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1.
以CTAB法提取油棕(Elaeis guineensis)中果皮5个不同发育时期(G1~G5)的小RNA。从前期研究获得的油棕小RNA测序数据库中筛选12个候选miRNA,实时荧光定量PCR法(qRT-PCR)检测其在果实发育过程中的表达量变化,并进一步对显著差异表达的miRNA进行靶基因预测。结果表明:中果皮5个不同发育时期小RNA的OD260/OD280比值在1.7~2.0之间;浓度分别是289、364、476、213、390 ng/μL;qRT-PCR检测结果显示,12个候选miRNA在5个发育时期均显著性差异表达,特别是在中果皮发育第4个时期(G4)和第5个时期(G5)表达量极显著增高,其中miR395和miR156在第4个时期表达量最高;miR395和miR528在发育第5时期表达量最高;靶基因预测结果显示差异表达的部分miRNA,其靶基因可能参与了脂肪酸代谢通路,如磷脂酸磷酸脂酶和磷脂酶D。本研究筛选的与脂肪酸代谢相关的miRNA为今后油棕脂肪酸代谢调控通路研究提供了可能的线索。  相似文献   

2.
miRNA是一类非编码小RNA,经转录后调节靶基因的表达,影响细胞的功能。异常表达的miRNA可引起包括癌症在内的各种疾病的发生发展。miR-373通过参与病毒感染和炎症反应、细胞的增殖和凋亡、迁移和侵袭以及作为生物标志物评估临床肿瘤特征在肿瘤中发挥作用。miR-373在许多肿瘤中表达异常:一方面,其受上游调控因子作用表达异常,影响肿瘤细胞的功能;另一方面,异常表达的miR-373通过调控下游靶基因介导信号通路影响肿瘤细胞的功能。故miR-373可作为肿瘤早期诊断、基因治疗靶点或是临床预后监测指标。该文就miR-373在肿瘤中的功能作用和调节机制的相关研究进展作一综述。  相似文献   

3.
微小RNA(microRNA、miRNA)与胃癌的发生发展可通过调控其靶基因参与的信号传导通路,影响胃癌的发生、侵袭和转移等过程,发挥着类似于癌基因或抑癌基因的作用。目前,已发现多种microR—NA与胃癌关系密切,包括通过调节周期蛋白依赖性蛋白激酶(Cdk)表达影响胃癌细胞增殖的miR-106b-93~25家族、miR-222—221家族和抑制高迁移率族蛋白A2(HMGA2)基因表达抑制胃癌细胞转移的miR-129和let-一7miRNA家族等。另有研究表明,miR-d21和miR-31检测阳性率显著高于血清CEA,可能成为新的胃癌肿瘤标志物。miR-15b和miR-16与胃癌多药耐药的关系也说明microRNA可能成为胃癌治疗新的靶点。  相似文献   

4.
衰老是身体器官系统功能逐渐衰退的复杂的生物学过程,能诱发多种老年病。 长链非编码RNA(long non-coding RNA, lncRNA)是长度大于200个核苷酸的非编码RNA,在多种生理学和病理学过程中发挥重要作用。 细胞衰老是重要的衰老生物学过程之一,已经发现大量的lncRNA参与了细胞周期、端粒长度和表观遗传学等的调控,并影响关键的细胞周期过程,如细胞的衰老、增殖、分化、静止等;同时,lncRNA还参与了衰老相关重要信号通路的调控,如p53/p21、哺乳动物雷帕霉素靶蛋白(mTOR)、视网膜母细胞瘤蛋白(Rb)/p16和磷脂酰肌醇3激酶/苏氨酸蛋白激酶(PI3K/Akt)信号通路,它们均与许多衰老相关重大疾病密切相关。 本文综述了最近发现的与细胞衰老相关的lncRNA的功能和作用机制,并总结了lncRNA参与调控的细胞衰老信号通路,最后讨论了lncRNA未来的研究方向。  相似文献   

