SAB4200752
Anti-Nuclease P1 antibody produced in rabbit
Ig fraction of antiserum, buffered aqueous solution
别名:
Anti-Deoxyribonuclease P1, Anti-Endonuclease P1
生物来源
rabbit
抗体形式
Ig fraction of antiserum
抗体产品类型
primary antibodies
克隆
polyclonal
表单
buffered aqueous solution
分子量
~30 kDa
浓度
~1 mg/mL
技术
immunoblotting: 1:10,000-1:20,000 using Nuclease P1 from Penicillium citrinum
UniProt登记号
运输
dry ice
储存温度
−20°C
靶向翻译后修饰
unmodified
一般描述
Nuclease P1 (Nuclease 5′-Nucleotidehydrolase, 3′- Phosphohydrolase, EC 3.1.30.1), also known as deoxyribonuclease P1 or endonuclease P1, is a zinc dependent endonuclease. It is isolated from Penicillium citrinum.
免疫原
Nuclease P1 from Penicillium citrinum
应用
Anti-Nuclease P1 antibody produced in rabbit has been used in immunoblotting.
生化/生理作用
Nuclease P1 catalyzes the hydrolysis of 3′-5′ phosphodiester bonds in RNA and single-stranded DNA and 3′-phosphomonoester bonds in mono- and oligonucleotides terminated by a 3′-phosphate group without apparent bases specificity. The enzyme is used as a component of nuclease cocktail to generate single-stranded oligodeoxynucleotide (ODNs) samples for mass spectroscopy research for characterization of oligodeoxyribonucleotides. Nuclease P1 has also been widely used in the food industry to enhance or create flavor.
外形
Solution in 0.01 M phosphate buffered saline, pH 7.4, containing 15 mM sodium azide.
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储存分类代码
10 - Combustible liquids
WGK
WGK 2
闪点(°F)
Not applicable
闪点(°C)
Not applicable
法规信息
新产品
此项目有
Identity of Phosphodiesterase and Phosphomonoesterase Activities with Nuclease P1 (a Nuclease from Penicillium citrinum)
Fujimoto, M., et al.
Agricultural and Biological Chemistry, 38, 785-790 (1974)
Nuclease digestion and mass spectrometric characterization of oligodeoxyribonucleotides containing 1, 2-GpG, 1, 2-ApG, and 1, 3-GpXpG cisplatin intrastrand cross-links
Williams RT, et al.
Clinica Chimica Acta; International Journal of Clinical Chemistry, 420(6), 160-170 (2013)
Production, purification and characterization of nuclease p1 from Penicillium citrinum
Guo-Qing Y, et al.
Process Biochemistry (Oxford, United Kingdom), 41(6), 1276-1281 (2006)
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