Detail Information of DT Wildtype Structure
General Information of Drug Transporter (DT) | ||||||
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DT ID | DTD0034 Transporter Info | |||||
Gene Name | SLC18A2 | |||||
Transporter Name | Vesicular amine transporter 2 | |||||
Gene ID | ||||||
UniProt ID | ||||||
Experimental Structures of This DT | ||||||
PDB ID | Scanning Method | Resolution | Expression System | Details | Ref | |
8JSW | EM | 2.84 Å | Homo sapiens | [1] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8JSX | EM | 3.16 Å | Homo sapiens | [2] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8JT5 | EM | 3.06 Å | Homo sapiens | [2] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8JT9 | EM | 2.97 Å | Homo sapiens | [1] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8JTA | EM | 3.36 Å | Homo sapiens | [1] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8JTB | EM | 2.93 Å | Homo sapiens | [2] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8JTC | EM | 3.52 Å | Homo sapiens | [1] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 457 | Mutation | No | |||
8T69 | EM | 2.89 Å | Homo sapiens | [3] | ||
Structure | ||||||
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Corresponding chain | A | |||||
Sequence Length | 496 | Mutation | No | |||
Modelled Structures of This DT | ||||||
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Detail Information of Modelled Structures | ||||||
Method | multi-sequence alignment based machine learning | |||||
AlphaFold Protein Structure Database | ||||||
References | ||||||
1 | Transport and inhibition mechanisms of human VMAT2. Nature. 2024;626(7998):427-434. | |||||
2 | Structural snapshots of human VMAT2 reveal insights into substrate recognition and proton coupling mechanism. Cell Res. 2024;34(8):586-589. | |||||
3 | Mechanisms of neurotransmitter transport and drug inhibition in human VMAT2. Nature. 2023;623(7989):1086-1092. | |||||
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