Modelled DT Structure
Method: homology modeling
Template PDB: 4X82_A
Identity: 68.013%
Minimized Score: -597.421 kcal/mol
Detail: Structure Info
| General Information of DT | |||||
|---|---|---|---|---|---|
| DT ID | DTD0345 | ||||
| Gene Name | SLC39A4 | ||||
| Protein Name | Zinc transporter ZIP4 | ||||
| Gene ID | |||||
| UniProt ID | |||||
| TCDB ID | |||||
| 3D Structure |
Modelled DT Structure Method: homology modeling Template PDB: 4X82_A Identity: 68.013% Minimized Score: -597.421 kcal/mol Detail: Structure Info |
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| Synonyms | AEZ; AWMS2; SLC39A4; Solute carrier family 39 member 4; ZIP-4; ZIP4; Zinc transporter ZIP4 | ||||
| DT Family | Zinc (Zn(2+))-Iron (Fe(2+)) Permease (ZIP) Family ; | ||||
| Tissue Specificity | Highly expressed in kidney, small intestine,stomach, colon, jejunum and duodenum. | ||||
| Function | This transporter regulated in response to zinc availability and plays an important role in cellular zinc homeostasis as a zinc transporter. | ||||
| Endogenous Substrate(s) | Zn2+ | ||||
| Variability Data of This Drug Transporter (DT) | |||||
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Regulatory Variability Data of This DT (VARIDT 3.0) |
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(α) Microbiota Influence of This DT |
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(β) Post-translational Modification of This DT |
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(γ) Transcriptional Regulation of This DT |
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(δ) Epigenetic Regulation of This DT |
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(ε) Exogenous Modulation of This DT |
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Structural Variability Data of This DT (VARIDT 2.0) |
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(β) Inter-species Structural Differences |
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General Variability Data of This DT (VARIDT 1.0) |
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(β) Disease-specific Protein Abundances of This DT |
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(γ) Species- and Tissue-specific DT Abundances |
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| Molecular Transporting Profile of This DT | |||||
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Full List of Drug(s) Transported by This DT |
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Withdrawn, Discontinued or Preclinical Drug |
Click to Show/Hide the Full List of Drug: 1 Drugs in Total | ||||
| Drug Name | Highest Status | Detail | Indication | ICD 11 | Ref |
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Zinc salts
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Preclinical | Drug Info | Arthritis | FA5Z | [1] |
| References | |||||
| 1 | Extreme population differences in the human zinc transporter ZIP4 (SLC39A4) are explained by positive selection in Sub-Saharan Africa. PLoS Genet. 2014 Feb 20;10(2):e1004128. | ||||
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