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经过多年探索,对肝脏疾病的研究已取得重大进展,但其发病机制复杂,目前仍未完全阐明。长链非编码RNA(long noncoding RNA,lnc RNA)是非编码RNA中的一种,不具有蛋白编码功能。研究发现,lnc RNA参与调控多种肝脏疾病的生理和病理过程,能在表观遗传、转录和转录后水平发挥重要的调节作用,提示我们lnc RNA可能成为一个新的治疗突破口。本文针对当前lnc RNA在肝疾病中的功能及作用机制进行综述。首先介绍了lnc RNA的功能,再将计算机与生物学相结合概括lnc RNA的四个研究步骤,包括筛选、鉴定、预测及验证,重点阐述lnc RNA与肝纤维化、肝硬化、肝癌及肝移植的近期研究成果,并进一步探讨未来lnc RNA在肝病中的研究方向和应用前景。充分了解肝病的研究现状以及与肝病发生发展有关的lnc RNA分子和生物学功能,为后续研究肝病的机制和治疗提供理论依据和借鉴。  相似文献   

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长链非编码RNA (long non-coding RNA,lncRNA)是一类转录本长度大于200 bp的非编码RNA,可作为人类基因组中一类重要的调控分子通过多种方式发挥其生物学功能.近年来的研究表明,lncRNA也可以作为一种竞争性内源性RNA (competing endogenous RNA, ceRNA) 与miRNA相互作用,参与靶基因的表达调控,并在肿瘤的发生发展中发挥重要的作用.本综述在简要介绍lncRNA功能研究现状和主要研究方法的基础上,进一步分析了lncRNA与miRNA之间的互相调控关系及其在肿瘤发生发展中的作用,以便为后续的研究提供新的思路.  相似文献   

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BAT (brown adipose tissue) is specialized to burn fatty acids for heat generation and energy expenditure to defend against cold and obesity. Accumulating studies have demonstrated that manipulation of BAT activity through various strategies can regulate metabolic homoeostasis and lead to a healthy phenotype. Two classes of ncRNA (non-coding RNA), miRNA and lncRNA (long non-coding RNA), play crucial roles in gene regulation during tissue development and remodelling. In the present review, we summarize recent findings on regulatory role of distinct ncRNAs in brown/beige adipocytes, and discuss how these ncRNA regulatory networks contribute to brown/beige fat development, differentiation and function. We suggest that targeting ncRNAs could be an attractive approach to enhance BAT activity for protecting the body against obesity and its pathological consequences.  相似文献   

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长链非编码RNA(Long non-coding RNA,lncRNA)因参与多个层级上的生物进程而成为当下生命科学领域的研究热点.LncRNA可以与DNA、RNA和蛋白质等生物分子结合,并进一步影响靶基因的转录、翻译以及翻译后修饰等过程,从而发挥在细胞生理代谢过程中的调控作用.目前研究显示,lncRNA通过多种途径在...  相似文献   

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Jiang  Lan  Yang  Qiao  Yu  Jianqiu  Liu  Xuanzhen  Cai  Yansen  Niu  Lili  Li  Jing 《Functional & integrative genomics》2021,21(5-6):543-555

Long non-coding RNA (lncRNA) represents a new direction to identify expression profiles and regulatory mechanisms in various organisms. Here, we report the first dataset of lncRNAs of the golden snub-nosed monkey (GSM), including 12,557 putative lncRNAs identified from seven organs. Compared with mRNA, GSM lncRNA had fewer exons and isoforms, and longer length. LncRNA showed more obvious tissue-specific expression than mRNA. However, for the top ten most abundant genes in each organ, mRNAs expression was more tissue-specific than lncRNAs. By identification of specifically expressed lncRNAs and mRNAs in each organ, it indicates that the expression of SEG-lncRNA (specifically expressed lncRNA) and SEG-mRNA (specifically expressed mRNA) had high correlation. In particular, combined our lncRNA and mRNA data, we identified 92 heart SEG-lncRNAs targeted ten mRNA genes in the oxidative phosphorylation pathway and upregulated the expression of these target genes such as ND4, ATP6, and ATP8. These may contribute to GSM adaption to its high-elevation environment. We also identified 171 liver SEG-lncRNAs, which targeted 27 genes associated with the metabolism of xenobiotics and leaded to high expression of these target genes in liver. These lncRNAs may play important roles in GSM adaptation to a folivory diet.

