Claims
- 1. A composition comprising a substantially purified thermostable AviIII peptide, said AviIII peptide comprising a catalytic domain GH74 and a carbohydrate binding domain (CBD) III.
- 2. The composition of claim 1 wherein the thermostable AviIII peptide is further defined as comprising a linker and a signal sequence.
- 3. The composition of claim 1 or 2 wherein the GH74 catalytic domain of the thermostable AviIII peptide is further defined as having a length of about 730 to about 760 amino acids.
- 4. The composition of claim 1, 2, or 3 wherein the carbohydrate binding domain (CBD) III of the thermostable AviIII peptide is further defined as comprising a length of about 80 to about 150 amino acids.
- 5. The composition of claim 1, 2, 3, or 4 wherein the carbohydrate binding domain (CBD) III of the thermostable AviIII peptide is further defined as comprising a length of about 90 amino acids.
- 6. The composition of claim 3 wherein the GH74 catalytic domain is further defined as the sequence of SEQ ID NO: 3.
- 7. The composition of claim 4 wherein the carbohydrate binding domain (CBD) HI is further defined as the sequence of SEQ ID NO: 4
- 8. The composition of claim 4 wherein the carbohydrate-binding domain (CBD) III is further defined as comprising the sequence of SEQ ID NO: 5.
- 9. The composition of claim 1 further defined as comprising a sequence of SEQ ID NO: 3 and SEQ ID NO: 4.
- 10. The composition of claim 1 further defined as comprising a nucleic acid sequence having about 70% sequence identity to the sequence of SEQ ID NO:2.
- 11. The composition of claim 1 further defined as comprising a nucleic acid sequence having about 80% sequence identity to the sequence of SEQ ID NO:2.
- 12. A thermostable AviIII peptide having a sequence of SEQ ID NO: 1.
- 13. The thermostable AviIII peptide of claim 12 further defined as having a sequence of SEQ ID NO: 2.
- 14. An industrial mixture suitable for degrading cellulose, such mixture comprising the thermostable AviIII polypeptide of claim 1.
- 15. The industrial mixture of claim 14 further defined as comprising a detergent.
- 16. An isolated polynucleotide molecule encoding a thermostable AviIII polypeptide, said AviIII polypeptide comprising:
a) a sequence of SEQ ID NO: 1; b) a sequence of SEQ ID NO: 3; c) a sequence of SEQ ID NO: 4; d) a sequence of SEQ I) NO: 5; e) a sequence having about 70% sequence identity with the sequence of a), b), c) or d).
- 17. The isolated polynucleotide molecule of claim 16 comprising a nucleic acid sequence having about 90% sequence identity to the sequence of SEQ ID NO: 2.
- 18. The isolated polynucleotide molecule of claim 16 comprising a nucleic acid sequence having about 80% sequence identity to the sequence of SEQ ID NO: 2.
- 19. The isolate polynucleotide molecule of claim 16, comprising a nucleic acid sequence having about 90% sequence identity to the nucleic acid sequence encoding the sequence of SEQ ID NO:3.
- 20. The isolated polynucleotide molecule of claim 16, comprising a nucleic acid sequence having about 90% sequence identity to the nucleic acid sequence encoding the sequence of SEQ ID NO:5.
- 21. The isolated polynucleotide molecule of claim 16, comprising a nucleic acid sequence having about 90% sequence identity to the nucleic acid sequence encoding the sequence of SEQ ID NO: 1.
- 22. The isolated polynucleotide molecule of claim 16, further comprising a nucleic acid sequence encoding a heterologous protein in frame with the polynucleotide molecule of claim 1.
- 23. The isolated polynucleotide molecule of claim 22, wherein the heterologous protein is a peptide tag.
- 24. The isolated polynucleotide molecule of claim 22, wherein the peptide tag is 6-His, thioredoxin, hemaglutinin, GST, or OmpA signal sequence tag.
- 25. The isolated polynucleotide molecule of claim 22, wherein the heterologous protein is a substrate targeting moiety.
- 26. The isolated polynucleotide molecule of claim 16, operably linked to a transcriptional or translational regulatory sequence.
- 27. The isolated polynucleotide molecule of claim 26, wherein the transcriptional or translational regulatory sequence comprises a transcriptional promoter or enhancer.
- 28. An isolated polypeptide molecule comprising:
a) a sequence of SEQ ID NO: 3; b) a sequence of SEQ ID NO: 4; c) a sequence of SEQ ID NO: 5; d) a sequence of SEQ ID NO: 1; or e) a sequence of SEQ ID NO: 3, SEQ ID NO:4, and SEQ ID NO: 5; or f) a sequence having about 70% sequence identity with the sequence of a), b), c), d), or e).
- 29. The polypeptide molecule of claim 28, having about 90% sequence identity with the sequence of a), b), c), d), e) or f).
