QIAprep 96 Turbo Kits

웰당 최대 20μg의 분자 생물학 등급 플라스미드 DNA를 정제

S_1084_5_GEN_disclaimer

✓ 연중무휴 하루 24시간 자동 온라인 주문 처리

✓ 풍부한 지식과 전문성을 갖춘 제품 및 기술 지원

✓ 신속하고 안정적인 (재)주문

QIAprep 96 Turbo Miniprep Kit (4)

카탈로그 번호 / ID.   27191

고순도 플라스미드 미니프렙 96 x 4개 분량, 각 4개: TurboFilter 96 및 QIAprep 96 Plates; S-Blocks, 시약, 완충액, Collection Microtubes (1.2 ml), Caps
키트플레이트
QIAprep 96 Turbo Kit
TurboFilter 96 Plates
QIAprep 96 Plates
다음의 경우
QIAvac 96
BioRobot Universal
준비
4 x 96
24 x 96
QIAprep 96 Turbo Kits은/는 분자생물학 분야에 사용하기 위한 것입니다. 이 제품들은 질병의 진단, 예방, 또는 치료 목적으로 사용할 수 없습니다.

✓ 연중무휴 하루 24시간 자동 온라인 주문 처리

✓ 풍부한 지식과 전문성을 갖춘 제품 및 기술 지원

✓ 신속하고 안정적인 (재)주문

특징

  • 간소화된 정제
  • 70분 이내에 바로 사용할 수 있는 플라스미드 DNA 획득
  • 재현 가능한 분자 생물학 등급 플라스미드 DNA 수율

제품 세부 정보

QIAprep 96 Turbo Kits는 웰당 최대 20µg의 분자 생물학 등급 플라스미드 DNA를 정제할 수 있도록 QIAprep 96 Plates와 TurboFilter 96 Plates를 제공합니다.
최적의 결과를 얻으려면 이 제품을 QIAvac 96과 함께 사용하는 것이 좋습니다.

성능

QIAprep 96 Turbo Kits는 염기서열 분석 및 클로닝과 같은 분자 생물학의 일상적인 응용 분야에 사용할 수 있도록 최대 20µg의 순수한 플라스미드 또는 코스미드 DNA를 분리하기 위해 설계되었습니다(그림 ‘자동 염기서열 분석을 위한 고품질 DNA’ 참고).

QIAprep 96 Turbo Kits는 Escherichia coli에서의 플라스미드 정제뿐만 아니라, Saccharomyces cerevisiae, Bacillus subtilis, Agrobacterium tumefaciens에서도 플라스미드 DNA 정제에 사용할 수 있습니다. 이러한 응용 분야에 대한 프로토콜이 필요하신 경우 QIAGEN 기술 서비스나 현지 유통업체로 문의하세요.

원리

QIAprep 96 Plates에는 독특한 실리카 멤브레인이 들어 있어 고농도의 카이오트로픽 염(chaotropic salt)이 존재할 때 최대 20µg의 DNA를 결합시킬 수 있으며, 소량의 저염 완충액으로도 용출이 가능합니다. QIAprep 멤브레인 기술은 시간이 오래 걸리는 페놀–클로로포름 추출과 알코올 침전 과정을 없애주며, 부유하는 수지나 슬러리(slurry)와 관련된 문제와 불편함도 해소해 줍니다. QIAprep 96 Plates에서 용출한 순수한 플라스미드 DNA는 침전, 농축 또는 탈염할 필요가 없어 바로 사용할 수 있습니다.

TurboFilter 96 Plates는 고농도의 카이오트로픽 염(chaotropic salt)이 있을 때 생성된 박테리아 용해물을 빠르게 클리어링하도록 특별히 설계되었습니다. 정제되지 않은 박테리아 용해물은 TurboFilter 96 Plate를 통해 진공 여과되므로 원심분리 과정이 필요하지 않습니다. 입자가 없는 용해물이 QIAprep 96 Plate 웰로 바로 흘러 들어가 정제 및 용출을 진행할 수 있습니다. TurboFilter 기술은 QIAprep 플라스미드 정제를 간소화하며, BioRobot Universal System에서 절차를 완전히 자동화할 수 있습니다.

