CLCC1 Protein (AA 1-501) (GST tag)
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- 抗原 See all CLCC1 蛋白
- CLCC1 (Chloride Channel CLIC-Like 1 (CLCC1))
- 蛋白类型
- Recombinant
- 产品特性
- AA 1-501
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宿主
- 人
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资源
- 小麦胚
- 标记
- This CLCC1 protein is labelled with GST tag.
- 应用范围
- ELISA, Western Blotting (WB), Antibody Array (AA), Affinity Purification (AP)
- 原理
- CLCC1 (Human) Recombinant Protein (P01)
- 序列
- MLCSLLLCEC LLLVAGYAHD DDWIDPTDML NYDAASGTMR KSQAKYGISG EKDVSPDLSC ADEISECYHK LDSLTYKIDE CEKKKREDYE SQSNPVFRRY LNKILIEAGK LGLFHDFETW KWRFEDSFGV DPYNVLMVLL CLLCIVVLVA TELWTYVRWY TQLRRVLIIS FLFSLGWNWM YLYKLAFAQH QAEVAKMEPL NNVCAKKMDW TGSIWEWFRS SWTYKDDPCQ KYYELLLVNP IWLVPPTKAL AVTFTTFVTE PLKHIGKGTG EFIKALMKEI PALLHLPVLI IMALAILSFC YGAGKSVHVL RHIGGPESEP PQALRPRDRR RQEEIDYRPD GGAGDADFHY RGQMGPTEQG PYAKTYEGRR EILRERDVDL RFQTGNKSPE VLRAFDVPDA EAREHPTVVP SHKSPVLDTK PKETGGILGE GTPKESSTES SQSAKPVSGQ DTSGNTEGSP AAEKAQLKSE AAGSPDQGST YSPARGVAGP RGQDPVSSPC G
- 产品特性
- Human CLCC1 full-length ORF ( NP_055942.1, 1 a.a. - 501 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
- CLCC1 (Chloride Channel CLIC-Like 1 (CLCC1))
- 别名
- CLCC1 (CLCC1 产品)
- 别名
- CLCC1 Protein, clcc1 Protein, MCLC Protein, Mclc Protein, chloride channel CLIC like 1 Protein, Chloride channel CLIC-like protein 1 Protein, chloride channel CLIC-like 1 Protein, chloride channel CLIC-like 1 S homeolog Protein, CLCC1 Protein, clcc1 Protein, Clcc1 Protein, clcc1.S Protein
- 背景
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Full Gene Name: chloride channel CLIC-like 1
Synonyms: KIAA0761,MCLC - 基因ID
- 23155
- NCBI登录号
- NM_015127
- 途径
- SARS-CoV-2 Protein Interactome, The Global Phosphorylation Landscape of SARS-CoV-2 Infection
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