Abstract:
The present invention relates to cellulolytic compositions for degrading or converting cellulose-containing material and methods of producing and using the compositions.
Abstract:
The present invention relates to methods of increasing the activity of a polypeptide having cellulolytic enhancing activity, comprising: adding a soluble activating divalent metal cation to a composition comprising the polypeptide having cellulolytic enhancing activity, wherein the presence of the soluble activating divalent metal cation and the polypeptide having cellulolytic enhancing activity increases degradation or conversion of a cellulose-containing material by a cellulolytic enzyme composition compared to the polypeptide having cellulolytic enhancing activity without the soluble activating divalent metal cation. The present invention also relates to compositions, methods for degrading or converting a cellulose-containing material, and methods for producing a fermentation product.
Abstract:
The invention relates to the purification, and cloning of receptors for the luteinizing hormone, choriogonadotropin, follicle stimulating hormone, and thyroid stimulating hormone. The invention additionally concerns the uses for such molecules in the diagnosis and therapy of human conditions.
Abstract:
The present invention relates to a process of producing desired enzyme(s) in a host cell, comprising cultivating said host cell capable of producing the desired enzyme(s) under conditions conducive for production of the desired enzyme(s) using a substrate for the host cell comprising liquefied and/or saccharified starch-containing plant material.
Abstract:
The present invention relates to methods of inhibiting AA9 lytic polysaccharide monooxygenase catalyzed inactivation of an enzyme composition or a component thereof, methods for increasing production of an enzyme composition, and methods for stabilizing an enzyme composition.
Abstract:
The present invention relates to a process of producing desired enzyme(s) in a host cell, comprising cultivating said host cell capable of producing the desired enzyme(s) under conditions conducive for production of the desired enzyme(s) using a substrate for the host cell comprising liquefied and/or saccharified starch-containing plant material.
Abstract:
Enzymes and/or polypeptides and/or mixtures of interest are evaluated during hydrolysis of cellulosic material by the use of indicator constituents such as fluorescent agents, resulting in efficient high-throughput analysis of enzymes and/or polypeptides. A high-throughput assay for the analysis of, inter alia, pretreated corn stover (PCS) hydrolysis is also disclosed.
Abstract:
Enzymes and/or polypeptides and/or mixtures of interest are evaluated during hydrolysis of cellulosic material by the use of indicator constituents such as fluorescent agents, resulting in efficient high-throughput analysis of enzymes and/or polypeptides. A high-throughput assay for the analysis of, inter alia, pretreated corn stover (PCS) hydrolysis is also disclosed.
Abstract:
The present invention relates to cellulolytic compositions for degrading or converting cellulose-containing material and methods of producing and using the compositions. The compositions comprise (a) a polypeptide having cellulolytic enhancing activity (b) a beta glucosidase and (c) one or more cellulolytic enzymes selected from the group consisting of T. reesei cellohydrobiolase I T. reesei cellohydrobiolase II and T. reseei endoglucanase I and variants thereof.
Abstract:
The present invention relates to methods for degrading or converting a cellulose-containing material, comprising: treating the cellulose-containing material with an effective amount of a cellulolytic enzyme composition comprising a polypeptide having cellulolytic enhancing activity, and one or more (several) components selected from the group consisting of a CEL7 polypeptide having endoglucanase activity, a CEL12 polypeptide having endoglucanase activity, a CEL45 polypeptide having endoglucanase activity, a CEL7 polypeptide having cellobiohydrolase activity with a cellulose binding domain, and a CEL7 polypeptide having cellobiohydrolase activity without a cellulose binding domain. The present invention also relates to such cellulolytic enzyme compositions.