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Microbiological Research|November 14, 1997
Laccase-catalyzed formation of cinnabarinic acid is responsible for antibacterial activity of Pycnoporus cinnabarinusC EggertPhytochemistry|May 5, 2001
The biosynthesis of benzoic acid glucosinolate esters in Arabidopsis thalianaG Graser, N J Oldham, P D Brown, et al.British Medical Journal|November 14, 1970
Spironolactone diuresis in patients with cirrhosis and ascitesR C EggertBiotechnology and Bioengineering|June 20, 1991
Enzymic hydrolysis of lignocellulosic materials: I. Models for the hydrolysis process--a theoretical studyL Vallander, K E ErikssonEuropean Journal of Biochemistry|February 3, 1975
Extracellular enzyme system utilized by the fungus Sporotrichum pulverulentum (Chrysosporium lignorum) for the breakdown of cellulose. 3. Purification and physico-chemical characterization of an exo-1,4-beta-glucanaseK E Eriksson, B PetterssonAnalytical Biochemistry|October 6, 2000
A standardized spectrophotometric assay of endoglycanase activities using dyed, amorphous polysaccharidesB Pettersson, K E ErikssonEuropean Journal of Biochemistry|February 3, 1975
Extracellular enzyme system utilized by the fungus Sporotrichum pulverulentum (Chrysosporium lignorum) for the breakdown of cellulose. 1. Separation, purification and physico-chemical characterization of five endo-1,4-beta-glucanasesK E Eriksson, B PetterssonEuropean Journal of Biochemistry|July 1, 1992
A comparison of the catalytic properties of cellobiose:quinone oxidoreductase and cellobiose oxidase from Phanerochaete chrysosporiumM Samejima, K E ErikssonActa Chemica Scandinavica. Series B: Organic Chemistry and Biochemistry|January 1, 1975
Purification and properties of cellobiose: quinone oxidoreductase from Sporotrichum pulverulentumU Westermark, K E ErikssonBiotechnology and Bioengineering|June 20, 1991
Enzymatic hydrolysis of lignocellulosic materials: II. Experimental investigations of theoretical hydrolysis--process models for an increased enzyme recoveryL Vallander, K E ErikssonPageof 7