Literature DB >> 26857855

Identification and Functional Characterization of a Fructooligosaccharides-Forming Enzyme from Aspergillus aculeatus.

José Juan Virgen-Ortíz1, Vrani Ibarra-Junquera2, Pilar Escalante-Minakata1, Sara Centeno-Leija1,3, Hugo Serrano-Posada1,3, José de Jesús Ornelas-Paz4, Jaime David Pérez-Martínez5, Juan Alberto Osuna-Castro6.   

Abstract

Although fructosyltransferases from Aspergillus aculeatus have received a considerable interest for the prebiotics industry, their amino acid sequences and structural features remain unknown. This study sequenced and characterized a fructosyltransferase from A. aculeatus (AcFT) isolated by heat treatment of Pectinex Ultra SP-L. The AcFT enzyme showed two isoforms, low-glycosylated AcFT1 and high-glycosylated AcFT2 forms, with similar optimum activity at 60 °C. The purified heat-resistant AcFT1 and AcFT2 isoforms produced identical patterns of fructooligosaccharides (FOS; kestose, nystose and fructosylnystose) with a notable transfructosylation capability (~90 % transferase/hydrolase ratio). In contrast, the pI and optimum pH values exhibited discrete differences, attributable to their glycosylation pattern. Partial protein sequencing showed that AcFT enzyme corresponds to Aspac1_37092, a putative 654-residue fructosyltransferase encoded in the genome of A. aculeatus ATCC16872. A homology model of AcFT also revealed the typical fold common to members of the glycoside hydrolase family 32 (GH32), with an N-terminal five-blade β-propeller domain enclosing catalytic residues D60, D191, and E292, linked to a C-terminal β-sandwich domain. To our knowledge, this is the first report describing the amino acid sequence and structural features of a heat-resistant FOS-forming enzyme from A. aculeatus, providing insights into its potential applications in the prebiotics industry.

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Keywords:  Amino acid sequence; Fructosyltransferase; Heat treatment; Transfructosylation

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Year:  2016        PMID: 26857855     DOI: 10.1007/s12010-016-2009-8

Source DB:  PubMed          Journal:  Appl Biochem Biotechnol        ISSN: 0273-2289            Impact factor:   2.926


  1 in total

1.  Ethyl Acetate Fraction of Helianthus tuberosus L. Induces Anti-Diabetic, and Wound-Healing Activities in Insulin-Resistant Human Liver Cancer and Mouse Fibroblast Cells.

Authors:  Arokia Vijaya Anand Mariadoss; SeonJu Park; Kandasamy Saravanakumar; Anbazhagan Sathiyaseelan; Myeong-Hyeon Wang
Journal:  Antioxidants (Basel)       Date:  2021-01-12
  1 in total

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