目标效应出现的减小以及目标RNA敏感位点的确定等。综述了RNAi作用机制及其在植物细胞工程中的最新应用进展,并详细探讨了其技术体系。
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Aquaglyceroporin-9 (AQP9) facilitates diffusion of water and energy substrates such as glycerol and monocarboxylates. AQP9 is present in plasma membrane and mitochondria of astrocytes and catecholaminergic neurons, suggesting that it plays a role in the energetic status of these cells. Using specific small interference RNA directed against AQP9 in astrocyte cultures, we showed that glycerol uptake is decreased which is associated with an increase in glucose uptake and oxidative metabolism. Our results not only confirm the presence of AQP9 in astrocytes but also suggest that changes in AQP9 expression alter glial energy metabolism.
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Fundação de Amparo à Pesquisa do Estado de São Paulo (FAPESP)
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Introduction of exogenous double-stranded RNA (dsRNA) into Caenorhabditis elegans has been shown to specifically and potently disrupt the activity of genes containing homologous sequences. In this study we present evidence that the primary interference effects of dsRNA are post-transcriptional. First, we examined the primary DNA sequence after dsRNA-mediated interference and found no evidence for alterations. Second, we found that dsRNA-mediated interference with the upstream gene in a polar operon had no effect on the activity of the downstream gene; this finding argues against an effect on initiation or elongation of transcription. Third, we observed by in situ hybridization that dsRNA-mediated interference produced a substantial, although not complete, reduction in accumulation of nascent transcripts in the nucleus, while cytoplasmic accumulation of transcripts was virtually eliminated. These results indicate that the endogenous mRNA is the target for interference and suggest a mechanism that degrades the targeted RNA before translation can occur. This mechanism is not dependent on the SMG system, an mRNA surveillance system in C. elegans responsible for targeting and destroying aberrant messages. We suggest a model of how dsRNA might function in a catalytic mechanism to target homologous mRNAs for degradation.
De Novo Transcriptome Sequence Assembly and Analysis of RNA Silencing Genes of Nicotiana benthamiana
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Background: Nicotiana benthamiana has been widely used for transient gene expression assays and as a model plant in the study of plant-microbe interactions, lipid engineering and RNA silencing pathways. Assembling the sequence of its transcriptome provides information that, in conjunction with the genome sequence, will facilitate gaining insight into the plant's capacity for high-level transient transgene expression, generation of mobile gene silencing signals, and hyper-susceptibility to viral infection. Methodology/Results: RNA-seq libraries from 9 different tissues were deep sequenced and assembled, de novo, into a representation of the transcriptome. The assembly, of16GB of sequence, yielded 237,340 contigs, clustering into 119,014 transcripts (unigenes). Between 80 and 85% of reads from all tissues could be mapped back to the full transcriptome. Approximately 63% of the unigenes exhibited a match to the Solgenomics tomato predicted proteins database. Approximately 94% of the Solgenomics N. benthamiana unigene set (16,024 sequences) matched our unigene set (119,014 sequences). Using homology searches we identified 31 homologues that are involved in RNAi-associated pathways in Arabidopsis thaliana, and show that they possess the domains characteristic of these proteins. Of these genes, the RNA dependent RNA polymerase gene, Rdr1, is transcribed but has a 72 nt insertion in exon1 that would cause premature termination of translation. Dicer-like 3 (DCL3) appears to lack both the DEAD helicase motif and second dsRNA binding motif, and DCL2 and AGO4b have unexpectedly high levels of transcription. Conclusions: The assembled and annotated representation of the transcriptome and list of RNAi-associated sequences are accessible at www.benthgenome.com alongside a draft genome assembly. These genomic resources will be very useful for further study of the developmental, metabolic and defense pathways of N. benthamiana and in understanding the mechanisms behind the features which have made it such a well-used model plant. © 2013 Nakasugi et al.
