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  Patent Title Inventor(s) Issue Date Patent Number Full Text
Disclosed are variants of Humicola grisea Cel7A (CBH1.1), H. jecorina CBH1 variant or S. thermophilium CBH1, nucleic acids encoding the same and methods for producing the same. The variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted.
Variant Humicola grisea CBH1.1
Goedegeburr, Frits , Gualfetti, Peter , Mitchinson, Colin , Larenas, Edmund 02/19/2013 8,377,659
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Disclosed are variants of Humicola grisea Cel7A (CBH1.1), H. jecorina CBH1 variant or S. thermophilium CBH1, nucleic acids encoding the same and methods for producing the same. The variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted.
Variant Humicola grisea CBH1.1
Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Larenas, Edmund 12/02/2008 7,459,299
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Disclosed are variants of Humicola grisea Cel7A (CBH1.1), H. jecorina CBH1 variant or S. thermophilium CBH1, nucleic acids encoding the same and methods for producing the same. The variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted.
Variant Humicola grisea CBH1.1
Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Larenas, Edmund 05/31/2011 7951571
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Disclosed are a number of homologs and variants of Hypocrea jecorina Cel7A (formerly Trichoderma reesei cellobiohydrolase I or CBH1), nucleic acids encoding the same and methods for producing the same. The homologs and variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted and/or deleted.
CBH1 homologs and variant CBH1 cellulases
Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Neefe, Paulien 05/31/2011 7951570
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Disclosed are variants of Humicola grisea Cel7A (CBH1.1), H. jecorina CBH1 variant or S. thermophilium CBH1, nucleic acids encoding the same and methods for producing the same. The variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted.
Variant Humicola grisea CBH1.1
Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Larenas, Edmund 08/16/2011 7,998,711
View USPTO link (Link will open in a new window)
Disclosed are variants of Humicola grisea Cel7A (CBH1.1), H. jecorina CBH1 variant or S. thermophilium CBH1, nucleic acids encoding the same and methods for producing the same. The variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted.
Variant Humicola grisea CBH1.1
Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Larenas, Edmund 08/07/2012 8,236,546
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Disclosed are a number of homologs and variants of Hypocrea jecorina Cel7A (formerly Trichoderma reesei cellobiohydrolase I or CBH1), nucleic acids encoding the same and methods for producing the same. The homologs and variant cellulases have the amino acid sequence of a glycosyl hydrolase of family 7A wherein one or more amino acid residues are substituted and/or deleted.
CBH1 homologs and variant CBH1 cellulases
Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Neefe, Paulien 11/18/2008 7,452,707
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Described herein are variants of H. jecorina CBH I, a Cel7 enzyme. The present invention provides novel cellobiohydrolases that have improved thermostability and reversibility.
Variant Hypocrea jecorina CBH1 cellulases
Day, Anthony , Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Neefe, Paulien , Sandgren, Mats , Shaw, Andrew , Stahlberg, Jerry 07/05/2011 7,972,832
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Described herein are variants of H. jecorina CBH I, a Cel7 enzyme. The present invention provides novel cellobiohydrolases that have improved thermostability and reversibility.
Variant Hyprocrea jecorina CBH1 cellulases
Day, Anthony , Goedegebuur, Frits , Gualfetti, Peter , Mitchinson, Colin , Neefe, Paulien , Sandgren, Mats , Shaw, Andrew , Stahlberg, Jerry 07/31/2012 8,232,080
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