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1.
LPLUNC1在正常的鼻咽组织及人胚鼻咽组织中高表达,而在71%的鼻咽癌中表达下调或缺失,是与鼻咽癌的发生发展密切相关的新基因.通过研究LPLUNC1基因对鼻咽癌细胞系HNE1的影响,进一步确定其与鼻咽癌发生发展的关系.将LPLUNC1基因全长cDNA克隆入pcDNA3.1( )真核表达载体中,通过脂质体介导稳定转染入LPLUNC1低表达鼻咽癌细胞系HNE1中,通过RT-PCR及RNA印迹筛选LPLUNC1高表达的细胞株,并利用细胞生长曲线、MTT、BrdU掺入、流式细胞仪检测、软琼脂集落形成实验及裸鼠成瘤等实验,研究了LPLUNC1对鼻咽癌细胞系HNE1细胞生长、增殖的影响.结果发现,稳定转染LPLUNC1的HNE1细胞的生长速度明显减慢,在MTT与BrdU掺入实验发现LPLUNC1可明显地抑制鼻咽癌细胞的增殖,并且通过流式细胞仪检测也发现,LPLUNC1基因可明显延缓HNE1细胞的细胞周期进程,使G0/G1期细胞增多而S期细胞相对减少.进一步通过软琼脂集落形成及裸鼠成瘤实验发现,LPLUNC1稳定转染后的HNE1细胞集落形成率与集落的大小均小于空白载体细胞,同时能明显地抑制HNE1细胞的体外成瘤.结果表明,LPLUNC1基因能明显抑制鼻咽癌细胞HNE1的生长增殖,是鼻咽癌发生发展中的重要候选抑瘤基因之一.  相似文献   

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 NGX6 基因是我室利用定位候选克隆策略,在鼻咽癌的高频杂合性缺失区9p21-22克隆的新基因.前期研究结果提示,它与鼻咽癌细胞的侵袭转移密切相关.为了进一步阐明其作用的结构基础,本研究成功构建了含NGX6基因及突变体的pCMV-myc瞬时和pcDNA3.1-his-myc(-)B稳定表达载体.通过脂质体转染技术,构建了NGX6及突变体的稳定表达细胞系5-8F.用免疫荧光试验和免疫电镜观察了NGX6在5-8F细胞中的亚细胞定位主要位于胞膜、核膜以及胞浆中的膜质结构,缺失突变的功能域对其定位没有明显的影响.基质胶侵袭试验和划痕试验研究了NGX6及突变体对细胞运动的影响.NGX6能抑制高转移潜能的鼻咽癌细胞5-8F的运动和侵袭能力,缺失胞内区(CYTO)后NGX6不能抑制5-8F细胞的运动和侵袭,提示CYTO可能是其发挥作用的重要功能域.  相似文献   

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上皮细胞逃避老化期是细胞永生化过程中一个重要分子事件,端粒酶活性表达是维持人染色体端粒长度、抑制细胞进入老化期的关键因素之一.我们利用最新的端粒酶PCR-ELISA半定量技术,检测永生化早期阶段人胚鼻咽上皮细胞中端粒酶表达的情况,探讨EB病毒在人胚鼻咽上皮细胞永生化过程中的分子机制.结果表明,EB病毒诱导老化前期人胚鼻咽上皮细胞端粒酶表达,从而促使人胚鼻咽上皮细胞逃避老化期、进入永生化早期阶段.此外,我们还首次发现,人胚鼻咽上皮细胞表达端粒酶活性依赖于EB病毒LMP1蛋白的表达水平和LMP1分子的完整性,LMP1可能通过诱导端粒酶活性表达促进人鼻咽上皮细胞永生化.我们的实验为进一步探讨EB病毒诱导人胚鼻咽上皮细胞永生化的作用机制提供了实验基础.  相似文献   

