发布时间:2019-04-20 09:19 原文链接: ProtocolforIsolatingDNAfromBloodwithNucleatedRedbloodCells

实验概要

DNA  isolation from fish or avian blood sample can be difficult because it  contains nucleated red blood cells. E.Z.N.A. NRBC Blood DNA Kit is  designed for isolating genomic DNA from fresh, or ethanol preserved  blood samples containing nucleated red blood cells. The kit allows  single or multiple, simultaneous processing of samples in under 60  minutes. There is no need for phenol/chloroform extractions, and  timeconsuming steps such as CsCl gradient ultracentrifugation are  eliminated. Purified DNA obtained with the E.Z.N.A.® Blood DNA Kit will be ready for applications such as PCR, Southern Blotting, and Restriction Digestion.

E.Z.N.A.® NRBC Blood DNA Kit uses the reversible nucleic acid-binding properties of HiBind®  matrix, combined with the speed of mini-column spin technology. A  specifically formulated buffer system allows genomic DNA 30-60 kb to  bind to the matrix. Samples are first lysed under denaturing conditions  and then applied to the HiBind® DNA spin columns to which DNA  binds, while cellular debris, hemoglobin, and other proteins are  effectively washed away. High quality DNA is finally eluted in sterile  deionized water or low salt buffer.

主要试剂

1. Ethanol - approximately 0.3 ml per sample.

2. RNase A - Prepare a stock solution of RNase A at 25 mg/ml.

主要设备

1. Tabletop microcentrifuge and sterile 1.5 ml tubes.

2. Water bath - set to 65°C.

实验步骤

NOTE: The procedure below has been optimized for use with FRESH or ethanol fixed blood samples of 1 to 15 ul in volume.

Bring samples and Proteinase K solution to room temperature and have a  water bath equilibrated to 65°C. Preheat an aliquot of Elution Buffer  (approximately 0.4 ml per sample) at 65°C. Carry out all centrifugation  steps at room temperature.

1. Add 1 - 4 ul of blood sample to a sterile microcentrifuge tube.  Add 250 ul of RL1 Buffer. Mix throughly by vortexing for 10 seconds.

2. Add 25 ul Proteinase K (20mg/ml) and 275 ul of Buffer BL. Vortex at maxi speed for 15s to mix thoroughly.

3. Incubate the sample at 65°C for 10 min.

4. Briefly vortex the tube once during incubation. Optional: If  RNA-free genomic DNA is required, add 5ul RNase A (25mg/ml) to each  sample and incubate at room temperature for 5 minutes .

5. Add 275 ul of absolute ethanol (room temperature, 96-100%) to  lysate and vortex at maxi speed for 20s to mix thoroughly. Briefly  centrifuge the tube to collect any drops from the inside of the lid.

6. Assemble an HiBind® DNA column in a 2 ml collection  tube (provided). Add 100ul of Equitation Buffer to each column. Wait 3-4  minutes at room temperature. Centrifuge at maximum speed for 30  seconds.

7. Transfer the lysate from step 5 into the column and centrifuge at  $10,000 x g for 1 min to bind DNA. Discard the collection tube and  flow-through liquid.

8. Place the column into a second 2 ml tube (provided) and add 500 ul  of Buffer HB. Centrifuge at $10,000 x g for 1 min. Discard flow-through  liquid and reuse the collection tube for next step.

9. Place the column into a same 2 ml tube from step 7 and wash the  column by pipetting 700 ul of DNA Wash Buffer diluted with ethanol.  Centrifuge at $10,000 x g for 1 min. Again, dispose of collection tube  and flow-through liquid.

Note: DNA Wash Buffer is provided as a concentrate and must be  diluted with absolute ethanol as indicated on the bottle and page 3. If  refrigerated, the diluted DNA wash buffer must be brought to room  temperature before use.

10. Using a new collection tube, wash the column with a second 700 ul  of DNA Wash Buffer and centrifuge as above. Discard flow-through and  re-use the collection tube for next step.

11. Place the empty column into the same 2 ml collection tube form  step 10, centrifuge at maximum speed for 2 min to dry the column. This  step is crucial for ensuring optimal elution in the following step.

12. Place the column into a sterile 1.5 ml microfuge tube and add  100-200 ul of preheated (65°C) Elution Buffer (10mM-Tris-HCl, pH 8.5).  Allow o tubes to sit for 5 min at room temperature.

