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4-O-methyl-β-d-glucuronic acid is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

18462-68-5

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18462-68-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 18462-68-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,8,4,6 and 2 respectively; the second part has 2 digits, 6 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 18462-68:
(7*1)+(6*8)+(5*4)+(4*6)+(3*2)+(2*6)+(1*8)=125
125 % 10 = 5
So 18462-68-5 is a valid CAS Registry Number.

18462-68-5Upstream product

18462-68-5Downstream Products

18462-68-5Relevant academic research and scientific papers

Evidence that GH115 α-glucuronidase activity, which is required to degrade plant biomass, is dependent on conformational flexibility

Rogowski, Artur,Basle, Arnaud,Farinas, Cristiane S.,Solovyova, Alexandra,Mortimer, Jennifer C.,Dupree, Paul,Gilbert, Harry J.,Bolam, David N.

, p. 53 - 64 (2014)

The microbial degradation of the plant cell wall is an important biological process that is highly relevant to environmentally significant industries such as the bioenergy and biorefining sectors. A major component of the wall is glucuronoxylan, a β1,4-linked xylose polysaccharide that is decorated with α-linked glucuronic and/or methylglucuronic acid (GlcA/MeGlcA). Recently three members of a glycoside hydrolase family, GH115, were shown to hydrolyze MeGlcA side chains from the internal regions of xylan, an activity that has not previously been described. Here we show that a dominant member of the human microbiota, Bacteroides ovatus, contains a GH115 enzyme, BoAgu115A, which displays glucuronoxylan α-(4-Omethyl)-glucuronidase activity. The enzyme is significantly more active against substrates in which the xylose decorated with GlcA/MeGlcA is flanked by one or more xylose residues. The crystal structure of BoAgu115A revealed a four-domain protein in which the active site, comprising a pocket that abuts a cleft-like structure, is housed in the second domain that adopts a TIM barrel-fold. The third domain, a five-helical bundle, and the C-terminal β-sandwich domain make inter-chain contacts leading to protein dimerization. Informed by the structure of the enzyme in complex with GlcA in its open ring form, in conjunction with mutagenesis studies, the potential substrate binding and catalytically significant amino acids were identified. Based on the catalytic importance of residues located on a highly flexible loop, the enzyme is required to undergo a substantial conformational change to form a productive Michaelis complex with glucuronoxylan.

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