5.
microRNAs(miRNAs)是一类长度约22个核苷酸的非编码RNA.这是一种广泛存在于真核生物中的内源性单链小分子RNA,miRNAs通过部分碱基对互补方式与靶基因结合,在转录和转录后水平调节靶基因表达.最近研究发现,miRNAs可以靶向多个衰老相关信号通路,在线虫、果蝇、小鼠和人类的衰老过程中发挥了重要的调控作用.本文总结了近年来与衰老相关的miRNAs的研究进展,首先介绍衰老相关的信号通路,然后重点介绍与线虫和哺乳动物衰老有关的miRNAs,以及这些miRNAs如何调控衰老相关信号通路,从而影响细胞、组织和整个机体的衰老进程和衰老相关性疾病,最后展望该领域未来的研究方向.  相似文献   

6.
中华蜜蜂幼虫肠道响应球囊菌胁迫的microRNA应答分析   总被引:3,自引:0,他引:3  
【目的】蜜蜂球囊菌(Ascosphaera apis,简称球囊菌)是一种能够侵染中华蜜蜂(Apis cerana cerana,简称中蜂)幼虫的致死性真菌病原。微小RNA(microRNA,miRNA)可通过在转录后水平靶向抑制或降解mRNA而参与宿主与病原互作过程。本研究旨在对球囊菌胁迫的中蜂6日龄幼虫肠道的差异表达miRNA(DEmiRNA)及其靶基因进行深入分析,进而揭示DEmiRNA在中蜂响应球囊菌胁迫应答过程中的作用。【方法】利用Illumina MiSeq平台对正常及球囊菌胁迫的中蜂6日龄幼虫肠道(AcCK和AcT)进行测序,通过相关生物信息学软件预测DEmiRNA及其靶基因。通过Blast将靶基因注释到GO和KEGG数据库。利用Cytoscape软件构建DEmiRNA与其靶mRNA的调控网络。通过Stem-loop RT-PCR和qPCR验证测序数据的可靠性。【结果】本研究共预测出537个miRNA,其长度分布介于16–35 nt之间,且不同长度的miRNA首位碱基偏向性差异明显。通过Stem-loop RT-PCR证实了10个novel miRNA的表达。AcCK vs AcT比较组共有54个DEmiRNA,包含31个上调和23个下调miRNA,可分别靶向结合6170和8199个靶基因。GO分类结果显示上调和下调miRNA的靶基因分别涉及47和47个条目,富集基因数最多的皆为结合细胞进程和催化活性。KEGG代谢通路(pathway)富集分析结果表明上调和下调miRNA的靶基因分别富集在134和126条pathway,富集基因数最多的均为内吞作用和内质网中的蛋白质加工。调控网络分析结果表明,DEmiRNA及其靶mRNA形成十分复杂的调控关系;31个DEmiRNA可靶向结合51个与泛素介导的蛋白水解相关的mRNA,18个DEmiRNA可靶向结合14个与Jak-STAT信号通路相关的mRNA;miR-1277-x、miR-26-x、miR-27-y、miR-30-x、miR-6052-x等16个miRNA共同参与了上述两条免疫通路的调控。最后,随机挑选3个DEmiRNA进行qPCR验证,结果证明了测序数据的可靠性。【结论】本研究提供了中蜂幼虫肠道在球囊菌胁迫后期的miRNA的表达谱和差异表达信息,揭示了球囊菌与宿主之间在miRNA组学水平存在复杂的互作。miR-6052-x和miR-1277-x作为调控网络的核心可能通过影响细胞凋亡参与宿主的免疫防御,miR-26-x和miR-30-x可能通过调控Jak-STAT信号通路参与宿主的胁迫应答。本研究筛选出的关键DEmiRNA有望作为治疗白垩病的分子靶标。  相似文献   

