» Articles » PMID: 16847603

A Cold Active (2R,3R)-(-)-di-O-benzoyl-tartrate Hydrolyzing Esterase from Rhodotorula Mucilaginosa

Overview
Date 2006 Jul 19
PMID 16847603
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

In a screening procedure a pink-colored yeast was isolated from enrichment cultures with (2R,3R)-(-)-di-O-benzoyl-tartrate (benzoyl-tartrate) as the sole carbon source. The organism saar1 was identified by morphological, physiological, and 18S ribosomal DNA/internal transcribed spacer analysis as Rhodotorula mucilaginosa, a basidiomycetous yeast. During growth the yeast hydrolyzed the dibenzoyl ester stoichiometrically to the monoester using the separated benzoate as the growth substrate, before the monoester was further cleaved into benzoate and tartrate, which were both metabolized. The corresponding benzoyl esterase was purified from the culture supernatant and characterized as a monomeric glycosylated 86-kDa protein with an optimum pH of 7.5 and an optimum temperature of 45 degrees C. At 0 degrees C the esterase still exhibited 20% of the corresponding activity at 30 degrees C, which correlates it to psychrophilic enzymes. The esterase could hydrolyze short chain p-nitrophenyl-alkyl esters and several benzoyl esters like benzoyl-methyl ester, ethylene-glycol-dibenzoyl ester, phenyl-benzoyl ester, cocaine, and 1,5-anhydro-D: -fructose-tribenzoyl ester. However feruloyl-ethyl ester was not hydrolyzed. The activity characteristics let the enzyme appear as a promising tool for synthesis of benzoylated compounds for pharmaceutical, cosmetic, or fine chemical applications, even at low temperatures.

Citing Articles

Effects of Oxygen Transference on Protease Production by CBMAI 1528 in a Stirred Tank Bioreactor.

Machado S, Feitosa V, Pillaca-Pullo O, Lario L, Sette L, Pessoa Jr A Bioengineering (Basel). 2022; 9(11).

PMID: 36421095 PMC: 9687904. DOI: 10.3390/bioengineering9110694.


Cloning, expression and characterization of a novel cold-active and organic solvent-tolerant esterase from Monascus ruber M7.

Guo H, Zhang Y, Shao Y, Chen W, Chen F, Li M Extremophiles. 2016; 20(4):451-9.

PMID: 27209523 DOI: 10.1007/s00792-016-0835-9.


The wood rot ascomycete Xylaria polymorpha produces a novel GH78 glycoside hydrolase that exhibits α-L-rhamnosidase and feruloyl esterase activities and releases hydroxycinnamic acids from lignocelluloses.

Nghi D, Bittner B, Kellner H, Jehmlich N, Ullrich R, Pecyna M Appl Environ Microbiol. 2012; 78(14):4893-901.

PMID: 22544251 PMC: 3416365. DOI: 10.1128/AEM.07588-11.


A cold-adapted esterase of a novel marine isolate, Pseudoalteromonas arctica: gene cloning, enzyme purification and characterization.

Al Khudary R, Venkatachalam R, Katzer M, Elleuche S, Antranikian G Extremophiles. 2010; 14(3):273-85.

PMID: 20217440 DOI: 10.1007/s00792-010-0306-7.


A cold-active esterase of Streptomyces coelicolor A3(2): from genome sequence to enzyme activity.

Soror S, Verma V, Rao R, Rasool S, Koul S, Qazi G J Ind Microbiol Biotechnol. 2007; 34(8):525-31.

PMID: 17554575 DOI: 10.1007/s10295-007-0224-6.