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鼻咽癌相关基因NAP1的克隆及鉴定   总被引:6,自引:0,他引:6       下载免费PDF全文
从UniGene库中选取编号为BG231197,来自人鼻咽组织的EST序列.利用Blast检索GenBank的nr数据库和EST数据库,构建EST重叠群.利用人类基因组草图搜索法从成人正常鼻咽组织中PCR扩增获得该基因全长cDNA,命名为NAP1,GenBank登录号为AY190326.NAP1基因cDNA序列全长为573 bp,编码由85个氨基酸组成,相对分子质量为9 700的多肽.用α-32P-dCTP标记NAP1基因片段,与含15种正常成人组织的多组织RNA印迹膜杂交,结果表明NAP1基因在淋巴结和气管中高表达,转录本大小约为0.6 kb,在其他组织中不表达.NAP1蛋白质与滤泡树突状细胞(follicular dendritic cell, FDC)的一种分泌肽前体(FDC -SP)(AF435080)同源,与其他已知蛋白质无明显同源性.NAP1基因定位在染色体4q13,基因组跨越9 179 bp,含5个外显子和4个内含子.采用差异RT-PCR检测了40例经病理诊断为低分化鳞状上皮癌的鼻咽活检组织及其对侧相应部位的正常鼻咽组织中该基因的表达差异.在40例鼻咽癌中,NAP1基因表达下调的有17例(42.5%),表达上调的有6例(15%),无明显表达差异的有17例(42.5%).原位杂交和免疫组化结果显示该基因在正常鼻咽和鼻咽癌组织间质中的树突状细胞中表达,在其他间质细胞和鼻咽上皮中均不表达.以上结果表明,NAP1为树突状细胞的一种新的多肽,该基因在鼻咽癌组织中表达下调的原因,及其与鼻咽癌发生、发展的关系值得进一步探讨.  相似文献   

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EB病毒转化人鼻咽上皮细胞,建立体外多阶段细胞模型有利于从细胞和分子水平对肿瘤发病机制作深入研究.我们利用与鼻咽癌密切相关的EB病毒和TPA的协同作用,观察原代人胚鼻咽上皮细胞逃避老化期后其生物学特性的变化.结果表明,EB病毒感染的人胚鼻咽上皮细胞在原代培养后期老化相关半乳糖苷酶(SA-β-Gal)表达降低,形态学上发生改变,出现转化灶样集落,群体倍增时间降低,体外培养寿命延长,表明EB病毒促使部分原代人胚鼻咽上皮细胞逃避老化期、进入永生化早期阶段.这些研究资料为进一步阐明上皮细胞永生化分子机制及建立人鼻咽上皮细胞永生化模型提供实验依据.关键词EB病毒人鼻咽上皮细胞老化期永生化  相似文献   

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潜伏膜蛋白1(LMP1)是由EB病毒编码的致瘤蛋白,众多研究表明LMP1蛋白可通过NF-κB、p38 MAPK、c-JNK等多条重要信号通路引起鼻咽癌细胞的生物学行为改变。我们从EB病毒阳性的B95-8狨猴淋巴瘤细胞中克隆EB病毒LMP1 c DNA,构建携带绿色荧光基因的真核表达质粒p IRES2-Zs-Green1-LMP1,通过脂质体转染的方法将质粒导入鼻咽癌细胞株CNE1、CNE2中,利用质粒所携带的绿色荧光蛋白表达粗略计算转染的效率,通过免疫细胞化学(ICC)、RT-PCR、Western-Blot检测该质粒的表达。本实验室所构建的p IRES2-Zs-Green1-LMP1表达质粒能在鼻咽癌细胞内表达LMP1蛋白,为后续的实验研究奠定基础。  相似文献   

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EB病毒(Epstein-Barr virus,EBV)是一种172 kb大小的线性双链DNA病毒,与鼻咽癌、淋巴瘤、胃癌等恶性肿瘤的发生密切相关. EBV编码的微小RNAs (miRNAs)可以调节病毒和宿主细胞基因的表达,并且在癌症发生发展中起着多种作用.本文综述了EBV编码的miRNAs (EBV-encoded miRNA,EBV miRNAs)在病毒感染和肿瘤发生、侵袭转移、抗凋亡、信号通路等方面的生物学功能,以及对于EBV相关肿瘤诊断标志物的潜在意义. EB病毒编码的miRNAs也可能成为进一步研究EBV相关肿瘤治疗的一个候选靶点.  相似文献   

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目的:初步探讨野生型LTF基因在鼻咽癌细胞系中的生物学功能。方法:野生型LTF导入鼻咽癌细胞系,G418筛选,RT-PCR和Western-blotting分别在mRNA和蛋白质水平进行验证,得到稳定表达LTF基因的鼻咽癌细胞系。流式细胞术、平板克隆形成实验和MTT法分别检测细胞周期、细胞的克隆形成能力和细胞生长曲线。结果:成功导入LTF并稳定表达的鼻咽癌细胞系,G0-G1期细胞百分比例明显增加(72.01%vs 62.31%),G2-M期细胞百分比例减少(6.26%vs 10.81%);克隆形成能力降低(39.5%vs 59.7%),体外瘤细胞增殖能力降低(P0.05)。结论:LTF基因可阻滞细胞周期、抑制鼻咽癌细胞系的增殖能力和克隆形成率,同时为进一步的体内试验研究奠定基础。  相似文献   