- 30. A fusion protein comprising the polypeptide of claim 28 and a heterologous peptide.
- 31. The fusion protein of claim 30, wherein the heterologous peptide is a substrate targeting moiety.
- 32. The fusion protein of claim 30, wherein the heterologous peptide is a peptide tag.
- 33. The fusion protein of claim 32, wherein the peptide tag is 6-His, thioredoxin, hemaglutinin, GST, or OmpA signal sequence tag.
- 34. The fusion protein of claim 30, wherein the heterologous peptide is an agent that promotes polypeptide oligomerization.
- 35. The fusion protein of claim 34, wherein the agent is a leucine zipper.
- 36. A cellulase-substrate complex comprising the isolated polypeptide molecule of claim 28 bound to cellulose.
- 37. A vector comprising the polypeptide molecule of claim 28.
- 38. A host cell genetically engineered to express the polypeptide moleculeof claim 28.
- 39. The host cell of claim 38, wherein the host cell is a plant cell.
- 40. The host cell of claim 38, wherein the host cell is a fungi.
- 41. The host cell of claim 38, wherein the host cell is a bacterial cell.
- 42. The host cell of claim 38, wherein the host cell is a yeast.
- 43. A composition comprising the polypeptide molecule of claim 28 and a carrier.
- 44. An isolated antibody that specifically binds to the polypeptide molecule of claim 28.
- 45. The antibody of claim 44, wherein the antibody is a polyclonal antibody.
- 46. The antibody of claim 44, wherein the antibody is a monoclonal antibody.
- 47. A method for producing AviIII polypeptide, the method comprising:
incubating a host cell genetically engineered to express the polynucleotide molecule of claim 28.
- 48. The method of claim 47, further comprising the step of:
isolating the AviIII polypeptide from the incubated host cells.
- 49. The method of claim 47, wherein the host cell is a plant cell.
- 50. The method of claim 47, wherein the host cell is a bacterial cell.
- 51. The method of claim 47, wherein the host cell is genetically engineered to express a selectable marker.
- 52. The method of claim 47, wherein the host cell further comprises a polynucleotide molecule encoding one or more polypeptide molecules selected from the glycoside hydrolase family of proteins.
- 53. The method of claim 52, wherein the glycoside hydrolase is a thermostable glycoside
- 54. A set of amplification primers for amplification of a polynucleotide molecule encoding a thermostable AviIII, comprising:
two or more sequences comprising 9 or more contiguous nucleic acids derived from the polynucleotide molecule of claim 28.
- 55. A probe for hybridizing to a polynucleotide encoding AviIII, comprising:
a sequence of 9 or more contiguous nucleic acids derived from the polynucleotide molecule of claim 28.
- 56. An assay method for the detection of a polynucleotide encoding a thermostable AviIII, comprising:
amplifying a nucleic acid sequence with a set of amplification primers comprising two or more sequences of 9 or more contiguous nucleic acids derived from the polynucleotide molecule of claim 28; and correlating the amplified nucleic acid sequence with detected polynucleotide encoding a thermostable AviIII.
- 57. A method for assessing the carbohydrate degradation activity of AviIII comprising:
analyzing a carbohydrate degradation in the presence of AviIII and a carbohydrate degradation in the absence of AviIII on a substrate; and comparing the carbohydrate degradation in the presence of AviIII with the carbohydrate degradation in the absence of AviIII.
- 58. A method for assessing the carbohydrate degradation activity of AviIII in the presence of an agent of interest comprising:
analyzing a carbohydrate degradation in the presence of AviIII and a carbohydrate degradation in the presence of AviIII and the agent of interest on a substrate exposed; and comparing the carbohydrate degradation in the AviIII treated substrate with the carbohydrate degradation in the AviIII treated substrate in the presence of the agent of interest.
- 59. The method of claim 58, wherein an increase in carbohydrate degradation activity in the presence of the agent of interest demonstrates stimulation of AviIII activity and wherein a decrease in carbohydrate degradation activity demonstrates inhibition of AviIII activity.
- 60. The method of claim 58, wherein the carbohydrate is cellulose.
- 61. The method of claim 58 wherein the agent of interest is an antibody.
- 62. A method for reducing cellulose in a starting material, the method comprising:
administering to the starting material an effective amount of a polypeptide molecule of claim 28.
- 63. The method of claim 62, further comprising administering a second polypeptide molecule selected from the glycoside hydrolase family of proteins.
- 64. The method of claim 62, wherein the starting material is agricultural biomass.
- 65. The method of claim 62, wherein the starting material is municipal solid waste.
GOVERNMENT INTERESTS
[0001] The United States Government has rights in this invention under Contract No. DE-AC36-99GO10337 between the United States Department of Energy and the National Renewable Energy Laboratory, a Division of the Midwest Research Institute.