Claims
- 1. An α-agarase having the following physical and chemical properties:
(1) action: hydrolyzing an α-1,3 bond between 3,6-anhydro-L-galactose and D-galactose; (2) substrate specificity: acting on agarose, agarohexaose and agarooligosaccharides longer than agarohexaose but not on agarotetraose; (3) optimal temperature: exhibiting its enzymatic activity at a temperature of 55° C. or below; and (4) heat stability: retaining 20% or more of its activity after treatment at 48° C. for 30 seconds.
- 2. The α-agarase according to claim 1, which is obtainable from a microorganism TKR1-7AGα (FERM BP-6990) or a microorganism TKR4-3AGα (FERM BP-6991).
- 3. The α-agarase according to claim 1, which contains an amino acid sequence consisting of 749 residues from amino acid number 177 to amino acid number 925 in the amino acid sequence of SEQ ID NO:14, or an amino acid sequence in which one or more amino acids are substituted, deleted, added and/or inserted in said amino acid sequence consisting of 749 residues.
- 4. The α-agarase according to claim 1, which contains an amino acid sequence consisting of 767 residues from amino acid number 184 to amino acid number 950 in the amino acid sequence of SEQ ID NO:15, or an amino acid sequence in which one or more amino acids are substituted, deleted, added and/or inserted in said amino acid sequence consisting of 767 residues.
- 5. A gene encoding the α-agarase defined by claim 1, or a gene that is hybridizable to said gene under stringent conditions and encodes an α-agarase having the following physical and chemical properties:
(1) action: hydrolyzing an α-1,3 bond between 3,6-anhydro-L-galactose and D-galactose; (2) substrate specificity: acting on agarose, agarohexaose and agarooligosaccharides longer than agarohexaose but not on agarotetraose; (3) optimal temperature: exhibiting its enzymatic activity at a temperature of 55° C. or below; and (4) heat stability: retaining 20% or more of its activity after treatment at 48° C. for 30 seconds.
- 6. The gene according to claim 5, which is obtainable from a microorganism TKR1-7AGα (FERM BP-6990) or a microorganism TKR4-3AGα (FERM BP-6991).
- 7. The gene according to claim 5, which encodes an α-agarase containing an amino acid sequence consisting of 749 residues from amino acid number 177 to amino acid number 925 in the amino acid sequence of SEQ ID NO:14, or an amino acid sequence in which one or more amino acids are substituted, deleted, added and/or inserted in said amino acid sequence consisting of 749 residues.
- 8. The gene according to claim 5, which encodes an α-agarase containing an amino acid sequence consisting of 767 residues from amino acid number 184 to amino acid number 950 in the amino acid sequence of SEQ ID NO:15, or an amino acid sequence in which one or more amino acids are substituted, deleted, added and/or inserted in said amino acid sequence consisting of 767 residues.
- 9. The gene according to claim 5, which contains a nucleotide sequence consisting of 2247 bases from base number 529 to base number 2775 in the nucleotide sequence of SEQ ID NO:12, or a nucleotide sequence in which one or more bases are substituted, deleted, added and/or inserted in said nucleotide sequence consisting of 2247 bases.
- 10. The gene according to claim 5, which contains a nucleotide sequence consisting of 2301 bases from base number 550 to base number 2850 in the nucleotide sequence of SEQ ID NO:13, or a nucleotide sequence in which one or more bases are substituted, deleted, added and/or inserted in said nucleotide sequence consisting of 2301 bases.
- 11. A recombinant DNA molecule which contains the gene defined by claim 5.
- 12. A transformant harboring the recombinant DNA molecule defined by claim 11.
- 13. A method for producing the α-agarase defined by claim 1, comprising culturing a microorganism capable of producing the α-agarase defined by claim 1 and collecting the α-agarase from the culture.
- 14. The method according to claim 13, comprising culturing a microorganism belonging to a genus to which a microorganism TKR1-7AGα (FERM BP-6990) or a microorganism TKR4-3AGα (FERM BP-6991) belongs and collecting the α-agarase from the culture.
- 15. A method for producing the α-agarase defined by claim 1, comprising culturing the transformant defined by claim 12 and collecting an α-agarase from the culture.
- 16. A method for producing an agarooligosaccharide, comprising digesting agarose using the α-agarase defined by claim 1 and collecting an agalooligosaccharide from the resulting digest.
- 17. A polypeptide having an α-agarase activity, selected from the group consisting of:
(1) a polypeptide containing an amino acid sequence consisting of 591 residues from amino acid number 335 to amino acid number 925 in the amino acid sequence of SEQ ID NO: 14; (2) a polypeptide containing an amino acid sequence in which one or more amino acids are substituted, deleted, added and/or inserted in an amino acid sequence consisting of 591 residues from amino acid number 335 to amino acid number 925 in the amino acid sequence of SEQ ID NO: 14; (3) a polypeptide containing an amino acid sequence consisting of 586 residues from amino acid number 365 to amino acid number 950 in the amino acid sequence of SEQ ID NO: 15; and (4) a polypeptide containing an amino acid sequence in which one or more amino acids are substituted, deleted, added and/or inserted in an amino acid sequence consisting of 586 residues from amino acid number 365 to amino acid number 950 in the amino acid sequence of SEQ ID NO: 15.
- 18. A gene encoding the polypeptide defined by claim 17, or a gene that is hybridizable to said gene under stringent conditions and encodes a polypeptide having an α-agarase activity.
- 19. The gene according to claim 18, which encodes a polypeptide having an α-agarase activity and is selected from the group consisting of:
(1) a gene containing a nucleotide sequence consisting of 1773 bases from base number 1003 to base number 2775 in the nucleotide sequence of SEQ ID NO: 12; (2) a gene containing a nucleotide sequence in which one or more bases are substituted, deleted, added and/or inserted in a nucleotide sequence consisting of 1773 bases from base number 1003 to base number 2775 in the nucleotide sequence of SEQ ID NO: 12; (3) a gene containing a nucleotide sequence consisting of 1758 bases from base number 1093 to base number 2850 in the nucleotide sequence of SEQ ID NO: 13; and (4) a gene containing a nucleotide sequence in which one or more bases are substituted, deleted, added and/or inserted in a nucleotide sequence consisting of 1758 bases from base number 1093 to base number 2850 in the nucleotide sequence of SEQ ID NO: 13.
- 20. A recombinant DNA molecule which contains the gene defined by claim 18.
- 21. A transformant harboring the recombinant DNA molecule defined by claim 20.
- 22. A method for producing a polypeptide having an α-agarase activity, comprising culturing the transformant defined by claim 21 and collecting an α-agarase from the culture.
- 23. A method for producing an agarooligosaccharide, comprising digesting agarose using the polypeptide having an α-agarase activity defined by claim 17 and collecting an agalooligosaccharide from the resulting digest.
Priority Claims (2)
Number |
Date |
Country |
Kind |
11/44890 |
Feb 1999 |
JP |
|
11/198852 |
Jul 1999 |
JP |
|
CROSS-REFERENCE TO RELATED APPLICATIONS
[0001] This application is a continuation-in-part application of PCT international application No. PCT/JP00/00966 which has an international filing date of Feb. 21, 2000 which designated the United States, the entire contents of which are incorporated by reference.
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
PCT/JP00/00966 |
Feb 2000 |
US |
Child |
09924097 |
Aug 2001 |
US |