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EB病毒不能感染小鼠是因为小鼠CR2受体构像与人的不同,通过对小鼠CR2受体进行定点空变,然后将野生型和突变型小鼠CR2/1(MCR2/1)及人CR2(hCR2)用基因转移技术导入小鼠鼻咽上皮细胞系(TMNE)进行表达,观察转染阳性细胞是否具有结合EB病毒的能力,EBER-1杂交结果显示,只有转染hCR2和空变型MCR2(mtMCR2)的TMNE细胞可以感染EB病毒,但是前感染EB病毒的阳性率比后高的高得多。电镜结果也进一步证实EB病毒可以感染这两种细胞,这为进一步研究EB病毒进入细胞的机制及建立EB病毒相关的鼻咽癌动物模型奠定了良好的基础。  相似文献   

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探讨EB病毒基因组编码的癌蛋白LMP1对鼻咽癌细胞中转移相关基因表达的影响.采用蛋白质印迹法检测在强力霉素(Dox)诱导下,鼻咽癌细胞系pTet-on-LMP1 HNE2(L7细胞)中LMP1表达的时效和量效关系.应用cDNA微阵列技术建立诱导性LMP1介导鼻咽癌细胞中转移相关基因差异表达谱;运用RT-PCR验证cDNA微阵列筛选差异基因表达的可靠性.与LMP1不表达的L7细胞比较,LMP1高表达的L7细胞中7个基因的表达显著上调,12个基因的表达显著下调.随机选择其中4个基因进行RT-PCR,结果显示,这些基因表达阳性,且与微阵列中的变化趋势一致.LMP1可能通过激活和/或抑制一些转移相关基因的表达而参与鼻咽癌转移过程.  相似文献   

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The Epstein-Barr virus (EBV) is transmitted from host-to-host via saliva and is associated with epithelial malignancies including nasopharyngeal carcinoma (NPC) and some forms of gastric carcinoma (GC). Nevertheless, EBV does not transform epithelial cells in vitro where it is rapidly lost from infected primary epithelial cells or epithelial tumor cells. Long-term infection by EBV, however, can be established in hTERT-immortalized nasopharyngeal epithelial cells. Here, we hypothesized that increased telomerase activity in epithelial cells enhances their susceptibility to infection by EBV. Using HONE-1, AGS and HEK293 cells we generated epithelial model cell lines with increased or suppressed telomerase activity by stable ectopic expression of hTERT or of a catalytically inactive, dominant negative hTERT mutant. Infection experiments with recombinant prototypic EBV (rB95.8), recombinant NPC EBV (rM81) with increased epithelial cell tropism compared to B95.8, or recombinant B95.8 EBV with BZLF1-knockout that is not able to undergo lytic replication, revealed that infection frequencies positively correlate with telomerase activity in AGS cells but also partly depend on the cellular background. AGS cells with increased telomerase activity showed increased expression mainly of latent EBV genes, suggesting that increased telomerase activity directly acts on the EBV infection of epithelial cells by facilitating latent EBV gene expression early upon virus inoculation. Thus, our results indicate that infection of epithelial cells by EBV is a very selective process involving, among others, telomerase activity and cellular background to allow for optimized host-to-host transmission via saliva.  相似文献   