 

사양
특징 QIAprep 96 Turbo Miniprep Kit QIAprep 96 Turbo BioRobot Kit
응용 분야 형광 및 방사성 염기서열 분석, 클로닝 등 형광 및 방사성 염기서열 분석, 클로닝 등
배양액 부피/출발 물질 배양액 부피 1~10mL 배양액 부피 1~10mL
플라스미드 유형 High-copy, low-copy, 코스미드 DNA High-copy, low-copy, 코스미드 DNA
처리 수동(진공) 수동(진공)
실험당 샘플; 처리량 실험당 샘플 48~96개 실험당 샘플 48~96개
기술 실리카 기술 실리카 기술
실험당 소요 시간 <45분/플레이트 <70분
수율 <20µg <20µg

절차

QIAprep 96 Turbo Kits를 사용한 플라스미드 정제는 간단한 결합–세척–용출 절차를 따릅니다(순서도 ‘QIAprep 절차’ 참고). 먼저, 박테리아 배양액을 용해한 뒤, TurboFilter 모듈을 통한 여과로 용해물이 클리어링됩니다. 그 후 클리어링된 용해물을 QIAprep 96 Plate에 넣으면 플라스미드 DNA가 실리카 멤브레인에 선택적으로 결합하게 됩니다. 불순물은 세척 단계에서 제거되고, 순수한 DNA가 소량의 용출 완충액 또는 물로 용출됩니다.

QIAprep 96 Turbo 절차는 전 과정을 96-well 형식에서 수행하므로 샘플 취급 과정을 최소화할 수 있으며, 96개의 미니프렙을 45~70분 만에 동시에 처리할 수 있습니다. 박테리아 배양액은 키트에 포함된 96-well 블록에서 배양 및 용해할 수 있습니다. QIAvac 96 매니폴드는 96-well 형식에서 인라인 여과를 위해 설계되어, TurboFilter 96 Plate에서 클리어링된 용해물이 QIAprep 96 Plate의 웰로 직접 흐르도록 하여 96개의 샘플을 동시에 대량으로 처리할 수 있습니다. QIAprep 96 Turbo BioRobot Kit는 BioRobot 8000(현재 이용 불가) 또는 BioRobot Universal System에 최적화된 특수 키트 형식입니다. 이 키트는 96개의 고순도 플라스미드 미니프렙을 자동으로 준비하는 데 필요한 모든 구성품을 제공합니다.

응용 분야

QIAprep 96 Turbo Kits는 다음을 포함한 많은 응용 분야에 사용할 수 있는 순수한 DNA를 재현 가능한 수율로 제공합니다.

  • 스크리닝
  • PCR
  • 염기서열 분석
  • 제한효소 절단
  • 라이게이션(ligation) 및 형질전환

리소스

키트 안내서 (1)
기술 정보 및 중요 참고 사항 (2)
보충 프로토콜 (2)
This protocol is designed for 96 parallel plasmid DNA preparations from 1.3 ml overnight cultures.
안전보건자료 (1)
Download Safety Data Sheets for QIAGEN product components.
Safety Data Sheets (1)
Certificates of Analysis (1)

