SLC39A6 Protein (His tag)
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- Target See all SLC39A6 Proteins
- SLC39A6 (Solute Carrier Family 39 (Zinc Transporter), Member 6 (SLC39A6))
- Protein Type
- Recombinant
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Origin
- Cynomolgus
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Source
- HEK-293 Cells
- Purification tag / Conjugate
- This SLC39A6 protein is labelled with His tag.
- Purpose
- Cynomolgus LIV-1 / SLC39A6 Protein, His Tag, low endotoxin
- Sequence
- Leu 21 - Ile 309
- Characteristics
- Cynomolgus LIV-1, His Tag (LV1-C52H6) is expressed from human 293 cells (HEK293). It contains AA Leu 21 - Ile 309 (Accession # XP_005586923.1).
- Purity
- >90 % as determined by SDS-PAGE.
- Endotoxin Level
- Less than 0.05 EU per μg by the LAL method.
- Top Product
- Discover our top product SLC39A6 Protein
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- Application Notes
- This protein carries a polyhistidine tag at the C-terminus. The protein has a calculated MW of 34.5 kDa. The protein migrates as 55-65 kDa under reducing (R) condition due to glycosylation.
- Restrictions
- For Research Use only
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- Format
- Lyophilized
- Buffer
- PBS, pH 7.4
- Storage
- -20 °C
- Storage Comment
- -20°C
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- Target
- SLC39A6 (Solute Carrier Family 39 (Zinc Transporter), Member 6 (SLC39A6))
- Alternative Name
- LIV-1 / SLC39A6 (SLC39A6 Products)
- Synonyms
- liv1 Protein, wu:fc25a09 Protein, ZIP6 Protein, Ermelin Protein, LIV-1 Protein, solute carrier family 39 (zinc transporter), member 6 Protein, solute carrier family 39 member 6 Protein, solute carrier family 39 (metal ion transporter), member 6 Protein, slc39a6 Protein, SLC39A6 Protein, Slc39a6 Protein
- Background
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Synonyms: SLC39A6,LIV-1,ZIP6,Zinc transporter ZIP6,ZIP-6,
Description: LIV-1 is also known as SLC39A6, ZIP-6 and Zinc transporter ZIP6. May act as a zinc-influx transporter. Highly expressed in the breast, prostate, placenta, kidney, pituitary and corpus callosum. Weakly expressed in heart and intestine. Also highly expressed in cells derived from an adenocarcinoma of the cervix and lung carcinoma. Up-regulated by estrogen in breast cancer cells lines. - Molecular Weight
- 34.5 kDa
- NCBI Accession
- XP_005586923
- Pathways
- Transition Metal Ion Homeostasis
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