Nieter_2015_Appl.Environ.Microbiol_81_1679

Reference

Title : A Chlorogenic Acid Esterase with a Unique Substrate Specificity from Ustilago maydis - Nieter_2015_Appl.Environ.Microbiol_81_1679
Author(s) : Nieter A , Haase-Aschoff P , Kelle S , Linke D , Krings U , Popper L , Berger RG
Ref : Applied Environmental Microbiology , 81 :1679 , 2015
Abstract :

An extracellular chlorogenic acid esterase from Ustilago maydis (UmChlE) was purified to homogeneity by using three separation steps, including anion-exchange chromatography on a Q Sepharose FF column, preparative isoelectric focusing (IEF), and, finally, a combination of affinity chromatography and hydrophobic interaction chromatography on polyamide. SDS-PAGE analysis suggested a monomeric protein of approximately 71 kDa. The purified enzyme showed maximal activity at pH 7.5 and at 37 degrees C and was active over a wide pH range (3.5 to 9.5). Previously described chlorogenic acid esterases exhibited a comparable affinity for chlorogenic acid, but the enzyme from Ustilago was also active on typical feruloyl esterase substrates. Kinetic constants for chlorogenic acid, methyl p-coumarate, methyl caffeate, and methyl ferulate were as follows: Km values of 19.6 muM, 64.1 muM, 72.5 muM, and 101.8 muM, respectively, and kcat/Km values of 25.83 mM(-1) s(-1), 7.63 mM(-1) s(-1), 3.83 mM(-1) s(-1) and 3.75 mM(-1) s(-1), respectively. UmChlE released ferulic, p-coumaric, and caffeic acids from natural substrates such as destarched wheat bran (DSWB) and coffee pulp (CP), confirming activity on complex plant biomass. The full-length gene encoding UmChlE consisted of 1,758 bp, corresponding to a protein of 585 amino acids, and was functionally produced in Pichia pastoris GS115. Sequence alignments with annotated chlorogenic acid and feruloyl esterases underlined the uniqueness of this enzyme.

PubMedSearch : Nieter_2015_Appl.Environ.Microbiol_81_1679
PubMedID: 25548041
Gene_locus related to this paper: ustma-A0A0D1CFG4

Related information

Substrate Chlorogenic-acid
Gene_locus ustma-A0A0D1CFG4

Citations formats

Nieter A, Haase-Aschoff P, Kelle S, Linke D, Krings U, Popper L, Berger RG (2015)
A Chlorogenic Acid Esterase with a Unique Substrate Specificity from Ustilago maydis
Applied Environmental Microbiology 81 :1679

Nieter A, Haase-Aschoff P, Kelle S, Linke D, Krings U, Popper L, Berger RG (2015)
Applied Environmental Microbiology 81 :1679