Claims
- 1. A protein comprising: a chitin binding domain (CBD) capable of reversibly binding a chitin substrate under a selected non-denaturing condition.
- 2. A protein according to claim 1, wherein the CBD has one or more mutated amino acids.
- 3. A protein according to claim 2, wherein the mutated amino acid is an aromatic amino acid.
- 4. A protein according to claim 2, wherein the mutated amino acid is positioned within a binding cleft of the CBD.
- 5. A protein according to claim 3, wherein the amino acid comprises a tryptophan.
- 6. A protein according to claim 5, wherein the tryptophan corresponds to tryptophan 687 of B. circulans chitinase A1.
- 7. A protein according to claim 1, wherein the non-denaturing conditions are selected from changes in any of: ionic conditions; pH; detergent concentration, or antagonist or agonist concentration.
- 8. A protein according to claim 1, wherein the non-denaturing conditions comprise a change in ionic conditions.
- 9. A protein according to claim 8, wherein the change in ionic conditions comprise a reduced salt concentration.
- 10. A method of obtaining a chitin binding domain (CBD) capable of reversibly binding to a chitin substrate under non-denaturing conditions, the method comprising:
(a) modifying at least one amino acid within the CBD; (b) selecting the modified CBD according to its binding to the chitin substrate; and (c) determining whether the modified CBD is capable of reversibly binding chitin under altered conditions.
- 11. A method according to claim 10, wherein modifying at least one amino acid within the CBD, further comprises:
mutating a portion of a DNA sequence encoding the CBD and expressing the DNA in a host cell or by in vitro translation.
- 12. A method according to claim 11, wherein mutating a portion of the DNA sequence, further comprises:
substituting with an oligonucleotide, a portion of the DNA sequence encoding the CBD, the oligonucleotide differing from the substituted portion by a mutation at a target site.
- 13. A method according to claim 12, wherein the target site is a tryptophan and the mutation is a phenylalanine substitution of the tryptophan.
- 14. A method according to claim 10, wherein the selected condition comprises altering ionic conditions.
- 15. A method according to claim 10, wherein the selected condition comprises changing NaCl molarity.
- 16. A method for producing and purifying a target protein molecule comprising:
(a) constructing a DNA expression vector which expresses a hybrid polypeptide in a transformed host cell, the hybrid polypeptide comprising the target protein molecule and a modified chitin binding domain having a specific and reversible affinity for a substrate which binds to the chitin binding domain; (b) introducing the expression vector into an appropriate host cell and expressing the hybrid polypeptide; (c) contacting the hybrid polypeptide produced by the transformed cell with the substrate to which the CBD binds; and (d) recovering the hybrid polypeptide.
- 17. A method according to claim 16, wherein recovering the hybrid polypeptide comprises altering the ionic conditions.
- 18. The method of claim 16, wherein recovery of the hybrid polypeptide further comprises:
contacting the bound hybrid polypeptide with a substance which displaces the hybrid polypeptide.
- 19. A method according to claim 17, wherein the altered ionic condition is a reduction in NaCl molarity.
- 20. A method according to claim 16, wherein the substrate is chitin.
- 21. A method for purifying a chitin binding domain-target molecule conjugate from a mixture of molecules in a preparation comprising:
(a) adding to the preparation, a substrate having a specific and reversible affinity for CBD so as to permit binding and immobilizing of the conjugate to the substrate; (b) removing the bound conjugate from the mixture into a buffer; and (c) altering the ionic conditions in the buffer so as to elute the conjugate from the substrate into the buffer to obtain the purified conjugate.
- 22. A method according to claim 21, wherein the altered ionic conditions comprise a change in NaCl molarity.
- 23. A method according to claim 21, wherein the substrate is chitin.
- 24. A kit for purifying a recombinant protein, comprising:
(a) a plasmid, the plasmid containing a DNA sequence encoding a mutant CBD which is capable of reversibly binding a chitin matrix and an insertion site for inserting the DNA sequence encoding the recombinant protein; and (b) the chitin matrix for binding the fusion protein; and optionally a buffer for eluting the fusion protein from the chitin matrix.
- 25. A fusion vector for constructing an expression vector which expresses a modified chitin binding domain (CBD) fused to a protein molecule to be purified, comprising:
a DNA fragment coding for the modified chitin binding domain or portion thereof, having a specific and reversible affinity for a substrate which binds to the chitin binding protein.
- 26. A DNA expression vector for producing a purified protein molecule, which upon expression produces a chitin binding domain fused to the protein molecule, comprising:
(a) a first DNA fragment coding for the chitin binding domain (CBD) or portion thereof having a specific and reversible affinity for substrate which binds to the chitin binding protein; and (b) a second DNA fragment coding for the protein molecule to be purified.
- 27. A method according to claims 25 or 26 wherein the substrate is chitin.
- 28. A vector comprising a sequence for a mutant CBD and optionally an insertion site for placing a sequence encoding a recombinant protein within or adjacent to the CBD sequence.
- 29. A vector according to claim 28, wherein the mutation is at Try 687
- 30. A host cell for making a fusion protein, comprising: a vector according to claims 25, 26 or 28.
CROSS REFERENCE
[0001] This Application gains priority from Provisional Application Serial No. 60/360,354 filed Feb. 28, 2002 herein incorporated by reference.
Provisional Applications (1)
|
Number |
Date |
Country |
|
60360354 |
Feb 2002 |
US |