7.
microRNAs(miRNAs)是一类长度约22个核苷酸的非编码RNA.这是一种广泛存在于真核生物中的内源性单链小分子RNA,miRNAs通过部分碱基对互补方式与靶基因结合,在转录和转录后水平调节靶基因表达.最近研究发现,miRNAs可以靶向多个衰老相关信号通路,在线虫、果蝇、小鼠和人类的衰老过程中发挥了重要的调控作用.本文总结了近年来与衰老相关的miRNAs的研究进展,首先介绍衰老相关的信号通路,然后重点介绍与线虫和哺乳动物衰老有关的miRNAs,以及这些miRNAs如何调控衰老相关信号通路,从而影响细胞、组织和整个机体的衰老进程和衰老相关性疾病,最后展望该领域未来的研究方向.  相似文献   

8.
肝癌细胞HepG2中p53调控miRNA-3661的生物信息分析与功能验证   总被引:1,自引:0,他引:1  
对已在前期实验中通过Dox诱导肝癌细胞HepG2 DNA损伤发现的受p53调控的hsa-miR-3661进行生物信息学分析,并通过分子生物学实验对其功能进行了验证,为miR-3661在肝肿瘤中的调控机制的研究提供理论基础。获取miR-3661结构与序列信息;预测靶基因,使用DAVID进行miRNA靶基因功能富集分析;分析miR-3661的p53结合位点,通过基因间的相互作用构建调控网络;进行细胞增殖实验验证miR-3661抑制肿瘤功能。结果表明,miR-3661序列保守,启动子区存在p53结合位点,暗示p53与hsa-miR-3661存在直接调控;预测靶基因1 009个,369个显著富集于细胞周期调控、细胞增殖、细胞凋亡等肿瘤相关生物学过程(P0.05),主要参与了癌症信号通路、MAPK信号通路与Erb B信号通路(P0.05);通过268组基因间的相互作用数据构建了p53、hsa-miR-3661和靶基因的调控网络,从系统生物学角度分析了参与多个肿瘤生物进程的关键靶基因;在实验中证实过表达miR-3661可以显著抑制肝癌细胞HepG2的增殖过程(P-value=0.001 46)。miR-3661受p53直接调控,其靶基因显著富集于多种肿瘤相关生物进程与信号通路,过表达miR-3661可显著抑制肝癌细胞增殖。  相似文献   

9.
微RNA(microRNA,miRNA)是一类长约20~22nt的单链非编码RNA,它广泛存在于真核生物中并具有多种生物学功能。研究发现,miRNA在多种肿瘤细胞中表达异常,提示miRNA可能与肿瘤发生有关。MiRNA可以调控其靶基因参与的信号通路,而信号通路的异常和紊乱则在肿瘤的发生中起至关重要的作用。因此,有关miRNA调控信号通路的研究将为肿瘤的诊断和治疗带来福音。  相似文献   

10.
衰老是一个复杂的生物学过程,涉及到有害物质的积累导致整体生命功能的下降,生物的生理状况逐渐恶化,最终导致疾病和死亡。黑腹果蝇Drosophila melanogaster作为最重要的遗传学工具之一,近年来常被用于衰老的研究,以阐明衰老的发生与发展机制。本文结合本实验室的研究进展,综述了果蝇寿命调控的生理生化机制,如保幼激素、胰岛素/类胰岛素生长因子、TOR信号网络、腺苷酸活化蛋白激酶信号通路、热量限制和饮食限制、氧化应激、小分子RNA以及鞘脂类代谢都会对果蝇的寿命产生影响。除此之外,基因调控网络研究还能够发现潜在的与长寿相关的基因组区域,将有可能发现更多寿命相关基因。以果蝇为模式生物的研究,对于其他昆虫衰老、存活等种群生物学问题的研究以及天敌、益虫保育和害虫控制,具有十分重要的指导意义。  相似文献   

