Gene Expression Nebulas
基于标准化流程分析的转录图谱综合数据库

Gene Expression Nebulas

多物种转录图谱整合数据库

PRJNA681523: SARS-CoV-2 utilizes a multipronged strategy to suppress host protein synthesis

来源: NCBI / GSE162323
提交时间: Nov 30 2020
释放时间: Apr 01 2021
最后更新时间: May 12 2021

概要: SARS-CoV-2 utilizes a multipronged strategy to suppress host protein synthesis

项目整体设计: Severe acute respiratory syndrome coronavirus 2 (SARS-CoV-2) is the cause of the ongoing coronavirus disease 19 (COVID-19) pandemic. Despite the urgent need, we still do not fully understand the molecular basis of SARS-CoV-2 pathogenesis and its ability to antagonize innate immune responses. Here, we use RNA-sequencing and ribosome profiling along SARS-CoV-2 infection and comprehensively define the mechanisms that are utilized by SARS-CoV-2 to shutoff cellular protein synthesis. We show SARS-CoV-2 infection leads to a global reduction in translation but that viral transcripts are not preferentially translated. Instead, we reveal that infection leads to accelerated degradation of cytosolic cellular mRNAs which facilitates viral takeover of the mRNA pool in infected cells. Moreover, we show that the translation of transcripts whose expression is induced in response to infection, including innate immune genes, is impaired, implying infection prevents newly transcribed cellular mRNAs from accessing the ribosomes. Overall, our results uncover the multipronged strategy employed by SARS-CoV-2 to commandeer the translation machinery and to suppress host defenses.

GEN 数据集:
GEND000452
测序方法:
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方案
生长方案: Calu3 cells (ATCC HTB-55) were cultured in 6-well or 10cm plates with RPMI supplemented with 10% fetal bovine serum (FBS), MEM non-essential amino acids, 2mM L-Glutamine, 100Units/ml Penicillin and 1% Na-pyruvate.
处理方案: Cells were infected for 3, 5 or 8 hours before treatment or left uninfected. For Ribo-seq libraries, samples were treated with 100μg/mL CHX for 1 minute. Cells were placed on ice immediately after treatment, washed twice with PBS containing 100μg/mL CHX.
提取方案: For RNA-seq, cells were harvested with Tri-Reagent (Sigma-Aldrich), total RNA was extracted. poly-A selection was performed using Dynabeads mRNA DIRECT Purification Kit (Invitrogen). For ribosome profiling, medium was aspirated from dishes, which were immediately placed on ice and rinsed with 10 ml ice-cold PBS supplemented with drugs used in pretreatment of the cells. PBS was aspirated and 800 μl ice-cold lysis buffer (20 mM Tris, pH 7.4, 250 mM NaCl, 15 mM MgCl2, 1 mM dithiothreito, 0.5% Triton X-100 and 24 U / ml Turbo DNase (Ambion, AM2239), along with any drugs used for sample treatment) was dripped onto dishes. Cells were scraped and the lysate was removed and incubated 10 min on ice. The lysate was then clarified by centrifugation for 10 min at 20,000 × g, 4°C and ∼1.1 ml supernatant was recovered. For SLAM-seq libraries Cells were harvested with Tri-reagent at 1, 2, 3, and 4 hours after addition of 4sU (corresponding to 4,5,6 and 7hpi for infected cells) . RNA was extracted under reducing conditions and treated with Iodoacetamide. poly-A selection was performed using Dynabeads mRNA DIRECT Purification Kit (Invitrogen). For fractionation, first a fraction of 10% of the cells was transferred to a new tube and RNA was extracted in Tri-reagent to obtain whole cellular extract. Nuclear fraction was separated from cytoplasmic fraction by centrifugation following cell lysis. RNA was then extracted from both fraction in Tri-reagent. poly-A selection was performed using Dynabeads mRNA DIRECT Purification Kit (Invitrogen). RNA-seq: mRNA samples were subjected to DNAseI treatment and 3’ dephpsphorylation using FastAP Thermosensitive Alkaline Phosphatase (Thermo Scientific) and T4 PNK (NEB) followed by 3’ adaptor ligation using T4 ligase (NEB). The ligated products were then used for reverse transcription with SSIII (Invitrogen) for first strand cDNA synthesis. The cDNA products were 3’ ligated with a second adaptor using T4 ligase and amplified for 8 cycles in a PCR for final library products of 200-300bp. Ribo-seq: Cells were treated with 100µg/mL CHX for 1 minute. Cells were then placed on ice, washed twice with PBS containing 100µg/mL CHX, scraped from 10cm plates, pelleted and lysed with lysis buffer (1% triton in 20mM Tris 7.5, 150mM NaCl, 5mM MgCl2, 1mM dithiothreitol supplemented with 10 U/ml Turbo DNase and 100µg/ml cycloheximide). After lysis samples stood on ice for 2h and subsequent Ribo-seq library generation was performed. Briefly, cell lysate was treated with RNAseI for 45min at room temperature followed by SUPERase-In quenching. Sample was loaded on sucrose solution (34% sucrose, 20mM Tris 7.5, 150mM NaCl, 5mM MgCl2, 1mM dithiothreitol and 100µg/ml cycloheximide) and spun for 1h at 100K RPM using TLA-110 rotor (Beckman) at 4c. Pellet was harvested using TRI reagent and the RNA was collected using chloroform phase separation. For size selection, 15uG of total RNA was loaded into 15% TBE-UREA gel for 65min, and 28-34 nt footprints were excised using 28 nt and 34 nt flanking RNA oligos, followed by RNA extraction and ribo-seq protocol (Finkel Y. et. al., 2020, ELife) RNA-seq of whole cells as well as nuclear and cytoplasmic fractions, ribosome profiling, and SLAM-seq.
建库方案: cell lysate was treated with RNAseI for 45min at room temperature followed by SUPERase-In quenching. Sample was loaded on sucrose solution (34% sucrose, 20mM Tris 7.5, 150mM NaCl, 5mM MgCl2, 1mM dithiothreitol and 100µg/ml cycloheximide) and spun for 1h at 100K RPM using TLA-110 rotor (Beckman) at 4c. Pellet was harvested using TRI reagent and the RNA was collected using chloroform phase separation. For size selection, 15uG of total RNA was loaded into 15% TBE-UREA gel for 65min, and 28-34 nt footprints were excised using 28 nt and 34 nt flanking RNA oligos, followed by RNA extraction and ribo-seq protocol (Finkel Y. et. al., 2020, ELife)
测序信息
分子类型: poly(A)+ RNA
库的片段类型: SINGLE; PAIRED
库的链类型: Reverse
测序平台: ILLUMINA
测序仪型号: Illumina NovaSeq 6000
链特异性: Specific
样本
基本信息:
样本描述:
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数据来源 GEN样本编号 GEN数据集编号 系列编号 项目编号 样本编号 样本名称 生物样本编号 样本访问号 实验访问号 释放时间 提交时间 最后更新时间 物种 种族 族裔 年龄 年龄单位 性别 来源名称 组织 细胞类型 细胞亚型 细胞系 疾病 疾病状态 发育阶段 突变/变异 表型 Condition Detail 生长方案 处理方案 提取方案 建库方案 分子类型 库的片段类型 链特异性 库的链类型 加标(Spike-In) 测序方法 测序平台 测序仪型号 细胞数 测序片段数 碱基数 平均测序片段长度_1 平均测序片段长度_2 唯一比对率 多重比对率 覆盖度
文章
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