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1.
The standard method for the storage and preservation of RNA has been at ultra-low temperatures. However, reliance on liquid nitrogen and freezers for storage of RNA has multiple downsides. Recently new techniques have been developed for storing RNA at room temperature utilizing desiccation and are reported to be an effective alternative for preserving RNA integrity. In this study we compared frozen RNA samples stored for up to one year to those which had been desiccated using RNAstable (Biomatrica, Inc., San Diego, CA) and stored at room temperature. RNA samples were placed in aliquots and stored after desiccation or frozen (at −80°C), and were analyzed for RNA Integrity Number (RIN), and by qPCR, and RNA sequencing. Our study shows that RNAstable is able to preserve desiccated RNA samples at room temperature for up to one year, and that RNA preserved by desiccation is comparable to cryopreserved RNA for downstream analyses including real-time-PCR and RNA sequencing.  相似文献   

2.
在绝大多数人类基因中都存有非蛋白编码RNA(non-coding RNA,ncRNA).长链内含子ncRNA(long intronic non-coding RNA,lincRNA)是众多ncRNA中的一员,而内含子区域则是具有调节性的ncRNA的关键源.长链内含子ncRNA可通过作为短链RNA的前体、或是与启动子元件的交互作用、组蛋白甲基化修饰、蛋白编码RNA选择性剪接以及蛋白质编码RNA的稳定性,从而对基因表达进行调控.至此我们可以逐步揭示出基于长链内含子ncRNA的调控系统模式.  相似文献   

3.
宿娅  张晨芳  魏强  李广林 《西北植物学报》2014,34(11):2357-2365
长链非编码RNA(long noncoding RNAs,lncRNAs)是一类长度超过200nt的非编码RNA分子,通过信号分子、诱饵分子、引导分子、支架分子等4种方式在转录水平和转录后水平调控基因的表达。lncRNAs的表达水平相对于蛋白编码基因较低,但它们在X染色体沉默、基因组印迹、染色体修饰、转录激活、转录干扰以及核内运输等方面具有重要的功能。相对于研究较多的非编码小RNA,lncRNAs的功能目前尚不完全清楚。该文从lncRNAs的起源、分类、分子机制、功能和进化等方面综述了lncRNAs的研究进展,为进一步探究lncRNAs的功能和作用机制提供依据。  相似文献   

4.
转座子是基因组的重要组分, 影响基因组的结构与稳定。长链非编码RNA (lncRNA)在转录及转录后水平调控多个生物学过程。转座子与lncRNA是物种进化的重要驱动力。含有转座子序列的lncRNA在自然界广泛存在。该文对植物lncRNA的发掘策略和功能研究进行概述, 围绕植物转座子来源lncRNA (TE-lncRNA)的分布和功能展开综述, 并对植物TE-lncRNA的调控机制、表观修饰及育种潜势等进行探讨与展望。  相似文献   

5.
转座子来源的植物长链非编码RNA   总被引:1,自引:0,他引:1  
转座子是基因组的重要组分, 影响基因组的结构与稳定。长链非编码RNA (lncRNA)在转录及转录后水平调控多个生物学过程。转座子与lncRNA是物种进化的重要驱动力。含有转座子序列的lncRNA在自然界广泛存在。该文对植物lncRNA的发掘策略和功能研究进行概述, 围绕植物转座子来源lncRNA (TE-lncRNA)的分布和功能展开综述, 并对植物TE-lncRNA的调控机制、表观修饰及育种潜势等进行探讨与展望。  相似文献   

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长链非编码RNA(long non coding RNA, lncRNA)在多个水平参与调节机体的各项基础生物进程,其功能紊乱常伴随疾病的发生。鉴定lncRNA的生物学功能已成为近年来的研究热点。然而,目前从各种真核生物高通量测序中鉴定的几十万个lncRNA中,只有极少数的功能已被实验验证,这对于该领域的深入研究是个巨大的挑战。因此,许多科研机构都建立了lncRNA数据库,并且持续周期性更新,这为研究者共享、注释和分析lncRNA功能提供了十分有效的工具。本文从lncRNA原始资源整合、筛选、鉴定及功能分析和lncRNA与人类疾病等4个方面介绍各lncRNA数据库资源的最新特征和应用范围。这为研究者在选择不同数据库资源进行lncRNA鉴定和分析时提供参考。  相似文献   

