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enzyme (lysozyme)

 
Enzymes
  Enzyme classes:
  EC 1: Oxidoreductases
  EC 2: Transferases
  EC 3: Hydrolases
    EC 3.1
    EC 3.2
    EC 3.3
    EC 3.4
    EC 3.5
    EC 3.6
      EC 3.6.1
      EC 3.6.2
      EC 3.6.3
        EC 3.6.3.1
        EC 3.6.3.2
        EC 3.6.3.3
        EC 3.6.3.4
        EC 3.6.3.5
        EC 3.6.3.6
        EC 3.6.3.7
        EC 3.6.3.8
        EC 3.6.3.9
        EC 3.6.3.10
        EC 3.6.3.11
        EC 3.6.3.12
        EC 3.6.3.13
        EC 3.6.3.14
        EC 3.6.3.15
        EC 3.6.3.16
        EC 3.6.3.17
        EC 3.6.3.18
        EC 3.6.3.19
        EC 3.6.3.20
        EC 3.6.3.21
        EC 3.6.3.22
        EC 3.6.3.23
        EC 3.6.3.24
        EC 3.6.3.25
        EC 3.6.3.26
        EC 3.6.3.27
        EC 3.6.3.28
        EC 3.6.3.29
        EC 3.6.3.30
        EC 3.6.3.31
        EC 3.6.3.32
        EC 3.6.3.33
        EC 3.6.3.34
        EC 3.6.3.35
        EC 3.6.3.36
        EC 3.6.3.37
        EC 3.6.3.38
        EC 3.6.3.39
        EC 3.6.3.40
        EC 3.6.3.41
        EC 3.6.3.42
        EC 3.6.3.43
        EC 3.6.3.44
        EC 3.6.3.45
        EC 3.6.3.46
        EC 3.6.3.47
        EC 3.6.3.48
        EC 3.6.3.49
        EC 3.6.3.50
        EC 3.6.3.51
        EC 3.6.3.52
        EC 3.6.3.53
      EC 3.6.4
      EC 3.6.5
    EC 3.7
    EC 3.8
    EC 3.9
    EC 3.10
    EC 3.11
    EC 3.12
    EC 3.13
  EC 4: Lyases
  EC 5: Isomerases
  EC 6: Ligases
  General information:
  Catalytic mechanism
  Enzyme kinetics
  Inhibitors
  Enzymes in industry

EC 3.6.3.51 - ATP phosphohydrolase (mitochondrial protein- importing) (mitochondrial protein- transporting ATPase)



3D structures of EC 3.6.3.51 - mitochondrial protein-transporting ATPase in Protein Data Bank

updated: 6 January 2022, 2:15

In total: 22 PDB structures of EC 3.6.3.51 - mitochondrial protein-transporting ATPase:
  1. 5ar0: Hsp72 with Adenosine-derived Inhibitor
  2. 5aqz: Hsp72 with Adenosine-derived Inhibitor
  3. 5aqy: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  4. 5aqx: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  5. 5aqw: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  6. 5aqv: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  7. 5aqu: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  8. 5aqt: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  9. 5aqs: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  10. 5aqr: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  11. 5aqq: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  12. 5aqp: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  13. 5aqo: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  14. 5aqn: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  15. 5aqm: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  16. 5aql: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  17. 5aqk: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  18. 5aqj: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  19. 5aqi: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  20. 5aqh: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  21. 5aqg: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
  22. 5aqf: Fragment-based Screening of Hsp70 Sheds Light on The Functional Role of Atp-binding Site Residues
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