EP2402437A2

Protease screening methods and proteases identified thereby

Abstract

Methods for identifying modified proteases with modified substrate specificity or other properties are provided. The methods screen candidate and modified proteases by contacting them with a substrate, such as a serpin, an alpha macro globulins or a p35 5 family protein or modified serpins and modified p35 family members or modified alpha macroglobulins, that, upon cleavage of the substrate, traps the protease by forming a stable complex. Also provided are modified proteases

EP2402437A2, drawing sheet 1
Sheet 1 of 4

Term

0.8 yearsto projected expiry

Projected expiry 5 July 2027, counted from filing; an application has no term until it is granted.

  1. Priority and filed
  2. Published
  3. Today
  4. Projected expiry

30 claims: 11 independent, 19 dependent

  1. 1
    A modified matrix type serine protease I (MT-SP1) polypeptide or a catalytically active portion thereof, comprising an amino acid replacement in a position corresponding to a position selected from among positions 23, 52, 60(g), 65, 71, 93, 95, 126, 129, 131, 136, 143, 144, 154, 164, 166, 184(a), 201, 209, 230, 234, and 244 , based on chymotrypsin numbering, whereby substrate specificity or activity is altered compared to the MT-SP1 polypeptide not containing the amino acid replacement(s).
  2. 5
    The modified MT-SP1 polypeptide or catalytically active fragment thereof of any of claims 1-4, wherein the MT-SP1 polypeptide or catalytically active portion thereof contains amino acid replacements selected from among I136T/N164D/T166A/F184(A)L/D217V;I41F/ A126T/V244G;D23E/I41F/T98P/T144I;I41F/ L171F/V244G;H143R/Q175R;I41F /I154V/V244G;I141F/L52M/ V129D/Q221(A)L;F97Y/ I136V/Q192H/S201I;H71R/ P131S/D217V;T65K/F93L/F97Y/ D217V;I41T/ P173S/Q209L and F97L/ F234L.
  3. 6
    A modified Matrix type serine protease I (MT-SP1) polypeptide or a catalytically active portion thereof, comprising one or more amino acid modifications selected from among T65K, F97Y, F97L, T98P, F99L, L171F, P173S, Q192H, and Q221(a)L, based on chymotrypsin numbering, whereby substrate specificity or activity is altered compared to the MT-SP1 polypeptide not containing the mutation(s).
  4. 9
    The modified MT-SP1 polypeptide or catalytically active fragment thereof of any of claims 1-8, wherein the modifications are in an MT-SP1 polypeptide having a sequence of amino acids set forth in SEQ ID NO:253, or are in a catalytically active portion of an MT-SP1 having a sequence of amino acids set forth in SEQ ID NO: 505.
  5. 10
    The modified MT-SP1 polypeptide or catalytically active fragment thereof of any of claims 1-9, wherein the modifications are in an MT-SP1 polypeptide further comprising a modification corresponding to modification of C122S in an MT-SP1 polypeptide set forth in SEQ ID NO:253, based on chymotrypsin numbering.
  6. 12
    The modified MT-SP1 polypeptide or catalytically active fragment thereof of any of claims 1-9, wherein:the MT-SP1 polypeptide has 80%, 85%, 90%, 91%, 92%, 93%, 94%, 95%, 96%, 97%, 98%, 99% or more sequence identity with a wild-type MT-SP1 polypeptide set forth in SEQ ID NO:253, or a catalytically active portion thereof set forth in SEQ ID NO:505;and the polypeptide includes the one or more modifications.
  7. 13
    The modified MT-SP1 polypeptide or catalytically active fragment thereof of any of claims 1-11, wherein the modifications increase one or both of specificity for a C2 complement protein or activity towards C2 complement protein.
  8. 14
    The modified MT-SP1 polypeptide or catalytically active portion thereof of any of claims 1-13 that has a sequence of amino acids set forth in any of SEQ ID NOS:568-609.
  9. 15
    A pharmaceutical composition, comprising a modified MT-SP1 polypeptide or catalytically active fragment thereof of any of claims 1-14.
  10. 17
    A nucleic acid molecule, comprising a sequence of nucleotides that encodes any one of the modified MT-SP1 polypeptides or catalytically active fragment thereof of claims 1-14.