8.
With the rising interest in the regulatory functions of long non-coding RNAs (lncRNAs) in complex human diseases such as cardiovascular diseases, there is an increasing need in public databases offering comprehensive and integrative data for all aspects of these versatile molecules. Recently, a variety of public data repositories that specialized in lncRNAs have been developed, which make use of huge high-throughput data particularly from next-generation sequencing (NGS) approaches. Here, we provide an overview of current lncRNA databases covering basic and functional annotation, lncRNA expression and regulation, interactions with other biomole-cules, and genomic variants influencing the structure and function of lncRNAs. The prominent lncRNA antisense noncoding RNA in the INK4 locus (ANRIL), which has been unequivocally associated with coronary artery disease through genome-wide association studies (GWAS), serves as an example to demonstrate the features of each individual database.  相似文献   

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随着高通量测序技术的飞速发展,越来越多的lncRNAs在植物中被发现,并具有生物学功能。lncRNAs是长度大于200个核苷酸且不具备编码蛋白质功能的一类RNA分子。目前lncRNAs在动物中的功能、作用机制等方面的研究较深入,lncRNAs不仅在表观遗传水平、转录水平、转录后水平上调控基因的表达,也参与诸多生命过程调控如基因组印迹、染色体重塑、转录激活等。在植物中虽有关于lncRNAs的研究,但由于缺乏有效的技术方法而相对滞后。该文就近几年来国内外关于植物lncRNAs的来源、结构特征、分类、功能等方面的研究进展进行综述,为进一步理解和研究植物中lncRNAs的功能和分子机制提供参考。  相似文献   

11.
B:LS ribozyme, a trans-variant of naturally occurring HDV ribozyme, has been constructed. The ribozyme consists of a substrate-containing LS chain and a catalytic B chain and differs from previously constructed trans-ribozymes in the length and nucleotide sequence of its oligonucleotide chains (33 and 34 bp, respectively). The chains readily associate with each other at room temperature, at which the LS cleavage reaction is negligible, which makes it possible to investigate association of the intact chains. At the same time, the self-cleavage rate constant for the trans-ribozyme B:LS at 50°C is close to those for the previously studied permuted cis-ribozymes, especially the LSB variant. In addition, the dependence of trans-ribozyme on reaction conditions (Mg2+ concentration, pH, and temperature) resembled that of cis-ribozyme. Similar to other trans-ribozymes, B:LS ribozyme demonstrated the ability for multiple turnover of the B strand with an excess of the substrate LS chain. The kinetic model of the self-cleavage reaction for B:LS is presented at http://www.cardio.ru/labgen/RZ_r.html. Taken together, our results show that the novel trans-variant of HDV ribozyme can be used as a model for analyzing the process of HDV ribozyme self-cleavage.  相似文献   

12.
基因印记是一种表观遗传调控机制,在二倍体哺乳动物的发育过程中,基因印记可以调控来自亲代的等位基因差异表达。非编码RNA是不编码蛋白质的RNA,它在RNA水平调控基因表达。研究表明大多数印记基因中存在长非编码RNA(长度>200nt的非编码RNA)的转录,长非编码RNA主要通过顺式的转录干扰作用来实现基因印记。同时基因印记及其相关的长非编码RNA异常表达与许多先天疾病相关,迄今已发现数十种人类遗传疾病与基因印记有关,而lncRNA引起的基因印记在疾病的发生和治疗中起着重要作用。  相似文献   

13.
近年来,表观遗传学(epigenetics)备受关注.表观遗传调控的方式主要包括DNA甲基化、组蛋白修饰和染色质重塑等.ENCODE计划及随后的研究发现,人类基因组中仅有很小一部分DNA序列负责编码蛋白质,而其余大部分被转录为非编码RNA(non-codingRNA,ncRNA).其中长链非编码RNA(long non-codingRNA,lncRNA)是一类长度大于200nt并且缺乏蛋白质编码能力的RNA分子.越来越多的研究表明,lncRNAs能够通过表观遗传调控、转录调控以及转录后调控等多个层面调节基因的表达,从而参与细胞增殖、分化和凋亡等多种生物学过程.本文将着重综述lncRNAs在表观遗传调控中的作用及其最新的研究进展.  相似文献   