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Nasopharyngeal carcinoma (NPC) is common among southern Chinese including the ethnic Cantonese population living in Hong Kong. Epstein-Barr virus (EBV) infection is detected in all undifferentiated type of NPC in this endemic region. Establishment of stable and latent EBV infection in premalignant nasopharyngeal epithelial cells is an early event in NPC development and may contribute to its pathogenesis. Immortalized primary nasopharyngeal epithelial cells represent an important tool for investigation of EBV infection and its tumorigenic potential in this special type of epithelial cells. However, the limited availability and small sizes of nasopharyngeal biopsies have seriously restricted the establishment of primary nasopharyngeal epithelial cells for immortalization. A reliable and effective method to immortalize primary nasopharyngeal epithelial cells will provide unrestricted materials for EBV infection studies. An earlier study has reported that Bmi-1 expression could immortalize primary nasopharyngeal epithelial cells. However, its efficiency and actions in immortalization have not been fully characterized. Our studies showed that Bmi-1 expression alone has limited ability to immortalize primary nasopharyngeal epithelial cells and additional events are often required for its immortalization action. We have identified some of the key events associated with the immortalization of primary nasopharyngeal epithelial cells. Efficient immortalization of nasopharyngeal epithelial cells could be reproducibly and efficiently achieved by the combined actions of Bmi-1 expression, activation of telomerase and silencing of p16 gene. Activation of MAPK signaling and gene expression downstream of Bmi-1 were detected in the immortalized nasopharyngeal epithelial cells and may play a role in immortalization. Furthermore, these newly immortalized nasopharyngeal epithelial cells are susceptible to EBV infection and supported a type II latent EBV infection program characteristic of EBV-infected nasopharyngeal carcinoma. The establishment of an efficient method to immortalize primary nasopharyngeal epithelial cells will facilitate the investigation into the role of EBV infection in pathogenesis of nasopharyngeal carcinoma.  相似文献   

15.
Deng W  Pang PS  Tsang CM  Hau PM  Yip YL  Cheung AL  Tsao SW 《PloS one》2012,7(6):e39095
Nasopharyngeal carcinoma (NPC) is a common cancer in Southeast Asia, particularly in southern regions of China. EBV infection is closely associated with NPC and has long been postulated to play an etiological role in the development of NPC. However, the role of EBV in malignant transformation of nasopharyngeal epithelial cells remains enigmatic. The current hypothesis of NPC development is that premalignant nasopharyngeal epithelial cells harboring genetic alterations support EBV infection and expression of EBV genes induces further genomic instability to facilitate the development of NPC. The latent membrane protein 1 (LMP1) is a well-documented EBV-encoded oncogene. The involvement of LMP1 in human epithelial malignancies has been implicated, but the mechanisms of oncogenic actions of LMP1, particularly in nasopharyngeal cells, are unclear. Here we observed that LMP1 expression in nasopharyngeal epithelial cells impaired G2 checkpoint, leading to formation of unrepaired chromatid breaks in metaphases after γ-ray irradiation. We further found that defective Chk1 activation was involved in the induction of G2 checkpoint defect in LMP1-expressing nasopharyngeal epithelial cells. Impairment of G2 checkpoint could result in loss of the acentrically broken chromatids and propagation of broken centric chromatids in daughter cells exiting mitosis, which facilitates chromosome instability. Our findings suggest that LMP1 expression facilitates genomic instability in cells under genotoxic stress. Elucidation of the mechanisms involved in LMP1-induced genomic instability in nasopharyngeal epithelial cells will shed lights on the understanding of role of EBV infection in NPC development.  相似文献   

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Epstein-Barr病毒(EBV)进入鼻咽上皮细胞的途径,是人们研究EBV与鼻咽癌(NPC)的病因关系时所必须回答的一个问题。用抗EBV受体(EBVR/CR_2)单抗检测上皮细胞中该受体的表达已有报道,但对上皮细胞中EBVR/CR_2的基因结构仍需研究。我们采用PCR扩增和不对称PCR直接测序法,首次检测了10例NPC及3例正常人胚鼻咽上皮(Humanembryonicnasoparyngealepithelium,HENE)组织样本中EBVR/CR_2的EBV结合区的编码序列。这一片段的DNA序列测定结果显示,人NPC细胞和正常HENE细胞的EBVR/CR_2的EBV结合区的编码序列,与正常人B淋巴细胞的EBVR/CR_2的相应序列完全相同,提示EBV感染鼻咽上皮细胞可能与EBVR/CR_2基因的EBV结合区结构改变无直接关系。  相似文献   

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Epstein—Barr病毒基因组在鼻咽癌组织中转录的特征   总被引:2,自引:0,他引:2  
对EB病毒基因在鼻咽癌活检组织细胞内的转录进行了较系统的探测。实验结果表明,EB病毒基因组在鼻咽癌活检组织中以附加体(Episome)形式存在,而其基因转录有如下特征:(1)EB病毒在所有鼻咽癌组织细胞中都表达EBNA-1,并且此基因转录产物由一个在BamHI-F区的启动子(Fp)驱动;(2)潜伏感染膜蛋白(Latent membrane protein,LMP)和末端蛋白(Terminal pr  相似文献   

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