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Barley yellow dwarf virus-PAV (BYDV-PAV) is the most serious and widespread virus of cereals worldwide. Natural resistance genes against this luteovirus give inadequate control, and previous attempts to introduce synthetic resistance into cereals have produced variable results. In an attempt to generate barley with protection against BYDV-PAV, plants were transformed with a transgene designed to produce hairpin (hp)RNA containing BYDV-PAV sequences. From 25 independent barley lines transformed with the BYDV-PAV hpRNA construct, nine lines showed extreme resistance to the virus and the majority of these contained a single transgene. In the progeny of two independent transgenic lines, inheritance of a single transgene consistently correlated with protection against BYDV-PAV. This protection was rated as immunity because the virus could not be detected in the challenged plants by ELISA nor recovered by aphid feeding experiments. In the field, BYDV-PAV is sometimes associated with the related luteovirus Cereal yellow dwarf virus-RPV (CYDV-RPV). When the transgenic plants were challenged with BYDV-PAV and CYDV-RPV together, the plants were susceptible to CYDV-RPV but immune to BYDV-PAV. This shows that the immunity is virus-specific and not broken down by the presence of CYDV. It suggests that CYDV-RPV does not encode a silencing-suppressor gene or that its product does not protect BYDV-PAV against the plant's RNAi-like defence mechanism. Either way, our results indicate that the BYDV-PAV immunity will be robust in the field and is potentially useful in minimizing losses in cereal production worldwide.
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Horizontal gene transfer (HGT) is known to be a major force in genome evolution. The acquisition of genes from viruses by eukaryotic genomes is a well-studied example of HGT, including rare cases of non-retroviral RNA virus integration. The present study describes the integration of cucumber mosaic virus RNA-1 into soybean genome. After an initial metatranscriptomic analysis of small RNAs derived from soybean, the de novo assembly resulted a 3029-nt contig homologous to RNA-1. The integration of this sequence in the soybean genome was confirmed by DNA deep sequencing. The locus where the integration occurred harbors the full RNA-1 sequence followed by the partial sequence of an endogenous mRNA and another sequence of RNA-1 as an inverted repeat and allowing the formation of a hairpin structure. This region recombined into a retrotransposon located inside an exon of a soybean gene. The nucleotide similarity of the integrated sequence compared to other Cucumber mosaic virus sequences indicates that the integration event occurred recently. We described a rare event of non-retroviral RNA virus integration in soybean that leads to the production of a double-stranded RNA in a similar fashion to virus resistance RNAi plants.
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The efforts made to develop RNAi-based therapies have led to productive research in the field of infections in humans, such as hepatitis C virus (HCV), hepatitis B virus (HBV), human immunodeficiency virus (HIV), human cytomegalovirus (HCMV), herpetic keratitis, human papillomavirus, or influenza virus. Naked RNAi molecules are rapidly digested by nucleases in the serum, and due to their negative surface charge, entry into the cell cytoplasm is also hampered, which makes necessary the use of delivery systems to exploit the full potential of RNAi therapeutics. Lipid nanoparticles (LNP) represent one of the most widely used delivery systems for in vivo application of RNAi due to their relative safety and simplicity of production, joint with the enhanced payload and protection of encapsulated RNAs. Moreover, LNP may be functionalized to reach target cells, and they may be used to combine RNAi molecules with conventional drug substances to reduce resistance or improve efficiency. This review features the current application of LNP in RNAi mediated therapy against viral infections and aims to explore possible future lines of action in this field.