14.
长链非编码RNA (Long non-coding RNA,lncRNAs)是RNA的其中一员,其结构类似于mRNA,但由于没有保守的开放阅读框,因此不能编码蛋白质。LncRNAs曾被认为是基因转录后的异常现象或噪音,没有任何的生物学功能。随着研究的进一步深入,发现其可作为重要的调控分子参与人类正常或异常的生物学活动过程。LncRNAs与神经系统功能、机体代谢紊乱以及肿瘤等疾病的发生发展密切相关。异常表达于宫颈癌的lncRNAs通过发挥抑制肿瘤或促进肿瘤的作用,参与调控宫颈癌的各个生物学过程。文中结合最新报道就lncRNAs在宫颈癌的异常调节、分子调节机制和潜在临床应用方面进行综述。  相似文献   

15.
前列腺癌是全球发病率第二的男性恶性肿瘤,近年来我国前列腺癌的发病率显著上升。最近,大量研究发现,长非编码RNA表达水平的改变与前列腺癌的发生、发展、诊断、治疗和预后密切相关。该文就长非编码RNA与前列腺癌的关系及相关机理进行综述,有助于读者了解长非编码RNA在前列腺癌发病过程中的重要性,为前列腺癌的综合防治提供线索。  相似文献   

16.
Earlier we showed by affinity cross-linking of initiating substrates to Escherichia coli primase that one or more of the residues Lys211, Lys229, and Lys241 were involved in the catalytic center of the enzyme (A. A. Mustaev and G. N. Godson, J. Biol. Chem. 270:15711-15718, 1995). We now demonstrate by mutagenesis that only Lys241 but not Lys211 and Lys229 is part of the catalytic center. Primase with a mutation of Arg to Lys at position 241 (defined as K241R-primase) is almost unable to synthesize primer RNA (pRNA) on the single-stranded DNA-binding protein (SSB)/R199G4oric template. However, it is able to synthesize a pppApG dimer plus trace amounts of 8- to 11-nucleotide (nt) pRNA transcribed from the 5' CTG 3' pRNA initiation site on phage G4 oric DNA. The amount of dimer synthesized by K241R-primase is similar to that synthesized by the wild-type primase, demonstrating that the K241R mutant can initiate pRNA synthesis normally but is deficient in chain elongation. In the general priming system, the K241R-primase also can synthesize only the dimer and very small amounts of 11-nt pRNA. The results of gel retardation experiments suggested that this deficiency in pRNA chain elongation of the K241R mutant primase is unlikely to be caused by impairment of the DNA binding activity. The K241R mutant primase, however, can still prime DNA synthesis in vivo and in vitro.  相似文献   

17.
本文重点概述LncRNA参与细胞分化的相关机制,列举了LncRNA在不同细胞系中参与调控的各种作用方式,如LncRNA参与维持胚胎干细胞多潜能状态、胚胎干细胞分化、神经细胞分化、肌肉分化、表皮细胞分化、成骨细胞分化、脂肪生成的机制等.  相似文献   

18.
Long non-coding RNAs (lncRNAs) have gained massive attention in recent years as a potentially new and crucial layer of gene regulation. LncRNAs are prevalently transcribed in the genome, but their roles in gene regulation and disease development are largely unknown. HOX antisense intergenic RNA (HOTAIR), a lncRNA located in the HOXC locus, has been shown to repress HOXD gene expression and promote breast cancer metastasis. Mechanistically, HOTAIR interacts with and recruits polycomb repressive complex 2 (PRC2) and regulates chromosome occupancy by EZH2 (a subunit of PRC2), which leads to histone H3 lysine 27 trimethylation of the HOXD locus. Moreover, HOTAIR is pervasively overexpressed in most human cancers compared with noncancerous adjacent tissues. This review summarizes the studies on the HOTAIR lncRNA over the past 6 years.  相似文献   

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长链非编码RNA (long noncoding RNA, lncRNA)是多种复杂有机体转录组中最主要的一类转录本. lncRNA在各种生物之间序列保守性差、表达量普遍比较低.与编码基因相比,lncRNA有相似的启动子区域以及剪切位点,具有较好的细胞和组织特异性分布,尤其在神经系统中具有较为丰富的表达,提示它们在神经系统中具有不可忽视的作用.本文围绕近几年lncRNA在神经系统方面的最新研究成果,总结了lncRNA对中枢和外周神经系统发育以及对神经系统功能等方面的调控作用及机制.同时展望了有关lncRNA研究的新理念和新技术及对未来神经科学研究的推动作用.  相似文献   

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