Maxima H Minus First Strand cDNA Synthesis Kit
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Maxima H Minus First Strand cDNA Synthesis Kit
Thermo Scientific™

Maxima H Minus First Strand cDNA Synthesis Kit

Thermo Scientific Maxima H Minus First Strand cDNA Synthesis Kit, available with or without dsDNase, is a complete system for highly efficient synthesis of first strand cDNA.
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카탈로그 번호포함반응 수
K1681Kit with dsDNase20 Reactions
K1651Kit only20 Reactions
K1652Kit only100 Reactions
K1682Kit with dsDNase100 Reactions
카탈로그 번호 K1681
제품 가격(KRW)
198,000
온라인 행사
Ends: 31-Dec-2025
219,000
할인액 21,000 (10%)
Each
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포함:
Kit with dsDNase
반응 수:
20 Reactions
대량 주문 또는 맞춤형 요청
제품 가격(KRW)
198,000
온라인 행사
Ends: 31-Dec-2025
219,000
할인액 21,000 (10%)
Each
카트에 추가하기
Thermo Scientific Maxima H Minus First Strand cDNA Synthesis Kit, available with or without dsDNase, is a complete system for highly efficient synthesis of first strand cDNA. The kit uses the Maxima H Minus Reverse Transcriptase (RT), which is an advanced enzyme derived by in vitro evolution of MMLV RT. The enzyme features the highest thermostability among the derivatives of MMLV RT and lacks RNase H activity.

This kit allows synthesis of long cDNAs up to 20 kb at elevated temperatures (up to 65°C), superseding other systems' abilities to produce full-length cDNA. Due to increased synthesis rates the reaction can be completed in 30 minutes.

For reverse transcription the kit uses Maxima H Minus Reverse Transcriptase (RT), which is an advanced enzyme derived by in vitro evolution of MMLV RT.

The Maxima H Minus First Strand cDNA Synthesis Kit with dsDNase provides a dramatically simplified workflow that combines genomic DNA elimination and cDNA synthesis into one-tube procedure. The kit contains a novel double-strand-specific DNase (dsDNase) engineered to remove contaminating genomic DNA from RNA preps in two minutes without damage to quality or quantity of RNA. Highly specific dsDNase activity towards double-stranded DNA ensures that single-stranded DNA (such as cDNA and primers) is not cleaved, and dsDNase treated RNA can be directly added to reverse transcription.

Features of the Maxima H Minus First Strand cDNA Synthesis Kit include:
• Increased reaction temperatures—the first strand of cDNA can be synthesized within the 42–65°C temperature range
• High yields of full-length first strand cDNA—with RNA templates up to 20 kb
• Flexible priming—oligo(dT)18, random hexamer or gene-specific primers
• Integrated genomic DNA removal step with dsDNase kit

Applications
• First Strand cDNA synthesis for RT-PCR
• Construction of cDNA libraries
• Generation of probes for hybridization
• Antisense RNA synthesis

Contents
• Maxima H Minus Enzyme Mix
• Oligo(dT)18 and Random hexamer primers
• 5X RT Buffer
• dNTP Mix
• Nuclease-free water

First Strand Synthesis Kit with dsDNase also contains
• dsDNase and 10X dsDNase Buffer

Additional information about reaction components
• Maxima H Minus Enzyme Mix contains Maxima H Minus Reverse Transcriptase and RiboLock RNase Inhibitor. RiboLock RNase Inhibitor effectively protects RNA templates from degradation by RNases A, B, and C at temperatures up to 55°C.
• Oligo(dT)18 and random hexamer primers are supplied with the kit. Random hexamer primers bind non-specifically and are used to synthesize cDNA from all RNAs in a total RNA population. The oligo(dT)18 primer selectively anneals to the 3'-end of poly(A) RNA, synthesizing cDNA only from poly(A) tailed mRNA. Gene-specific primers may also be used with the kit to prime synthesis from a specified sequence.
• 10 mM dNTP Mix is a premixed aqueous solution of dATP, dTTP, dCTP, and dGTP.
• Nuclease-free water is provided for reaction set-up and dilution of sample DNA. The absence of endo-, exodeoxyribonucleases, ribonucleases, and phosphatases has been confirmed by appropriate quality tests.

For Research Use Only. Not for use in diagnostic procedures.
사양
최종 제품 유형First-Strand cDNA
형식Kit
포함Kit with dsDNase
반응 수20 Reactions
최적 반응 온도50°C to 55°C
수량Each
반응 형식Separate components
시약 유형Reverse Transcription
역전사 효소Maxima H Minus
리보뉴클레아제 H 활성Reduced
배송 조건Dry Ice
크기(최종 제품)Up to 20 kb
시작 물질RNA
기술Reverse Transcription
용도(애플리케이션)RT-PCR
GC-Rich PCR PerformanceHigh
반응 속도30 min.
Unit SizeEach
구성 및 보관

• Maxima H Minus Enzyme Mix
• dsDNase
• 10X dsDNase Buffer
• Oligo(dT)18 and Random hexamer primers
• 5X RT Buffer
• dNTP Mix
• Nuclease-free water

Store at –20°C.

자주 묻는 질문(FAQ)

How can I inactivate Thermo Scientific dsDNase?

dsDNase can be inactivated by incubating the sample at 55°C for 5 min in the presence of 10 mM DTT.

When should I choose regular RevertAid RT or Maxima RT vs. RevertAid H-minus RT or Maxima H-minus RT?

It is generally beneficial to minimize RNase H activity when aiming to produce long transcripts for cDNA cloning. RNase H degrades RNA from RNA-DNA duplexes, which can result in truncated cDNA during reverse transcription of long mRNA. We also recommended using RNase H-minus RTs for template-independent addition of C nucleotides.

Do Thermo Scientific reverse transcriptases (RevertAid RT, RevertAid H-minus RT, Maxima RT, and Maxima H-minus RT) possess terminal deoxynucleotidyl (TdT) activity?

All Thermo Scientific reverse transcriptases possess intrinsic TdT activity although at varying degrees depending upon the reaction conditions. For addition of template-independent C nucleotides (as for SMART and RACE experiments), this specific TdT activity can be induced by Mn2+. We would recommend Maxima H- or RevertAid H- minus RTs for this purpose.

Does dsDNase cleave ssDNA?

No, dsDNase cleaves only double-stranded DNA. However, if ssDNA forms double-stranded structures, it will act as a target for dsDNase. Because of this, long and complex ssDNA may be partially degraded. Therefore we recommend additional dsDNase inactivation step for RT-PCR amplification of targets 3 kb or longer. The inactivation step should be performed by 5 min incubation at 55 degrees C in the presence of 10 mM DTT.

Can dsDNase be added directly to a reverse transcription reaction to remove genomic DNA?

No. RT reaction composition inhibits dsDNase activity, and genomic DNA removal may be incomplete.