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长链非编码RNA (lncRNA)是一类长度大于200个核苷酸且不编码蛋白质的非编码RNA, 主要由RNA聚合酶II转录生成, 大量存在于生物体内并具有多种生物学功能。AtR8 lncRNA是拟南芥(Arabidopsis thaliana)中RNA聚合酶III转录的长链非编码RNA。前期研究发现, 水杨酸(SA)处理诱导萌发种子中AtR8 lncRNA的表达, AtR8 lncRNA缺失抑制SA胁迫下的种子萌发。进一步研究发现, AtR8 lncRNA转录区域内存在保守的盐胁迫响应元件(TCTTCTTCTTTA); NaCl处理抑制萌发种子中AtR8 lncRNA的表达; 与野生型相比, 高浓度NaCl处理明显抑制了atr8 (AtR8 lncRNA部分缺失型拟南芥)种子萌发。研究结果表明, AtR8 lncRNA在拟南芥种子萌发期的盐胁迫中起重要作用。  相似文献   

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长链非编码RNA(Long non-coding RNA, lncRNA)是一类被定义为转录本的长度大于200 nt、没有蛋白编码能力的RNA转录本。研究表明,lncRNA在调节植物生长发育、表观遗传反应以及各种胁迫反应中起重要作用。但是与人类和动物相比,植物lncRNA的研究仍然处于起步阶段。目前,如何从大量的转录本中准确地挑选出lncRNA仍然是植物lncRNA研究领域的重要问题之一。本文构建了新的植物lncRNA和mRNA数据集,分析了数据集中植物lncRNA的序列及结构特征,提取了序列的k-mer频数信息、二级结构信息、开放阅读框信息以及序列的几何柔性等特征,基于SVM(Support Vector Machine, SVM)算法,用Jackknife检验对植物lncRNA进行了预测,并且计算了各种特征融合后对植物lncRNA预测结果的影响,准确率达到了96.14%。  相似文献   

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Long non-coding RNA (lncRNA) was reported to be a critical regulator of cellular homeostasis, but poorly understood in idiopathic pulmonary fibrosis (IPF). Here, we systematically identified a crucial lncRNA, p53-induced long non-coding RNA TP53 target 1 (TP53TG1), which was the dysregulated hub gene in IPF regulatory network and one of the top degree genes and down-regulated in IPF-drived fibroblasts. Functional experiments revealed that overexpression of TP53TG1 attenuated the increased expression of fibronectin 1 (Fn1), Collagen 1α1, Collagen 3α1, ACTA2 mRNA, Fn1, and Collagen I protein level, excessive fibroblasts proliferation, migration and differentiation induced by TGF-β1 in MRC-5 as well as PMLFs. In vivo assays identified that forced expression of TP53TG1 by adeno-associated virus 5 (AAV5) not only prevented BLM-induced experimental fibrosis but also reversed established lung fibrosis in the murine model. Mechanistically, TP53TG1 was found to bind to amount of tight junction proteins. Importantly, we found that TP53TG1 binds to the Myosin Heavy Chain 9 (MYH9) to inhibit its protein expression and thus the MYH9-mediated activation of fibroblasts. Collectively, we identified the TP53TG1 as a master suppressor of fibroblast activation and IPF, which could be a potential hub for targeting treatment of the disease.Subject terms: Long non-coding RNAs, Respiratory tract diseases  相似文献   

