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真核生物除了传统的帽依赖型翻译机制外,还存在内部核糖体进入位点(internal ribosome entry site, IRES)介导的翻译机制。雌激素受体2(estrogen receptor 2, ESR2)是雌激素受体家族成员之一,其编码的蛋白质在许多肿瘤中发挥重要的作用。ESR2蛋白的异常表达会导致众多肿瘤的发生,但其蛋白质翻译水平的调控机制至今仍不清楚。研究发现,在药物刺激的条件下,乳腺癌细胞MCF7/WT中ESR2蛋白的表达提高,但是其转录水平基本未见发生改变。猜测ESR2 mRNA 5′非翻译区(5′ untranslated region, 5′ UTR)具有IRES活性。为了验证ESR2 mRNA 5′ UTR是否具有IRES元件,将ESR2 mRNA 5′ UTR插入到双顺反子报告基因载体(pRF)中,构建pRL-ESR2-FL重组质粒载体,将其瞬时转染到HEK293细胞。结果发现,ESR2 mRNA 5′ UTR有假定的IRES活性。并且通过3个排除实验验证了ESR2 IRES活性与其5′ UTR中的内部潜在启动子(P<0.0001)、内部剪切位点以及核糖体通读无关。进一步对其序列进行截短研究发现,ESR2 IRES活性发挥的关键区域是3′端的439~468 nt,且ESR2 IRES最大活性的发挥依赖于5′ UTR序列的完整性。并且发现,ESR2 IRES活性的发挥不但需要特定的一级核酸序列,还要有稳定的二级茎环结构。此研究有望为ESR2蛋白调控的相关疾病提供新的药物治疗靶点。 相似文献
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PRDM13是锌指蛋白转录抑制因子(positive regulatory domain zinc finger protein,PRDM) 家族中的一员,其在细胞分化、肿瘤的发生和恶性转化中起着重要的作用。而对于PRDM13 基因侧翼序列是否含有内部核糖体进入位点(internal ribosome entry site, IRES)及其功能所知甚少。本研究对PRDM13 5′端的非翻译区(5′UTR)进行IRES结构与功能分析,探索其在细胞血清饥饿应激条件下对PRDM13翻译的影响。实验发现,在血清饥饿的条件下,肝癌细胞Bel7402/WT中PRDM13的蛋白质水平增加,但是其mRNA水平基本没有变化。将PRDM13 5′UTR的序列插入双顺反子的报告载体(pRL-FL)中,并且将构建的载体(pRL-PRDM13-FL)转染进细胞中,结果显示,PRDM13 5′UTR含有IRES,且发现PRDM13 5′UTR中的105 nt(53~157)对其IRES的功能至关重要。在帽依赖的翻译(cap-dependent translation)机制被抑制时,IRES这种机制可有效维持PRDM13蛋白合成。本研究提供了在细胞压力条件下调节PRDM13蛋白合成的一种新的解释。 相似文献
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RNA病毒翻译调控元件—内部核糖体进入位点(IRES) 总被引:1,自引:0,他引:1
真核生物大多数蛋白质合成采用了依赖帽子结构的翻译起始方式.但一组缺乏帽子构的RNA病毒的蛋白质合成起始是依赖其5′端非翻译区(untranslated region,UTR)翻译调控的顺式作用元件——内部核糖体进入位点(internal ribosome entry site, IRES).它 们能够在一些反式作用因子的辅助下,招募核糖体小亚基到病毒mRNA的翻译起始位点.前,依赖IRES元件翻译起始的RNA病毒在哺乳动物,无脊椎动物及植物中均有发现.因此,对RNA病毒IRES元件的深入研究,不仅有助于阐明相关疾病的发生机理,而且为工业应用和疾病治疗提供借鉴意义.本文对RNA病毒IRES元件发现、分类、结构与功能等作了综述. 相似文献
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蛋白质翻译起始通常有两种机制,一是依赖帽结构的翻译,另一种是依赖5′非翻译区的内部核糖体进入位点(IRES).在后一种方式中,在某些IRES反式作用因子,如La蛋白、多聚嘧啶串结合蛋白1等的参与下,直接招募核糖体小亚基到mRNA的翻译起始位点,启始翻译.研究发现,参与细胞生长、分化、细胞周期进程、凋亡和压力调控的相关蛋白中通常含有IRES元件.基于功能,我们提出假说:转录激活因子1(ATF1)的5′-UTR可能具有IRES活性.为验证假说,首先构建了含全长ATF1 5′-UTR的双荧光素酶报告质粒|质粒转染结合报告酶活性分析显示,ATF1 5′-UTR在Bel7402、HCT-8和HEK293细胞中表现出不同的IRES活性|而此IRES活性与5′-UTR中的隐藏启动子无关.同时还发现,ATF1 5′-UTR在NIH3T3细胞中却没有IRES活性.与此结果相一致,Western印迹检测ATF1在这几种细胞系中的表达.结果显示,Bel7402、HCT 8和HEK293中ATF1蛋白质表达水平较高,而在NIH3T3中却极低. ATF1 5′-UTR的系列5′-删除突变及报告酶分析证明,ATF1 5′-UTR的完整性对其IRES活性大小发挥重要作用|其中5′端的204 bp序列对其IRES活性贡献较大. RNA-蛋白免疫共沉淀实验揭示,ATF1 5′-UTR可与La和PTBP1蛋白结合|抑制La和PTBP1蛋白质的表达,并可减低HEK293细胞中ATF1蛋白质表达水平.这些结果提示,La和PTBP1蛋白(两种ITAFs)为ATF1 5′-UTR发挥IRES活性所必需.总之,上述结果证明,ATF1 5′-UTR具有IRES活性,其活性发挥依赖与La和PTBP1蛋白的结合.上述发现为进一步研究La和PTBP1表达及亚细胞定位对ATF1 IRES调控机制的影响奠定了基础. 相似文献
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【背景】暹罗炭疽菌(Colletotrichum siamense)是橡胶炭疽病害的主要致病菌,严重制约着天然橡胶产量。在植物致病真菌中广泛存在同源异型盒转录因子,其参与调控真菌无性生殖、侵染和代谢等诸多方面。【目的】明确在暹罗炭疽菌中鉴定的一个同源异型盒转录因子CsHtf1的生物学功能。【方法】利用同源重组的方法获得Cshtf1基因的敲除突变株,并对其营养生长、孢子产生和致病性等表型进行分析。【结果】Cshtf1基因编码600个氨基酸且含有1个HOX结构域;与野生型相比,Cshtf1敲除突变株营养生长和致病性无显著差异,而突变株分生孢子产量显著降低且黑色素产量增加。【结论】CsHtf1参与调控暹罗炭疽菌的分生孢子及黑色素产生。 相似文献
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翻译水平的调控是真核基因表达调控的重要环节.近年来的研究表明,许多真核基因的翻译依赖于RNA5′端非编码区的结构元件.一些小结构元件,如铁离子反应元件,具有1个茎环结构,由铁离子介导控制转铁蛋白的翻译.核糖开关通过结合特定代谢分子在2种结构状态下切换,调控可变剪接和翻译起始.另1个高度结构化的mRNA元件是内部核糖体进入位点,通过富集核糖体和起始因子促进基因的表达.本文综述了依赖于小结构元件、内部核糖体进入位点和核糖开关的真核基因翻译起始调控相应的研究成果和研究方法.对于研究的前景以及可能存在的挑战也作出阐述. 相似文献