11.
Numbers of emerging evidence suggest that variable microRNA (miRNA) expression facilitates the aging process. In this study, we distinguished aberrant miRNA expression in aged skin and explored the biological functions and potential mechanism of upregulated miR-302b-3p. At first, miRNA microarray analysis was examined to explore miRNA expression profiling in the skin of aging mice model by D -galactose (d -gal) injection. We identified 29 aberrant miRNAs in aged mice skin. Next, KEGG enrichment analysis was conducted with DIANA-miPath v3.0, which was revealed that enrichment pathways involved in such processes as extracellular matrix-receptor interaction, MAPK signaling pathway, and mammalian target of rapamycin (mTOR) signaling pathway. The target genes of deregulated miRNAs were predicted from four bioinformatic algorithms (miRDB, Targetscan, miRwalk, and Tarbase). The interaction network of miRNAs and their targets were visualized using Cytoscape software. As a result, we found that some hub genes (including JNK2, AKT1/2/3, PAK7, TRPS1, BCL2L11, and IKZF2) were targeted by 12 potential miRNAs (including miR-302b-3p, miR-291a-5p, miR-139-3p, miR-467c-3p, miR-186-3p, etc.). Subsequently, we identified five upregulated miRNA via quantitative polymerase chain reaction and all of them were confirmed increased significantly in aged skin tissues compared with young control tissues. Among them, high expression of miR-302b-3p was verified in both aged skin tissues and senescence fibroblasts. Furthermore, miR-302b-3p mimic accelerated skin fibroblast senescence and suppressed the longevity-associated gene Sirtuin 1(Sirt1) expression, whereas miR-302b-3p inhibitor could delay skin fibroblast senescence and contribute Sirt1 expression. In addition, we demonstrated that c-Jun N-terminal kinase 2(JNK2) is a direct target of miR-302b-3p by a luciferase reporter assay. An inverse correlation was verified in fibroblasts between miR-302b-3p and JNK2. Most importantly, siRNA JNK2 confirmed that low expression of JNK2 could accelerate fibroblasts senescence. In conclusion, our results indicated that overexpressed miR-302b-3p plays an important biological role in accelerating skin aging process via directly targeting JNK2 gene.  相似文献   

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Background/Aims

MicroRNAs (miRNAs) are short non-coding regulatory RNAs that control gene expression and play an important role in cancer development and progression. However, little is known about the role of miRNAs in chronic myeloid leukemia (CML). Our objective is to decipher a miRNA expression signature associated with CML and to determine potential target genes and signaling pathways affected by these signature miRNAs.

Results

Using miRNA microarrays and miRNA real-time PCR we characterized the miRNAs expression profile of CML cell lines and patients in reference to non-CML cell lines and healthy blood. Of all miRNAs tested, miR-31, miR-155, and miR-564 were down-regulated in CML cells. Down-regulation of these miRNAs was dependent on BCR-ABL activity. We next analyzed predicted targets and affected pathways of the deregulated miRNAs. As expected, in K562 cells, the expression of several of these targets was inverted to that of the miRNA putatively regulating them. Reassuringly, the analysis identified CML as the main disease associated with these miRNAs. MAPK, ErbB, mammalian target of rapamycin (mTOR) and vascular endothelial growth factor (VEGF) were the main molecular pathways related with these expression patterns. Utilizing Venn diagrams we found appreciable overlap between the CML-related miRNAs and the signaling pathways-related miRNAs.