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肠道菌群数量庞大,种类繁多,被认为是一个独立的器官系统,是人体生理和代谢稳态的重要组成部分,肠道菌群的稳态失调以及某些代谢产物的分泌已被证实可以参与人体多种疾病的发生发展。同样,非编码RNA(ncRNA)数量庞大,种类较多,主要包括微小RNA(miRNA)、长链RNA(lncRNA)、环状RNA(circRNA)。ncRNA早期因无蛋白质编码能力未引起重视,随着研究的深入,认识到了其对多种疾病都具有重要的调控作用,近些年获得了更多的关注。目前,多项研究揭示了肠道菌群-ncRNA互作对多种疾病的发生、发展、诊断、治疗等方面的影响,二者互作可能是未来疾病防治的重要突破口。本文就肠道菌群与ncRNA的互作对不同疾病的作用进行综述,以期为疾病的防治提供参考。  相似文献   

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Long non-coding RNA (lncRNA) lnc-ISG20 has been found aberrantly up-regulated in the glomerular in the patients with diabetic nephropathy (DN). We aimed to elucidate the function and regulatory mechanism of lncRNA lnc-ISG20 on DN-induced renal fibrosis. Expression patterns of lnc-ISG20 in kidney tissues of DN patients were determined by RT-qPCR. Mouse models of DN were constructed, while MCs were cultured under normal glucose (NG)/high glucose (HG) conditions. The expression patterns of fibrosis marker proteins collagen IV, fibronectin and TGF-β1 were measured with Western blot assay. In addition, the relationship among lnc-ISG20, miR-486-5p, NFAT5 and AKT were analysed using dual-luciferase reporter assay and RNA immunoprecipitation. The effect of lnc-ISG20 and miR-486/NFAT5/p-AKT axis on DN-associated renal fibrosis was also verified by means of rescue experiments. The expression levels of lnc-ISG20 were increased in DN patients, DN mouse kidney tissues and HG-treated MCs. Lnc-ISG20 silencing alleviated HG-induced fibrosis in MCs and delayed renal fibrosis in DN mice. Mechanistically, miR-486-5p was found to be a downstream miRNA of lnc-ISG20, while miR-486-5p inhibited the expression of NFAT5 by binding to its 3'UTR. NFAT5 overexpression aggravated HG-induced fibrosis by stimulating AKT phosphorylation. However, NFAT5 silencing reversed the promotion of in vitro and in vivo fibrosis caused by lnc-ISG20 overexpression. Our collective findings indicate that lnc-ISG20 promotes the renal fibrosis process in DN by activating AKT through the miR-486-5p/NFAT5 axis. High-expression levels of lnc-ISG20 may be a useful indicator for DN.  相似文献   

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长链非编码RNA(long non-coding RNA,lncRNA)参与肿瘤的多种生理、病理进程.研究表明,lncRNA可通过与微小RNA (microRNA, mi RNA)反应元件相互作用,并与其他RNA分子形成竞争性内源RNA (competing endogenous RNA,ceRNA)的调控网络,参与基因的表达调控.lncRNA以ceRNA方式参与非小细胞肺癌(non-small cell lung cancer,NSCLC)的发生发展过程,为揭示NSCLC的分子机理开拓了新的思路,也为NSCLC的治疗提供新的靶点.本文在课题组前期发现NSCLC相关ceRNA基础上,主要讨论lncRNA作为ceRNA在NSCLC中高表达、低表达及治疗相关方面的作用.  相似文献   

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长链非编码RNA(long non-coding RNA,lncRNA),是一种长度大于200个核苷酸的调控性非编码RNA,能在转录水平、转录后水平及表观遗传水平等多个层面影响基因的表达。脂肪生成是一个复杂而有序的过程。大量研究表明,lncRNA在脂肪生成过程中扮演着重要角色,它可以影响脂质代谢及成脂分化等多种生物过程,从而间接影响肉品质。这对于提高畜禽肉品质、避免养殖业饲料过多转化成脂肪所导致的浪费以及对预防和治疗与脂肪代谢相关的疾病都具有重要意义。对lncRNA的基本特征、在动物脂肪沉积中的作用进展进行了综述,以期为培育优质畜禽,预防和治疗与脂肪代谢相关的疾病提供理论依据。  相似文献   

