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感染人类肝脏和肝细胞癌中乙型肝炎病毒启动子的单核苷酸分辨率图谱

Single-Nucleotide Resolution Mapping of Hepatitis B Virus Promoters in Infected Human Livers and Hepatocellular Carcinoma.

作者信息

Altinel Kübra, Hashimoto Kosuke, Wei Yu, Neuveut Christine, Gupta Ishita, Suzuki Ana Maria, Dos Santos Alexandre, Moreau Pierrick, Xia Tian, Kojima Soichi, Kato Sachi, Takikawa Yasuhiro, Hidaka Isao, Shimizu Masahito, Matsuura Tomokazu, Tsubota Akihito, Ikeda Hitoshi, Nagoshi Sumiko, Suzuki Harukazu, Michel Marie-Louise, Samuel Didier, Buendia Marie Annick, Faivre Jamila, Carninci Piero

机构信息

RIKEN Center for Life Science Technologies, Division of Genomic Technologies, Yokohama, Kanagawa, Japan.

RIKEN Center for Life Science Technologies, Division of Genomic Technologies, Yokohama, Kanagawa, Japan

出版信息

J Virol. 2016 Nov 14;90(23):10811-10822. doi: 10.1128/JVI.01625-16. Print 2016 Dec 1.

Abstract

UNLABELLED

Hepatitis B virus (HBV) is a major cause of liver diseases, including hepatocellular carcinoma (HCC), and more than 650,000 people die annually due to HBV-associated liver failure. Extensive studies of individual promoters have revealed that heterogeneous RNA 5' ends contribute to the complexity of HBV transcriptome and proteome. Here, we provide a comprehensive map of HBV transcription start sites (TSSs) in human liver, HCC, and blood, as well as several experimental replication systems, at a single-nucleotide resolution. Using CAGE (cap analysis of gene expression) analysis of 16 HCC/nontumor liver pairs, we identify 17 robust TSSs, including a novel promoter for the X gene located in the middle of the gene body, which potentially produces a shorter X protein translated from the conserved second start codon, and two minor antisense transcripts that might represent viral noncoding RNAs. Interestingly, transcription profiles were similar in HCC and nontumor livers, although quantitative analysis revealed highly variable patterns of TSS usage among clinical samples, reflecting precise regulation of HBV transcription initiation at each promoter. Unlike the variety of TSSs found in liver and HCC, the vast majority of transcripts detected in HBV-positive blood samples are pregenomic RNA, most likely generated and released from liver. Our quantitative TSS mapping using the CAGE technology will allow better understanding of HBV transcriptional responses in further studies aimed at eradicating HBV in chronic carriers.

IMPORTANCE

Despite the availability of a safe and effective vaccine, HBV infection remains a global health problem, and current antiviral protocols are not able to eliminate the virus in chronic carriers. Previous studies of the regulation of HBV transcription have described four major promoters and two enhancers, but little is known about their activity in human livers and HCC. We deeply sequenced the HBV RNA 5' ends in clinical human samples and experimental models by using a new, sensitive and quantitative method termed cap analysis of gene expression (CAGE). Our data provide the first comprehensive map of global TSS distribution over the entire HBV genome in the human liver, validating already known promoters and identifying novel locations. Better knowledge of HBV transcriptional activity in the clinical setting has critical implications in the evaluation of therapeutic approaches that target HBV replication.

摘要

未标记

乙型肝炎病毒(HBV)是包括肝细胞癌(HCC)在内的肝脏疾病的主要病因,每年有超过65万人死于HBV相关的肝衰竭。对单个启动子的广泛研究表明,异质RNA 5'端导致了HBV转录组和蛋白质组的复杂性。在此,我们以单核苷酸分辨率提供了人肝脏、HCC和血液以及几种实验复制系统中HBV转录起始位点(TSS)的全面图谱。通过对16对HCC/非肿瘤肝脏进行基因表达帽分析(CAGE),我们确定了17个稳定的TSS,包括位于X基因基因体中部的一个新启动子,它可能产生一种从保守的第二个起始密码子翻译而来的较短X蛋白,以及两个可能代表病毒非编码RNA的次要反义转录本。有趣的是,HCC和非肿瘤肝脏中的转录谱相似,尽管定量分析显示临床样本中TSS使用模式高度可变,这反映了每个启动子处HBV转录起始的精确调控。与在肝脏和HCC中发现的多种TSS不同,在HBV阳性血液样本中检测到的绝大多数转录本是前基因组RNA,很可能是由肝脏产生并释放的。我们使用CAGE技术进行的定量TSS图谱绘制将有助于在旨在根除慢性携带者体内HBV的进一步研究中更好地理解HBV转录反应。

重要性

尽管有安全有效的疫苗,但HBV感染仍然是一个全球健康问题,目前的抗病毒方案无法清除慢性携带者体内的病毒。先前对HBV转录调控的研究描述了四个主要启动子和两个增强子,但对它们在人肝脏和HCC中的活性了解甚少。我们使用一种称为基因表达帽分析(CAGE)的新的、灵敏且定量的方法,对临床人类样本和实验模型中的HBV RNA 5'端进行了深度测序。我们的数据提供了人类肝脏中整个HBV基因组上全局TSS分布的首张全面图谱,验证了已知的启动子并确定了新的位置。更好地了解临床环境中HBV的转录活性对于评估针对HBV复制的治疗方法具有关键意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f02e/5110153/ae1ad84edd8c/zjv9991821540001.jpg

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