Method to improve the stability and broaden the pH range of family G/11 xylanases
The present invention relates to protein engineering, and concerns especially family G/11 xylanases, and genes encoding said enzymes. In specific, the invention concerns Trichoderma reesei XYNII gene, which codes for endo-1,4-β-xylanase (EC 3.2.1.8). The invention describes how site-directed mutagenesis can be used to improve the properties of an enzyme to match the industrial conditions where it is used. Protein engineering can be used to improve thermoactivity and thermostability of xylanases, as well as to broaden their pH range.
1. A variant xylanase having increased thermostability or pH-stability when compared to a corresponding wild-type enzyme, wherein said variant xylanase comprises at least 95% sequence identity over the full length amino acid sequence of SEQ ID NO: 13, said variant having at least one pair of amino acid substitutions selected from the group consisting of: P5C and N19C, T7C and S16C, N10C and N29C, and L105C and Q162C.
2. The variant xylanase according to claim 1 , wherein the corresponding wild-type xylanase is a Trichoderma reesei xylanase.
3. The variant xylanase according to claim 2 , wherein the corresponding wild-type xylanase is SEQ ID NO:13.
4. The variant xylanase according to claim 1 , wherein K58 has been changed to arginine and to the C-terminus of the enzyme an aspartic acid has been added (+191D).
5. A method for bleaching pulp, comprising:
contacting said pulp with the variant xylanase of claim 1 for a time sufficient to bleach said pulp.
6. A method for modifying textile fibers, comprising:
contacting said textile fibers with the variant xylanase enzyme of claim 1 for a time sufficient to modify said textile fibers.
7. A method for improving digestion in an animal feed, comprising:
contacting said animal feed with the variant xylanase enzyme of claim 1 for a time sufficient to improve digestion of said animal feed.