In this process, the above β-1,4-glucan can be cellobiose, and the above β-1,4-glucan phosphorylase can be cellobiose phosphorylase.
Disclosed are: a cellobiose 2-epimerase having excellent heat resistance; a process for producing the cellobiose 2-epimerase; and a use application of the cellobiose 2-epimerase.
The present disclosure provides recombiant bacteria that are capable of using cellobiose as a carbon source and methods of using the metabolism of cellobiose for the production of ethanol.
Disclosed are: a cellobiose 2-epimerase having excellent heat resistance; a process for producing the cellobiose 2-epimerase; and a use application of the cellobiose 2-epimerase.
The present invention further refers to a pharmaceutical composition comprising a cellobiose compound.
Cellobiose is a disaccharide which consists of two molecules of glucose connected via a β-1,4 linkage.
Two glucose repeating units together are called cellobiose.
The gram positive bacteriumaccording to the invention lack cellobiose-specific PTS system IIC component (PtcC)activity.
This antitumor agent is characterized by comprising cellobiose as an active ingredient.
The object is to produce ethanol at low cost by using cellulose or cellobiose as a raw material.
The present invention relates to methods for improving a host cell's ability to utilize the disaccharide cellobiose.
The process of the current invention allows for economic production of cellobiose and high yields.
β-glucosidases which, in the liquid phase, convert cellobiose into glucose.
In particular, the present invention refers to a cellobiose compound for use in the prevention and treatment of cancer.
More specifically, the invention relates to lactose phosphorylase enzymes created by mutation of a cellobiose phosphorylase from Cellulomonas uda.
Two glucose repeating units together are called cellobiose.
The present invention also refers to a use of a cellobiose compound for inducing apoptosis in a cell or a tissue system in vitro.
The gram positive bacterium may further lack cellobiose-specific PTS system IIC component (ptcC) activity.
The present teachings further provide methods of increasing the yield of cellobiose from the enzymatic saccharification of cellulosic materials.
Provided is a novel improved process for the preparation of α-D-cellobiose octaacetate via the acetylative degradation of cellulose or cellulose acetate.
Requêtes fréquentes français :1-200, -1k, -2k, -3k, -4k, -5k, -7k, -10k, -20k, -40k, -100k, -200k, -500k, -1000k,
Requêtes fréquentes anglais :1-200, -1k, -2k, -3k, -4k, -5k, -7k, -10k, -20k, -40k, -100k, -200k, -500k, -1000k,
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