Conclusions

The miRNAs identified in this study might offer a pivotal role in CML. Nevertheless, while these data point to a central disease, the precise molecular pathway/s targeted by these miRNAs is variable implying a high level of complexity of miRNA target selection and regulation. These deregulated miRNAs highlight new candidate gene targets allowing for a better understanding of the molecular mechanism underlying the development of CML, and propose possible new avenues for therapeutic treatment.  相似文献   

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Abstract

The prognostic, diagnostic and therapeutic value of microRNA (miRNA) expression aberrations in renal fibrosis has been studied in recent years. However, the miRNA expression profiling efforts have led to inconsistent results between the studies. The aim of this study was to perform a meta-analysis on the renal fibrosis miRNA expression profiling studies to identify candidate diagnostic biomarkers. We performed comprehensive literature searches in several databases to identify miRNA expression studies of renal fibrosis in animal models and humans. The miRNAs expression data were extracted from 20 included studies, and both miRNA vote-counting strategy and Robust Rank Aggregation method were utilized to identify significant miRNA meta-signatures. The predicted and validated targets of miRNA meta-signature were obtained by using MultiMiR package in 11 databases. Then a gene set enrichment analysis (KEGG, PANTHER pathways and GO processes) were carried out with GeneCodis web tool to recognize pathways that are most strongly influenced by modified expressions of these miRNAs. We recognized in both meta-analysis approaches a significant miRNA meta-signature of five up-regulated (miR-142-3p, miR-223-3p, miR-21-5p, miR-142-5p and miR-214-3p) and two down-regulated (miR-29c-3p and miR-200a-3p) miRNAs. Enrichment analysis confirmed that miRNA meta-signature cooperatively target functionally related genes in signalling and developmental pathways in renal fibrosis. This meta-analysis identified seven highly significant and consistently dysregulated miRNAs from 20 datasets, as the focus of future investigations to discover their potential influence to renal fibrosis and their clinical utility as biomarkers and/or as therapeutic mediators against chronic kidney disease..  相似文献   

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MicroRNA (miRNA) played an important role in the progression of liver cancer and its diagnostic and prognostic values have been frequently studied. However, different microarray techniques and small sample size led to inconsistent findings in previous studies. We performed a comprehensive meta-analysis of a total of 357 tumor and 283 noncancerous samples from 12 published miRNA expression studies using robust rank aggregation method. As a result, we identified a statistically significant meta-signature of five upregulated (miR-221, miR-222, miR-93, miR-21 and miR-224) and four downregulated (miR-130a, miR-195, miR-199a and miR-375) miRNAs. We then conducted miRNA target prediction and pathway enrichment analysis to find what biological process these miRNAs might affect. We found that most of the pathways were frequently associated with cell signaling and cancer pathogenesis. Thus these miRNAs may involve in the onset and progression of liver cancer and serve as potential diagnostic and therapeutic targets of this malignancy.  相似文献   

19.
Expression of MicroRNAs in Cotton   总被引:3,自引:0,他引:3  
  相似文献   

20.
【目的】探讨禾谷缢管蚜 Rhopalosiphum padi (Linnaeus)鞣化激素基因的发育表达模式及功能。【方法】采用转录组测序得到禾谷缢管蚜鞣化激素基因bursicon-α 和 bursicon-β cDNA序列。通过实时荧光定量PCR方法,分析该基因的发育表达模式。利用RNA干扰(RNA interference, RNAi)介导 bursicon-α 和bursicon-β 沉默,分析鞣化激素的功能。【结果】序列分析结果显示,禾谷缢管蚜鞣化激素α亚基基因(bursicon-α)cDNA序列开放阅读框为480 bp,编码159个氨基酸残基;β亚基基因(bursicon-β)cDNA序列开放阅读框为417 bp,编码138个氨基酸残基。时序表达分析表明,鞣化激素两个亚基基因在禾谷缢管蚜整个发育期均有表达,以1龄若蚜期表达量最高;成蚜有翅个体中表达量显著高于无翅个体。RNAi介导的 bursicon-α 和 bursicon-β 沉默均能显著抑制禾谷缢管蚜成蚜表皮的黑化。【结论】研究结果表明,鞣化激素在禾谷缢管蚜体壁黑化中发挥着重要作用。该结果为进一步研究鞣化激素在蚜虫生长发育过程中的生理功能提供了基础资料。  相似文献   

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