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  1. 2cfz (5,650 bytes)
    24: ...thus represents a previously undescribed class of sulfatases that allows P. aeruginosa to survive and thrive u...
    26: ... Pseudomonas aeruginosa, defines a third class of sulfatases.,Hagelueken G, Adams TM, Wiehlmann L, Widow U, Ko...
  2. 2cfu (5,731 bytes)
    24: ...thus represents a previously undescribed class of sulfatases that allows P. aeruginosa to survive and thrive u...
    26: ... Pseudomonas aeruginosa, defines a third class of sulfatases.,Hagelueken G, Adams TM, Wiehlmann L, Widow U, Ko...
  3. 1fsu (7,333 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...his suggests an archetypal fold for the family of sulfatases. A catalytic role is proposed for the post-transl...
  4. 1auk (7,359 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...elding a formylglycine. Without this modification sulfatases are catalytically inactive, as revealed by a lyso...
  5. 1hdh (5,102 bytes)
    24: ...the resting state of the key catalytic residue in sulfatases is a formylglycine hydrate. These structural data...
  6. 2cg3 (5,563 bytes)
    24: ...thus represents a previously undescribed class of sulfatases that allows P. aeruginosa to survive and thrive u...
    26: ... Pseudomonas aeruginosa, defines a third class of sulfatases.,Hagelueken G, Adams TM, Wiehlmann L, Widow U, Ko...
  7. 2cg2 (5,582 bytes)
    24: ...thus represents a previously undescribed class of sulfatases that allows P. aeruginosa to survive and thrive u...
    26: ... Pseudomonas aeruginosa, defines a third class of sulfatases.,Hagelueken G, Adams TM, Wiehlmann L, Widow U, Ko...
  8. 1e1z (7,624 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...serine residue. The crystal structures of two arylsulfatases, ASA and ASB, and kinetic studies on ASA mutants ...
  9. 1e2s (7,712 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...serine residue. The crystal structures of two arylsulfatases, ASA and ASB, and kinetic studies on ASA mutants ...
  10. 1e33 (7,192 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
  11. 1e3c (7,655 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...serine residue. The crystal structures of two arylsulfatases, ASA and ASB, and kinetic studies on ASA mutants ...
  12. 1n2k (6,816 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
  13. 1n2l (6,815 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
  14. 1y1e (5,071 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...atalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a c...
  15. 1y1f (5,157 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...atalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a c...
  16. 1y1g (5,161 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...atalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a c...
  17. 1y1h (5,171 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...atalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a c...
  18. 1y1i (5,086 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...atalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a c...
  19. 1y1j (5,243 bytes)
    11: ...rder caused by the simultaneous impairment of all sulfatases, due to defective post-translational modification...
    26: ...atalytic residue in the active site, is unique to sulfatases. In higher eukaryotes, FGly is generated from a c...
  20. 1y4j (4,974 bytes)
    11: ... to their active form. Inhibits the activation of sulfatases by SUMF1.<ref>PMID:12757706</ref> <ref>PMID:15708...
    24: In eukaryotes, sulfate esters are degraded by sulfatases, which possess a unique Calpha-formylglycine resi...

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