DNMT1 Protein (AA 1343-1570) (His tag)
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- 抗原 See all DNMT1 蛋白
- DNMT1 (DNA (Cytosine-5)-Methyltransferase 1 (DNMT1))
- 蛋白类型
- Recombinant
- 产品特性
- AA 1343-1570
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宿主
- 人
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资源
- 大肠杆菌(E. Coli)
- 标记
- This DNMT1 protein is labelled with His tag.
- 应用范围
- Western Blotting (WB), SDS-PAGE (SDS), Immunogen (Imm), Positive Control (PC)
- 序列
- Val1343-Leu1570
- 产品特性
- Location of tag(s): N-terminal
- 纯度
- > 95 %
- Top Product
- Discover our top product DNMT1 蛋白
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- 应用备注
- Optimal working dilution should be determined by the investigator.
- 说明
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Isoelectric Point:9.7
- 限制
- 仅限研究用
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- 状态
- Lyophilized
- 溶解方式
- Reconstitute in sterile PBS, pH 7.2 - pH 7.4.
- 缓冲液
- 20 mM Tris, 150 mM NaCl, pH 8.0, containing 1 mM EDTA, 1 mM DTT, 0.01 % SKL, 5 % Trehalose and Proclin300.
- 储存液
- ProClin
- 注意事项
- Avoid repeated freeze/thaw cycles
- 储存条件
- 4 °C,-80 °C
- 储存方法
- Store at 2-8°C for one month. Aliquot and store at -80°C for 12 months.
- 有效期
- 12 months
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- 抗原
- DNMT1 (DNA (Cytosine-5)-Methyltransferase 1 (DNMT1))
- 别名
- DNA Methyltransferase 1 (DNMT1 产品)
- 别名
- cb1075 Protein, cb983 Protein, dmnt1 Protein, fb05h01 Protein, mta Protein, wu:fb05h01 Protein, ADCADN Protein, AIM Protein, CXXC9 Protein, DNMT Protein, HSN1E Protein, MCMT Protein, DDM2 Protein, DECREASED DNA METHYLATION 2 Protein, DMT01 Protein, DMT1 Protein, DNA METHYLTRANSFERASE Protein, DNA METHYLTRANSFERASE 01 Protein, DNA METHYLTRANSFERASE 1 Protein, MET2 Protein, METHYLTRANSFERASE 2 Protein, METHYLTRANSFERASE I Protein, METI Protein, methyltransferase 1 Protein, Cxxc9 Protein, Dnmt Protein, Dnmt1o Protein, MTase Protein, Met-1 Protein, Met1 Protein, MommeD2 Protein, m.MmuI Protein, DNA methyltransferase 1 Protein, DNA (cytosine-5-)-methyltransferase 1 Protein, methyltransferase 1 Protein, DNA methyltransferase (cytosine-5) 1 Protein, DNMT1 Protein, dnmt1 Protein, Dnmt1 Protein, MET1 Protein
- 背景
- CXXC9, DNMT, MCMT, Cytosine-5 DNA Methyltransferase 1, CXXC-type zinc finger protein 9, DNA methyltransferase HsaI
- 分子量
- 29.6 kDa
- UniProt
- P26358
- 途径
- SARS-CoV-2 Protein Interactome, The Global Phosphorylation Landscape of SARS-CoV-2 Infection
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