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磷脂是动物和植物非光合组织细胞膜系统的主要组成成分,在细胞生命过程中扮演着重要角色。尽管绿色植物光合膜的的甘油脂主要是糖脂,但是它仍然含有大约10%的磷脂,说明磷脂在光合膜的结构和功能中起重要作用。构成生物膜的磷脂有多种,但是,光合膜只含有磷脂酰甘油(PG)一种磷脂。光合膜中的PG有其特殊性,即:在PG的sn-2位上总连着一个棕榈酸(16:0)或者反式十六碳烯酸(16:1trans),说明了这种具有特殊结构的甘油脂在维持类囊体膜的结构和功能方面具有重要的作用。 叶绿体中有两个重要酶参与了PG的生物合成,它们分别是胞嘧啶二脂酰甘油合成酶(CDS)和磷脂酰甘油合成酶(PGS)。本实验以烟草和马铃薯为材料,利用RNAi技术,对CDS和PGS基因的表达进行抑制,通过PG缺失突变体,研究其功能。 对转含有PGS片段的沉默结构的转基因烟草叶片膜脂进行了分析,结果表明,与野生型烟草相比较,其PG含量下降了约20%,同时,SQDG和PC的含量增加。PG含量的降低没有引起MGDG和DGDG含量的变化。另外,我们还对转基因植株目的基因片段的RNA表达水平进行了RT-PCR分析,发现其表达量大幅度降低。这些结果表明,在转基因株系中,PGS基因的表达受到了抑制,说明我们获得了PG部分缺失的烟草PGS突变体。 对烟草PG缺失体的PG脂肪酸组成进行分析,表明其特征性脂肪酸反式十六碳烯酸含量明显下降,比野生型降低了44%,C18:0、C18:1和C18:2的相对含量增加,整个变化与总脂脂肪酸变化基本一致。 为了研究PG缺失对光合作用的影响,我们分析了多种光合指标。对叶绿素含量的分析表明,PG含量的降低影响了光合色素的组成。PG部分缺失的转基因烟草中的叶绿素总的含量下降,其中叶绿素b含量下降更为明显,结果,叶绿素a与叶绿素b的比值较野生型高。转基因植株净光合速率下降,二氧化碳利用率降低;PSII的最大光化学效率(Fv/Fm)和实际光化学效率(фPSII)降低,光化学猝灭下降,非光化学猝灭增加,尤其老叶的变化更为明显。这些结果说明了PG的部分缺失影响了植株的光合能力,捕光色素蛋白复合体的结构受到了影响,PSII功能遭受损伤。 同时,我们根据已经报道的马铃薯CDS基因,克隆了一个片段,构建沉默结构,并对沉默结构进行了转化。通过抗性基因的筛选以及RT-PCR检测,证明了沉默结构转化成功,目的基因的表达受到抑制,获得了马铃薯CDS转基因植株。 对马铃薯野生型和CDS转基因植株进行膜脂和脂肪酸分析表明,转基因植株叶片的PE、PG和PC等磷脂含量降低,SQDG和DGDG含量增加;C16:1(3t)、C16:2、C16:3、C18:1和C18:2含量下降,C16:0和C18:3含量增加,而C16:1和C18:0变化不明显。马铃薯CDS转基因植株的叶绿素荧光分析表明,PSII最大光化学效率降低,从野生型的0.82下降到0.77。
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Cytosine DNA methylation protects eukaryotic genomes by silencing transposons and harmful DNAs, but also regulates gene expression during normal development. Loss of CG methylation in the Arabidopsis thaliana met1 and ddm1 mutants causes varied and stochastic developmental defects that are often inherited independently of the original met1 or ddm1 mutation. Loss of non-CG methylation in plants with combined mutations in the DRM and CMT3 genes also causes a suite of developmental defects. We show here that the pleiotropic developmental defects of drm1 drm2 cmt3 triple mutant plants are fully recessive, and unlike phenotypes caused by met1 and ddm1, are not inherited independently of the drm and cmt3 mutations. Developmental phenotypes are also reversed when drm1 drm2 cmt3 plants are transformed with DRM2 or CMT3, implying that non-CG DNA methylation is efficiently re-established by sequence-specific signals. We provide evidence that these signals include RNA silencing though the 24-nucleotide short interfering RNA (siRNA) pathway as well as histone H3K9 methylation, both of which converge on the putative chromatin-remodeling protein DRD1. These signals act in at least three partially intersecting pathways that control the locus-specific patterning of non-CG methylation by the DRM2 and CMT3 methyltransferases. Our results suggest that non-CG DNA methylation that is inherited via a network of persistent targeting signals has been co-opted to regulate developmentally important genes. © 2006 Chan et al.
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通过网上提供的生物信息学分析软件进行搜索和比对,初步筛选到3个较好的针对小鼠双尾-C(Bicc1)基因的RNA干扰(RNAi)序列。合成这3个干涉序列片段后克隆到pRS-HushshRNA载体中。构建Bicc1基因的真核表达载体pEGFP-C3-Bicc1,将绿色荧光蛋白(GFP)标签标记在Bicc1蛋白上。利用细胞转染技术将pEGFP-C3-Bicc1与3个干涉序列载体共转染至体外培养的HEK-293细胞中,最后通过细胞荧光强度、半定量PCR和Westernblotting鉴定出其中两个序列(pRS-Hush-RNAi-Bicc1-N/-C)能明显降低Bicc1蛋白在HEK-293细胞中的表达水平,为下一步建立起低表达Bicc1的稳定细胞株和研究小鼠Bicc1的功能提供了良好的材料。
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国家自然科学基金海外杰出青年基金(30428024)资助