13. To elute DNA from the column, centrifuge at maximum speed  ($14,000 x g) for 1 min. Retain flow-through containing the DNA. Place  column into a second 1.5 ml tube. Elute DNA again as step 11-12. Discard  column and store the eluted DNA at -20°C.

Note: First elution typically yields 60%-70% of the DNA bound to the  column. Thus two elution generally give >90%. However, increasing  elution volume reduces the concentration of the final product. To obtain  DNA at higher concentrations, elution can be carried out using 50 ul to  100 ul Elution Buffer. Volumes lower than 50 ul greatly reduce yields.  Alternatively use the first eluate to perform the second elution.

If necessary the DNA can be concentrated. Add sodium chloride to a  final concentration of 0.1 M followed by 2 x volume of absolute (100%)  ethanol. Mix well and incubate at -20°C for 10 min. Centrifuge at 14,000  x g for 10 min and discard supernatant. Add 700 ul of 80% ethanol and  centrifuge at 10,000 x g for 2 min. Discard supernatant, air dry the  pellet (2 min) and resuspend DNA in 20 ul sterile deionized water or 10  mM Tris-HCl, pH 8.


相关文章

新研究阐明真菌感染重要分子机制

真菌感染会对人类、动物和植物构成威胁,甚至带来严重后果。来自德国杜塞尔多夫海因里希-海涅大学(HHU)等机构的科学家,在一项最新研究中,阐明了真菌感染的一个重要分子机制。这一研究有望促进新型抗真菌药物......

Nature子刊:武汉大学团队开发基于水凝胶的分子张力荧光显微镜

细胞外基质(ECM)刚性是影响多种生物过程的重要机械线索。然而,对刚性传感的分子机制的理解受到当前细胞力测量技术的空间分辨率和力灵敏度的限制。2023年10月5日,武汉大学刘郑团队在NatureMet......

Nature:外源核酸诱导的原核生物短Ago蛋白系统发挥功能的分子机理

RNA介导的转录后基因调控在生命个体抵御外源入侵的过程中起到重要作用。Argonaute(Ago)蛋白是存在于古菌、细菌和真核生物中的一种蛋白。它为非编码小RNA提供锚位点,达到降解靶基因或者抑制翻译......

纳米孔测序和DNA“条形码”相结合一次检测数十种生物标志物

英国帝国理工学院的科学家与牛津纳米孔技术公司合作研制出一种新方法,可同时分析数十种不同类型的生物标志物,改变了对心脏病和癌症等疾病的检测,从而让临床医生收集到有关患者疾病的更多信息。研究成果25日发表......

科学家绘制细胞游离DNA单分子全基因组突变图谱

体细胞突变是肿瘤发生的标志,可用于癌症的无创诊断。美国约翰·霍普金斯大学医学院绘制细胞游离DNA单分子全基因组突变图谱,用于癌症无创检测。该研究成果于近日发表在《NatureGenetics》杂志上,......

科学家开发工程化细菌用于检测肿瘤DNA

人们应用合成生物学手段已开发出精密的细胞生物传感器,可用于检测人类疾病。然而,生物传感器尚未被设计用于检测特定的细胞游离DNA序列和突变。美国加州大学圣迭戈分校等机构合作开发一种工程化细菌,可检测活体......

我国科学家提出DNA数字存储纠错新算法

近日,中国农业科学院深圳农业基因组研究所农业基因组学技术研发与应用创新团队提出DNA数字存储纠错新算法,成功突破了冗余对纠错能力的限制,将大幅提升DNA存储纠错能力。相关研究成果发表在《国家科学评论》......

科学家创制保存高质量DNA的昆虫野外监测装置

生物多样性丧失是三大环境危机之一。昆虫作为庞大且多样化的生物群体,几乎占据各种类型栖息地,在生态系统中扮演着重要角色。“SITE-100”国际大科学计划是中国科学院动物研究所研究员白明与英国自然博物馆......

交大Nature发文,在DNA计算领域取得重要进展

上海交通大学化学化工学院/变革性分子前沿科学中心樊春海院士与王飞副教授近期发展了一种支持通用性数字计算的DNA可编程门阵列(DNA-basedprogrammablegatearray,DPGA),可......

科学家捕获合成DNA原子视图 有助研究“分子剪刀”

美国西弗吉尼亚大学研究人员实现了在原子水平上观察合成DNA,从而了解了如何改变其结构以增强其剪刀功能。更多地了解这些合成DNA反应,或是未来解锁医学新技术的关键。研究结果发表在最近出版的《自然》子刊《......