  11. 24
    A method for identifying or selecting a mutant protease or catalytically active portion thereof that cleaves a cleavage sequence in a protein target substrate, comprising:a) contacting a collection comprising a plurality of different mutant proteases and/or catalytically active portions that comprise the mutation(s) with a protease trap polypeptide, wherein: the protease trap polypeptide comprises a reactive site containing the cleavage sequence;contacting is effected under conditions for cleavage of amino acids in the cleavage sequence included in the reactive site in the protease trap polypeptide by a protease or a catalytically active portion thereof in the collection;and upon cleavage of amino acids in the cleavage sequence included in the reactive site in the protease trap polypeptide by a protease or catalytically active portion thereof in the collection, the protease trap polypeptide forms a covalent bond with the protease or catalytically active portion thereof to form a stable complex containing a protease or catalytically active portion thereof with a protease trap polypeptide;b) separating the complexed proteases from uncomplexed members of the collection;and c) identifying or selecting a protease or catalytically active portion thereof in a complex, to identify or select a protease or catalytically active portion thereof that cleaves the cleavage sequence in the protease trap polypeptide, thereby identifying or selecting a mutant protease or catalytically active portion thereof that cleaves the protein target substrate.
  12. 27
    The method of any of claims 24-26, wherein the protease is a serine protease, cysteine protease, or catalytically active portion thereof and is selected from among granzyme B, testisin, trypstase beta 1, kallikrein hk5, corin, kallikrein 12, DESC1 oritesase, trypstase gamma 1, kallikrein hK14, hyaluronan-binding serine protease, tryptase, kallikrein hK15, trypsin, neutrophil elastase, mannan-binding lectin-associated serine protease-3, cathepsin G, myeloblastin, granzyme A, granzyme M, chymase, granzyme K, granzyme H, chymotrypsin B, pancreatic elastase, pancreatic endopeptidase E, pancreatic elastaste II, enteropeptidase, chymotrypsin C, prostasin, kallikrein 1, kallikrein hK2, kallikrein 3, human kallikrein 8, mesotrypsin, Factor XII, plasma kallikrein KLK3, factor XI, factor IX, factor VII, factor Xa, thrombin, protein C, acrosin, hepsin, hepatocyte growth factor activator, urinary plasminogen activator (uPA), tissue plasminogen activator (tPA), plasmin, neurosin, neurotrypsin, neuropsin, kallikrein hK10, epitheliasin, prostase, chymopasin, kallikrein 11, MT-SP1, spinesin, cathepsin L, cathepsin V, cathepsin K, cathepsin S, cathepsin F, cathepsin B, papain, cruzain, subtilisin, thermitase, C5a peptidase, fervidolysin, lactocepin, furin, kexin, caspase-1, caspase-3, caspase-7, caspase-6, caspase-2, caspase-4, caspase-5, caspase-8, caspase-9, caspase-10, caspase-11, caspase-12, caspase-1, caspase-13, and caspase-14.
  13. 28
    The method of any of claims 24-27, wherein the protease trap polypeptide is modified in its reactive site by one or more amino acid replacements, deletions or substitutions to include the cleavage sequence of the protein target substrate.
  14. 29
    The method of any of claims 24-28, wherein the target substrate is involved in the etiology of a disease or disorder.
  15. 30
    The method of any of claims 24-29, wherein the target substrate is selected from among an IL-5, IL-5 receptor, IL-1, IL-1 receptor, IL-13, IL-13 receptor, IL-12, IL-12 receptor, IL-4, IL-4 receptor, TNF, TNF receptor, CCR5, CXCR4, gp120, gp141, CD4, RSV fusion protein, hemaglutinin, B7, CD28, IgE, IgE receptor, CD2, CD3, CD40, IL-2, IL-2 receptor, VEGF, FGF, EGF, TGF, HER2, CCR1, CXCR3, CCR3, Src, Akt, Bcl-2, BCR-Abl, GSK-3, Cdk-2, Cdk-4, EGFR, VEGFR-1, VEGFR-2 and a complement protein.
Independent claims15