출판물

Systematic variation in mRNA 3'-processing signals during mouse spermatogenesis.
Liu D; Brockman JM; Dass B; Hutchins LN; Singh P; McCarrey JR; MacDonald CC; Graber JH;
Nucleic Acids Res; 2006; 35 (1):234-46 2006 Dec 8 PMID:17158511
Constraints on HIV-1 evolution and immunodominance revealed in monozygotic adult twins infected with the same virus.
Draenert R; Allen TM; Liu Y; Wrin T; Chappey C; Verrill CL; Sirera G; Eldridge RL; Lahaie MP; Ruiz L; Clotet B; Petropoulos CJ; Walker BD; Martinez-Picado J;
J Exp Med; 2006; 203 (3):529-39 2006 Mar 13 PMID:16533886
Regulation of gene expression in magnocellular neurons in rat supraoptic nucleus during sustained hypoosmolality.
Mutsuga N; Shahar T; Verbalis JG; Xiang CC; Brownstein MJ; Gainer H;
Endocrinology; 2004; 146 (3):1254-67 2004 Dec 9 PMID:15591143
Genome-scale cloning and expression of individual open reading frames using topoisomerase I-mediated ligation.
Heyman JA; Cornthwaite J; Foncerrada L; Gilmore JR; Gontang E; Hartman KJ; Hernandez CL; Hood R; Hull HM; Lee WY; Marcil R; Marsh EJ; Mudd KM; Patino MJ; Purcell TJ; Rowland JJ; Sindici ML; Hoeffler JP;
Genome Res; 1999; 9 (4):383-92 1999 Apr PMID:10207160
Positional cloning of the gene for X-linked retinitis pigmentosa 2.
Schwahn U; Lenzner S; Dong J; Feil S; Hinzmann B; van Duijnhoven G; Kirschner R; Hemberger M; Bergen AA; Rosenberg T; Pinckers AJ; Fundele R; Rosenthal A; Cremers FP; Ropers HH; Berger W;
Nat Genet; 1998; 19 (4):327-32 1998 Aug PMID:9697692

FAQ

What are the additional plasmid bands I see on my gel?

Open circular plasmid, resulting from single strand nicks, usually migrates slower in agarose gels and forms (faint) bands above the supercoiled plasmid DNA band. Sometimes an additional band of denatured supercoiled DNA migrates just below the supercoiled form. This form may result from prolonged alkaline lysis with Buffer P2 and is resistant to restriction digestion.

For a detailed description on how to run and interpret an analytical gel, please see Appendix A in the QIAGEN Plasmid Purification Handbook: "Agarose Gel Analysis of the Purification Procedure", or visit this link.

FAQ-1059
What is the volume of the eluate when using either spin or vacuum procedures with the QIAprep 96 Turbo Miniprep Kit?

The average eluate volume when using either spin or vacuum protocols with the QIAprep 96 Turbo Miniprep Kit is 60 µl. Since 100 µl Buffer EB (10 mM Tris-Cl, pH 8.5) or water are added to each well for elution, the dead volume per sample is approximately 40 µl for both vacuum and spin procedures.

FAQ-1067
Do you have a protocol for high-throughput purification of plasmid DNA using the BioRobot Universal System?
FAQ-1191
Can I use QIAprep Miniprep kits for low-copy plasmids and cosmids?

All QIAprep Miniprep Kits can be used for preparation of low-copy number plasmids and cosmids up to 50 kb. Below are recommendations for processing low-copy constructs using QIAprep technology:

  • Use up to 10 ml overnight E. coli cultures grown in LB medium
  • Be sure to include the optional Buffer PB wash step for all bacterial strains
  • When plasmids or cosmids are larger than 10 kb, pre-heat Buffer EB (or water) to 70°C prior to eluting DNA from the QIAprep membrane
  • When using 10 ml culture volume, it is recommended to double the volumes of Buffers P1, P2, and N3

See also QIAGEN News 1998, Issue 5 for an article entitled 'Isolation of a low-copy plasmid from agrobacterium using QIAprep technology'. Alternatively, the R.E.A.L. Prep 96 Plasmid Kit can be used for high-throughput purification of larger plasmids (e.g., BACs, PACs, and P1s). See QIAGEN News 1999, Issue 2 for an article entitled 'High-throughput purification of BACs with the new R.E.A.L. Prep 96 protocol'.

FAQ-127
What is the recommended culture medium for the QIAprep System?
Luria-Bertani (LB) broth is the recommended culture medium for use with QIAprep Kits, since richer broths such as TB (Terrific Broth) or 2x YT lead to extremely high cell densities, which can overload the purification system. Please review the section 'Culture Media' of Appendix A in the QIAprep Miniprep Handbook or visit our Plasmid Resource Center for additional information on optimal plasmid culturing and extraction conditions for all QIAGEN Plasmid Purification Kits.
FAQ-154
What is the RNase A concentration and composition of Buffer P1?