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翻译水平的调控是真核基因表达调控的重要环节.近年来的研究表明,许多真核基因的翻译依赖于RNA 5′端非编码区的结构元件.一些小结构元件,如铁离子反应元件,具有1个茎环结构,由铁离子介导控制转铁蛋白的翻译. 核糖开关通过结合特定代谢分子在2种结构状态下切换,调控可变剪接和翻译起始.另1个高度结构化的mRNA元件是内部核糖体进入位点,通过富集核糖体和起始因子促进基因的表达.本文综述了依赖于小结构元件、内部核糖体进入位点和核糖开关的真核基因翻译起始调控相应的研究成果和研究方法.对于研究的前景以及可能存在的挑战也作出阐述. 相似文献
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目的:构建猪链球菌2型强毒株05ZYH33转录调控因子Rgg的基因敲除突变体,观察其生物学性状,并在动物感染实验中比较敲除株与野生株的毒力差异,为进一步研究猪链球菌转录调控因子在致病中的作用提供实验基础。方法:分别以猪链球菌2型05ZYH33基因组和pSET1质粒为模板,扩增基因SSU05_1997两侧各约500 bp的片段为上下游同源臂,氯霉素(Cm)抗性基因为中间片段,采用重叠PCR方法连接3个片段;连接产物先克隆到T载体上,再经过酶切克隆到温度敏感自杀载体pSET4S上;将构建的基因敲除载体pSET4S-1997电转化入05ZYH33感受态细胞,通过改变培养温度筛选出基因敲除突变体05Z33△rgg;对敲除株和野生株的生物学性状及小鼠和猪的致病性进行了初步比较。结果:PCR分析和测序结果均显示基因SSU05_1997完全被Cm抗性基因所替代,基因敲除突变体构建成功;05ZYH33△rgg对小鼠和猪的致病性与野生株相比无明显差异。结论:转录调控因子Rgg可能和猪链球菌2型的毒力无关。 相似文献
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目的:探讨G蛋白偶联受体(G protein-coupled receptor,TGR5)和尾型同源盒2(Caudal type homeobox 2,CDX2)在胃黏膜肠化生(Intestinal Metaplasia,IM)及胃癌中的表达和意义。方法:采用免疫组织化学染色法检测TGR5和CDX2在57例慢性胃炎、85例IM、98例胃癌组织中的表达。比较各组间TGR5和CDX2的表达差异,并分析其与胃癌临床病理参数的关系及与胃癌患者预后的关系。利用Spearman秩相关检验分析TGR5和CDX2表达的相关性。结果:IM和胃癌组织中TGR5的高表达率分别为54.1%和58.2%,二者比较无显著差异(P0.05),但均显著高于慢性胃炎组织(P0.01)。TGR5高表达与胃癌患者TNM分期(III+IV期)(P=0.004)、淋巴结转移(P=0.046)及预后较差(P=0.006)相关。胃癌组织中CDX2的高表达率(30.6%)较IM组织(48.2%)显著降低(P0.05),但其均显著高于慢性胃炎组织(P0.01)。CDX2高表达与胃癌患者TNM分期(I+II期)(P=0.008)、无淋巴结转移(P=0.014)、预后较好(P=0.023)相关。TGR5和CDX2表达在慢性胃炎和IM中无相关性(P0.05),在胃癌中呈显著正相关(P=0.003)。结论:TGR5和CDX2在IM和胃癌组织中均显著上调,可能参与了IM和胃癌的发生发展。 相似文献
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Sangeeta Chatterjee Jayanta K. Pal 《Biology of the cell / under the auspices of the European Cell Biology Organization》2009,101(5):251-262
Protein synthesis is often regulated at the level of initiation of translation, making it a critical step. This regulation occurs by both the cis‐regulatory elements, which are located in the 5′‐ and 3′‐UTRs (untranslated regions), and trans‐acting factors. A breakdown in this regulation machinery can perturb cellular metabolism, leading to various physiological abnormalities. The highly structured UTRs, along with features such as GC‐richness, upstream open reading frames and internal ribosome entry sites, significantly influence the rate of translation of mRNAs. In this review, we discuss how changes in the cis‐regulatory sequences of the UTRs, for example, point mutations and truncations, influence expression of specific genes at the level of translation. Such modifications may tilt the physiological balance from healthy to diseased states, resulting in conditions such as hereditary thrombocythaemia, breast cancer, fragile X syndrome, bipolar affective disorder and Alzheimer's disease. This information tends to establish the crucial role of UTRs, perhaps as much as that of coding sequences, in health and disease. 相似文献
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Jesse Donovan 《Journal of molecular biology》2010,400(4):659-361
