Search Count: 457
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Organism: Thermus thermophilus hb8, Discosoma sp.
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: FLUORESCENT PROTEIN Ligands: CA, 2OP |
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Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ADP, ATP |
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Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Cryo-Em Structure Of The Vo Domain Of V/A-Atpase Under Pmf Condition, State3A
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Cryo-Em Structure Of The Vo Domain Of V/A-Atpase Under Pmf Condition, State3B
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Cryo-Em Structure Of The Vo Domain Of V/A-Atpase Under Pmf Condition, State3C
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Cryo-Em Structure Of The Vo Domain Of V/A-Atpase Under Pmf Condition, State3D
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under No Pmf Condition, State1W
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under No Pmf Condition, State1M
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under No Pmf Condition, State1N
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ADP, PO4 |
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Cryo-Em Structure Of The Vo Domain Of V/A-Atpase In Liposomes Under No Pmf Condition,State1
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under Pmf Condition, State1W
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ATP, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under Pmf Condition, State1M
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ATP, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under Pmf Condition, State1N
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ATP, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under Pmf Condition, State3W
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ATP, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under Pmf Condition, State3M
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ATP, ADP, PO4 |
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Cryo-Em Structure Of The V1 Domain Of V/A-Atpase In Liposomes Under Pmf Condition, State3N
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-29 Classification: MOTOR PROTEIN Ligands: MG, ATP, ADP, PO4 |
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Cryoem Structure Of The T.Thermophilus Transcription Initiation Complex Bound To Atp-C, -1 Dc In The Template Dna Strand
Organism: Thermus thermophilus hb8
Method: ELECTRON MICROSCOPY Release Date: 2025-10-22 Classification: TRANSCRIPTION Ligands: MG, 1N7, ZN, C5P, ATP |




