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Diabetic cardiomyopathy can cause cardiac dysfunction and eventually lead to heart failure and sudden death. Long noncoding RNA (lncRNA) Gas5 has been reported to play a function in cardiomyocyte. Here we studied the function of Gas5 on newborn mouse cardiomyocyte (NMC) apoptosis to detect its molecular mechanism. High-glucose treatment was implemented to induce the apoptosis of NMC in this study. And terminal deoxynucleotidyl transferase dUTP nick-end labeling assay, JC-1 assay, and flow cytometry analysis were conducted to know about the apoptosis of NMC when Gas5 and Tcf3 were silenced. Meanwhile, RNA pull-down assay and luciferase reporter assay were conducted to verify the binding of RNAs. Finally, rescue assay was implemented to evaluate the influence on apoptosis situation affected by competing endogenous RNA pathways. Tcf3 was found to bind to the Gas5 promoter to activate the expression of Gas5. Meanwhile, Gas5 and Tcf3 were both found to promote the apoptosis of NMC. Also, mmu-miR-320-3p could bind to Gas5 and Tcf3. Moreover, the Gas5/miR-320-3p/Tcf3 pathway was found to modulate the apoptosis of NMC. In conclusion, Tcf3-activated lncRNA Gas5 regulates NMC apoptosis in diabetic cardiomyopathy.  相似文献   

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The assertion that a significant portion of the mammalian genome has not been translated and that non-coding RNA accounts for over half of polyadenylate RNA have received much attention. In recent years, increasing evidence proposes non-coding RNAs (ncRNAs) as new regulators of various cellular processes, including cancer progression and nerve damage. Apoptosis is a type of programmed cell death critical for homeostasis and tissue development. Cancer cells often have inhibited apoptotic pathways. It has recently been demonstrated that up/down-regulation of various lncRNAs in certain types of tumors shapes cancer cells' response to apoptotic stimuli. This review discusses the most recent studies on lncRNAs and apoptosis in healthy and cancer cells. In addition, the role of lncRNAs as novel targets for cancer therapy is reviewed here. Finally, since it has been shown that lncRNA expression is associated with specific types of cancer, the potential for using lncRNAs as biomarkers is also discussed.  相似文献   

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Long–non-coding RNAs (lncRNA) AWPPH promotes the progression of liver and bladder cancer, indicating its oncogenic role. The current study aimed to explore the involvement of AWPPH in triple-negative breast cancer (TNBC). In the current study, we found that plasma levels of lncRNA AWPPH and microRNA-21 (miRNA-21) were upregulated in patients with TNBC than in healthy controls, and the upregulation of plasma lncRNA AWPPH and miRNA-21 distinguished early-stage patients with TNBC from healthy controls. Plasma levels of lncRNA AWPPH and miRNA-21 were significantly and positively correlated in both patients with TNBC and healthy controls. LncRNA AWPPH and miRNA-21 overexpression led to promoted cancer cells proliferation and improved cancer cell viability under carboplatin treatment, while lncRNA AWPPH small interfering RNA (siRNA) silencing played an opposite role. In addition, miRNA-21 overexpression attenuated the effects of lncRNA AWPPH siRNA silencing on of cancer cell behaviors. LncRNA AWPPH overexpression led to upregulated miRNA-21 in TNBC cells, while miRNA-21 overexpression also led to significantly upregulated lncRNA AWPPH expression. Therefore, lncRNA AWPPH and miRNA-21 may regulate cancer cell proliferation and chemosensitivity in TNBC by interacting with each other.  相似文献   

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长链非编码RNA (long non-coding RNA, lncRNA)种类众多,生物学功能复杂,与不同的分子相互作用,实现其特有的基因调控功能。可参与细胞核染色质结构的调控、m RNA的转录及转录后的加工运输、蛋白质的翻译等过程。此外,lncRNAs在邻近基因或靶基因的顺式调节机制中也发挥了重要作用,本综述主要对近年来lncRNAs通过顺式调节作用影响基因表达的机制进行综述。  相似文献   

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