Selenocysteine (Sec) incorporation is an essential process required for the production of at least 25 human selenoproteins. This unique amino acid is co-translationally incorporated at specific UGA codons that normally serve as termination signals. Recoding from stop to Sec involves a cis-acting Sec insertion sequence element in the 3′ untranslated region of selenoprotein mRNAs as well as Sec insertion sequence binding protein 2, Sec-tRNASec, and the Sec-specific elongation factor, eEFSec. The interplay between recoding and termination at Sec codons has served as a focal point in researching the mechanism of Sec insertion, but the role of translation initiation has not been addressed. In this report, we show that the cricket paralysis virus intergenic internal ribosome entry site is able to support Sec incorporation, thus providing evidence that the canonical functions of translation initiation factors are not required. Additionally, we show that neither a 5′ cap nor a 3′ poly(A) tail enhances Sec incorporation. Interestingly, however, the presence of the internal ribosome entry site significantly decreases Sec incorporation efficiency, suggesting a role for translation initiation in regulating the efficiency of UGA recoding. 相似文献
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Archaeal translation initiation factor aIF2 can substitute for eukaryotic eIF2 in ribosomal scanning during mammalian 48S complex formation 总被引:1,自引:0,他引:1
Dmitriev SE Stolboushkina EA Terenin IM Andreev DE Garber MB Shatsky IN 《Journal of molecular biology》2011,413(1):106-114
Heterotrimeric translation initiation factor (IF) a/eIF2 (archaeal/eukaryotic IF 2) is present in both Eukarya and Archaea. Despite strong structural similarity between a/eIF2 orthologs from the two domains of life, their functional relationship is obscure. Here, we show that aIF2 from Sulfolobus solfataricus can substitute for its mammalian counterpart in the reconstitution of eukaryotic 48S initiation complexes from purified components. aIF2 is able to correctly place the initiator Met-tRNAi into the P-site of the 40S ribosomal subunit and accompany the entire set of eukaryotic translation IFs in the process of cap-dependent scanning and AUG codon selection. However, it seems to be unable to participate in the following step of ribosomal subunit joining. In accordance with this, aIF2 inhibits rather than stimulates protein synthesis in mammalian cell-free system. The ability of recombinant aIF2 protein to direct ribosomal scanning suggests that some archaeal mRNAs may utilize this mechanism during translation initiation. 相似文献
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Caenorhabditis elegans is a powerful in vivo model in which transgenesis is highly developed. However, while the analysis of biological phenomena often require the expression of more than one protein of interest, no reliable tool exists to ensure efficient concomitant and equivalent expression of more than two polypeptides from a single promoter. We report the use of viral 2A peptides, which trigger a “ribosomal-skip” or “STOP&GO” mechanism during translation, to express multiple proteins from a single vector in C. elegans. Although none of the viruses known to infect C. elegans contain 2A-like sequences, our results show that 2A peptides allow the production of separate functional proteins in all cell types and at all developmental stages tested in the worm. In addition, we constructed a toolkit including a 2A-based polycistronic plasmid and reagents to generate 2A-tagged fosmids. 2A peptides constitute an important tool to ensure the delivery of multiple polypeptides in specific cells, enabling several novel applications such as the reconstitution of multi-subunit complexes. 相似文献