Nb.Bpu10I (5 U/μL)
Nb.Bpu10I (5 U/μL)
Thermo Scientific™

Nb.Bpu10I (5 U/μL)

5' C C T N A G C 3‘ 3‘了解更多信息
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货号数量
ER16811,000 units
货号 ER1681
价格(CNY)
704.00
飞享价
Ends: 31-Dec-2025
1,003.00
共减 299.00 (30%)
Each
添加至购物车
数量:
1,000 units
请求批量或定制报价
价格(CNY)
704.00
飞享价
Ends: 31-Dec-2025
1,003.00
共减 299.00 (30%)
Each
添加至购物车
5'  C  C  T  N  A  G  C   3‘ 
3‘  G  G  A  N  T ↑C  G   5' 

Thermo Scientific Nb.Bpu10I 切口酶可识别 CCTNAGC 位点,于 37°C 下在 R 缓冲液中的切割效果最佳。有关本限制性内切酶及其他限制性内切酶的酶活性、双酶切条件和热灭活的表格,请参见限制性内切酶的反应条件

Thermo Scientific 常规限制性核酸内切酶是高质量限制性内切酶的大量汇集物,经过优化以便在五缓冲液系统的一种缓冲液中发挥作用。此外还提供通用 Tango 缓冲液,便于进行双酶切。所有酶在推荐的缓冲液和反应条件下均表现出 100% 活性。为确保稳定的内切酶活性,Thermo Scientific 限制性内切酶反应缓冲液中添加了 BSA,这不仅可以提高很多种内切酶的稳定性,而且还可以与 DNA 样品中的潜在污染物进行结合。

特性

• 卓越的质量—严格的质控和行业领先的生产工艺
• 方便的颜色标记 Five Buffer System
• 包括用于双重降解的通用 Tango 缓冲液
• BSA 在反应缓冲液中预混
• 广泛的限制性核酸内切酶特异性

应用
从体外超螺旋双链质粒产生单链圆形 DNA,随后用于 DNA 测序、特定位点突变等等 嵌套缺失创建 连接独立克隆方法的载体制备 共价闭合双链线性 DNA 分子的制备

备注:Nb.Bpu10I 可能会与已切断的 DNA 结合在一起。这会导致电泳中出现 DNA 条带漂移。为避免出现不典型的 DNA 电泳带型,请使用 6X DNA 上样染料及 SDS 溶液制备样品,或者在电泳前将 SDS 加入 DNA 酶切产物中并进行加热。
仅供科研使用。不可用于诊断程序。
规格
兼容缓冲液10X 缓冲液 R
产品类型限制性内切酶
数量1,000 units
最大浓度5 U/μL
Nb.Bpu10I
最佳反应温度37°C
研究类别传统方法克隆
对热失活敏感
类型 IIS RE
Unit SizeEach

常见问题解答 (FAQ)

Can I double digest my DNA using a Thermo Scientific conventional restriction enzyme and a FastDigest restriction enzyme?

For optimal results with fast reaction and 100% buffer compatibility, we highly recommend using FastDigest restriction enzymes in double digestion. In certain cases however, it may be possible to perform double digestion using a mix of Thermo Scientific conventional and Fastdigest restriction enzymes. For specific recommendations, please contact our technical service with detailed information about the enzymes and DNA template you plan to use.

Why do you recommend only 2 µL of 10X Reaction Buffer when digesting unpurified PCR product in a 30 µL reaction?

We recommend only 2 µl 10X Buffer in digestion of unpurified PCR products in 30 ul since salts and ions from the PCR reaction would be carried over to the digestion reaction.

Find additional tips, troubleshooting help, and resources within our Restriction Enzyme Cloning Support Center.

What are key factors promoting star activity?

Star activty may be contributed by:

• Prolonged incubation
• High enzyme concentration
• High glycerol concentration (usually 5% or higher)
• Small reaction volume

Find additional tips, troubleshooting help, and resources within our Restriction Enzyme Cloning Support Center.

Unexpected DNA bands were observed on agarose gel electrophoresis after restriction digestion. What may have caused this?

Unexpected cleavage patterns may be caused by the following reasons:

• Star activity of the restriction enzyme: Make sure to follow the reaction recommendations as specified in the protocol. Star activity may be improved by changing several key factors such as decreasing the reaction time, increasing the reaction volume, and decreasing the enzyme amount.

• Partial or incomplete cleavage (incomplete restriction reaction): Efficiency of the enzyme can be improved by adding more enzyme, prolonging the reaction time, or purifying DNA samples to remove inhibitory contaminants.

• Contamination with non-specific endonucleases: Non-specific endonucleases may be introduced to the DNA sample and/or the enzyme from improper handling, pipetting, etc.

•Improper reaction setup: Mix the digestion reaction thoroughly.

Find additional tips, troubleshooting help, and resources within ourRestriction Enzyme Cloning Support Center.

What are possible reasons for incomplete/failed restriction digestion?

The main reason for DNA cleavage reaction failure is the presence of contaminating inhibitors in the template DNA (for example: phenol, chloroform, detergents, ethanol, excess salts, EDTA, etc.). The best way to troubleshoot is to perform control reactions:

1) negative control (experimental DNA in the reaction buffer without the restriction enzyme) to access degradation of DNA by contaminants in the DNA template and/or reaction buffer
2) positive control reaction I (digestion of highly pure control DNA with the restriction enzyme) to access reaction conditions and enzyme activity
3) positive control reaction II (highly pure control DNA + experimental DNA + Restriction Enzyme) to access possible issues with the experimental DNA.

In addition, please check for sensitivity of the restriction enzymes to template DNA methylation.

Find additional tips, troubleshooting help, and resources within our Restriction Enzyme Cloning Support Center.