The composition of Buffer P1 is:

  • 50 mM Tris·Cl, pH 8.0
  • 10 mM EDTA
  • 100 µg/ml RNase A

After RNase A addition, the buffer should be stored at 2–8°C.

Buffer P1 is the resuspension buffer used in a variety of QIAGEN kits for plasmid DNA purification. Details on buffer preparation and storage are presented in Appendix B of the QIAGEN Plasmid Purification Handbook.

FAQ-198
What is the composition of Buffer P2?

The composition of Buffer P2 is:

  • 200 mM NaOH
  • 1% SDS (w/v)

It should be stored at room temperature. Buffer P2 is the lysis buffer used in a variety of QIAGEN kits for plasmid DNA purification. Details on buffer preparation and storage are presented in Appendix B of the QIAGEN Plasmid Purification Handbook.

FAQ-203
What is the composition of Buffer PB?
Buffer PB contains a high concentration of guanidine hydrochloride and isopropanol. The exact composition of Buffer PB is confidential. However, this buffer can be purchased separately: Buffer PB.
FAQ-2791
How do I know if my plasmid is a high- or low copy number type?

Find out which origin of replication your plasmid contains, and look at the table below for classification into high-copy or low-copy types. This table can also be found online at the QIAGEN Plasmid Resource Center in the section 'Growth of bacterial cultures; Plasmid Copy Number' . A way to determine experimentally if the copy number of your plasmid is high or low is to perform a miniprep. A high-copy plasmid should yield between 3-5 ug DNA per 1 ml LB culture, while a low-copy plasmid will yield between 0.2-1 ug DNA per ml of LB culture.

 

Origins of replication and copy numbers of various plasmids and cosmids

DNA construct Origin of Replication Copy number Classification
Plasmids      
pUC vectors pMB1* 500–700 high copy
pBluescript® vectors ColE1 300–500 high copy
pGEM® vectors pMB1* 300–400 high copy
pTZ vectors pMB1* >1000 high copy
pBR322 and derivatives pMB1* 15–20 low copy
pACYC and derivatives p15A 10–12 low copy
pSC101 and derivatives pSC101 ~5 very low copy
Cosmids      
SuperCos pMB1* 10-20 low copy
pWE15 ColE1 10-20 low copy

* The pMB1 origin of replication is closely related to that of ColE1 and falls in the same incompatibility group. The high-copy plasmids listed here contain mutated versions of this origin.

FAQ-350
What is the white insoluble precipitate in my resuspended plasmid DNA pellet?

White insoluble material in the resuspended plasmid DNA pellet indicates carry-over of salts and/or carbohydrates. Ensure that isopropanol is used at room temperature for precipitation. Some bacterial strains, such as TG1 and JM100, naturally produce a high level of carbohydrates. However, carbohydrate contamination may also be observed when using other strains. The most common cause of this problem is over-growth of bacterial cultures. To avoid this, closely follow the guidelines for Plasmid DNA Preparation in the Handbook that was provided with the respective QIAGEN Plasmid Kit.

Useful hints and information on optimizing plasmid preparations can be found at the QIAGEN Plasmid Resource Center.

FAQ-352
Can I eliminate RNase A from buffer P1 for my plasmid preparation to obtain RNase-free DNA for in-vitro transcription?
No, RNase A should not be omitted from buffer P1. It is required to prevent RNA contamination of the purified plasmid DNA. RNase A will not interfere with downstream in-vitro transcription experiments, since it will be efficiently removed during the plasmid purification procedures using QIAGEN Plasmid Kits.
FAQ-366
Why is my plasmid DNA yield low?

Low yields of plasmid DNA can be caused by a number of different factors. The most common causes for low yield are poor culturing conditions and plasmid propagation, excessive amounts of starting material resulting in insufficient bacterial cell lysis and column overloading. When working with the anion-exchange based QIAGEN Plasmid Purification Kits, extra care is required during the isopropanol precipitation step, as the glassy DNA pellet may be difficult to see, and tends to be only loosely attached to the side of the tube.

