ATP7A Protein (AA 1406-1500) (GST tag)
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- 抗原 See all ATP7A 蛋白
- ATP7A (ATPase, Cu++ Transporting, alpha Polypeptide (ATP7A))
- 蛋白类型
- Recombinant
- 产品特性
- AA 1406-1500
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宿主
- 人
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资源
- 小麦胚
- 标记
- This ATP7A protein is labelled with GST tag.
- 应用范围
- Western Blotting (WB), ELISA, Antibody Array (AA), Affinity Purification (AP)
- 原理
- ATP7A (Human) Recombinant Protein (Q01)
- 序列
- FLKLYRKPTY ESYELPARSQ IGQKSPSEIS VHVGIDDTSR NSPKLGLLDR IVNYSRASIN SLLSDKRSLN SVVTSEPDKH SLLVGDFRED DDTAL
- 产品特性
- Human ATP7A partial ORF ( NP_000043, 1406 a.a. - 1500 a.a.) recombinant protein with GST-tag at N-terminal.
- 纯化方法
- in vitro wheat germ expression system
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- 应用备注
- Optimal working dilution should be determined by the investigator.
- 说明
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Preparation method: in vitro, wheat germ expression system
Product Quality tested by: 12.5% SDS-PAGE Stained with Coomassie Blue. - 限制
- 仅限研究用
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- 缓冲液
- 50 mM Tris-HCI, 10 mM reduced Glutathione, pH =8.0 in the elution buffer.
- 注意事项
- Aliquot to avoid repeated freezing and thawing.
- 储存条件
- -80 °C
- 储存方法
- Best use within three months from the date of receipt of this protein.
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- 抗原
- ATP7A (ATPase, Cu++ Transporting, alpha Polypeptide (ATP7A))
- 别名
- ATP7A (ATP7A 产品)
- 别名
- ATP7A Protein, cal Protein, wu:fc43e01 Protein, zgc:153422 Protein, zgc:158633 Protein, DDBDRAFT_0218568 Protein, DDBDRAFT_0235190 Protein, DDB_0218568 Protein, DDB_0235190 Protein, atpase Protein, Atp7a Protein, kal Protein, atp7a Protein, DSMAX Protein, MK Protein, MNK Protein, SMAX3 Protein, Blo Protein, DXHXS1608e Protein, I14 Protein, Mo Protein, blotchy Protein, br Protein, brindled Protein, mottled Protein, Mnk Protein, ATPase copper transporting alpha Protein, ATPase, Cu++ transporting, alpha polypeptide Protein, P-type ATPase Protein, ATP synthase subunit a Protein, copper-transporting ATPase 1 Protein, ATP7A Protein, atp7a Protein, LOC100049514 Protein, Atp7a Protein, LOC412379 Protein
- 背景
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Full Gene Name: ATPase, Cu++ transporting, alpha polypeptide
Synonyms: FLJ17790,MK,MNK - 基因ID
- 538
- NCBI登录号
- NM_000052
- 途径
- Transition Metal Ion Homeostasis, Ribonucleoside Biosynthetic Process
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