We strongly recommend to review the information provided on our Plasmid Resource Page in the section 'Optimal results with QIAGEN plasmid kits', as it provides useful background information on growing bacterial cultures and general considerations for optimal results. It is also necessary to follow the instructions in the relevant protocols precisely to ensure the best plasmid yield and quality.

To determine at what stage of the procedure any problem occurred, save fractions from different steps of the purification procedure, and analyze by agarose gel electrophoresis. For a detailed description on how to run and interpret an analytical gel, please see Appendix A in the QIAGEN Plasmid Purification Handbook: "Agarose Gel Analysis of the Purification Procedure", or visit the QIAGEN Plasmid Resource Center.

 

 

FAQ-768
What is the advantage of running an analytical gel with fractions of my plasmid preparation?

Running fractions saved from each step in the plasmid preparation procedure on an agarose gel enables monitoring the performance of each crucial step in the protocol. If the plasmid DNA is of low yield or quality, the samples can be analyzed to determine at what stage of the purification procedure the difficulty occurred.

Aliquots can be taken from the cleared lysate and the flow-throughs as indicated in the relevant protocols, precipitated with isopropanol and resuspended in a small volume of TE buffer.

Please see the Troubleshooting Section of the QIAprep Miniprep Handbook and Appendix A of the QIAGEN Plasmid Purification Handbook for instructions, and a picture and legend explaining the typical results you may see. You can also access this information on our Plasmid Resource Pages.

FAQ-769
What is the recipe for SOC medium?

The components of the SOC medium are:

  • 0.5% Yeast Extract
  • 2% Tryptone
  • 10 mM NaCl
  • 2.5 mM KCl
  • 10 mM MgCl2
  • 10 mM MgSO4
  • 20 mM Glucose*

*Note: add Glucose after autoclaving the solution with the remaining ingredients, and letting it cool down. Sterilize the final solution by passing it through a 0.2 µm filter.

SOC medium can be stored at room temperature and is stable for several years.

FAQ-798
I left Buffer P1 at room temperature after addition of RNase A, what shall I do?

Buffer P1 with RNase A used in QIAGEN Plasmid Purification Kits should be fine at room temperature for a few days. We would expect the enzyme to have some residual activity. However, optimal results cannot be guaranteed after storage at room temperature. If you notice that RNase A activity is substantially reduced, you can add fresh RNase A to your buffer.

We recommend that Buffer P1 with RNase A be stored in the refrigerator (2–8°C). RNase A will be stable for 6 months under this condition.

FAQ-859
Why would clumps occur following the addition of Buffer P2 when using LyseBlue Reagent in a plasmid preparation?

Clumps that occur after addition of Buffer P2 in a bacterial lysate containing LyseBlue reagent indicate poor resuspension of the bacterial cell pellet in Buffer P1. This handling error leads to inefficient cell lysis, and incomplete precipitation of SDS, cell debris, and genomic DNA. When resuspending the cell pellet, vortexing longer or resuspending the pellet by pipetting up and down can help.

If cells have been resuspended properly in P1, “brownish areas” after P2 addition just indicate poor mixing of P1 and P2. To overcome this, continue mixing the solution by inverting it gently until a homogeneous blue suspension is achieved.

FAQ-862
Can I use LyseBlue with R.E.A.L. Prep 96, QIAwell Ultra, or QIAprep 96 Turbo Miniprep Kits for the BioRobot systems?

For high-throughput BioRobot plasmid isolation systems such as R.E.A.L. Prep 96, QIAwell Ultra, or QIAprep 96 Turbo Miniprep, there is no need for visual lysis control with LyseBlue reagent, because

  1. insufficient resuspension and lysis have not been observed with these systems
  2. automation systems already handle the lysis steps well enough
  3. optical reading capabilities are not implemented on our BioRobot platforms
FAQ-863
Do you have a protocol for isolation of plasmid DNA using the Sigma Centrifuge 4?

Yes, please follow the Supplementary Protocol 'Isolation of plasmid DNA (2x96) using the Sigma Centrifuge 4-15' (PR02).

FAQ-897