Literature DB >> 22334583

Substrate recognition mechanism of a glycosyltrehalose trehalohydrolase from Sulfolobus solfataricus KM1.

Nobuo Okazaki1, Taro Tamada, Michael D Feese, Masaru Kato, Yutaka Miura, Toshihiro Komeda, Kazuo Kobayashi, Keiji Kondo, Michael Blaber, Ryota Kuroki.   

Abstract

Glycosyltrehalose trehalohydrolase (GTHase) is an α-amylase that cleaves the α-1,4 bond adjacent to the α-1,1 bond of maltooligosyltrehalose to release trehalose. To investigate the catalytic and substrate recognition mechanisms of GTHase, two residues, Asp252 (nucleophile) and Glu283 (general acid/base), located at the catalytic site of GTHase were mutated (Asp252→Ser (D252S), Glu (D252E) and Glu283→Gln (E283Q)), and the activity and structure of the enzyme were investigated. The E283Q, D252E, and D252S mutants showed only 0.04, 0.03, and 0.6% of enzymatic activity against the wild-type, respectively. The crystal structure of the E283Q mutant GTHase in complex with the substrate, maltotriosyltrehalose (G3-Tre), was determined to 2.6-Å resolution. The structure with G3-Tre indicated that GTHase has at least five substrate binding subsites and that Glu283 is the catalytic acid, and Asp252 is the nucleophile that attacks the C1 carbon in the glycosidic linkage of G3-Tre. The complex structure also revealed a scheme for substrate recognition by GTHase. Substrate recognition involves two unique interactions: stacking of Tyr325 with the terminal glucose ring of the trehalose moiety and perpendicularly placement of Trp215 to the pyranose rings at the subsites -1 and +1 glucose.
Copyright © 2012 The Protein Society.

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Year:  2012        PMID: 22334583      PMCID: PMC3375754          DOI: 10.1002/pro.2039

Source DB:  PubMed          Journal:  Protein Sci        ISSN: 0961-8368            Impact factor:   6.725


  32 in total

1.  X-ray structures along the reaction pathway of cyclodextrin glycosyltransferase elucidate catalysis in the alpha-amylase family.

Authors:  J C Uitdehaag; R Mosi; K H Kalk; B A van der Veen; L Dijkhuizen; S G Withers; B W Dijkstra
Journal:  Nat Struct Biol       Date:  1999-05

2.  Dividing the large glycoside hydrolase family 13 into subfamilies: towards improved functional annotations of alpha-amylase-related proteins.

Authors:  Mark R Stam; Etienne G J Danchin; Corinne Rancurel; Pedro M Coutinho; Bernard Henrissat
Journal:  Protein Eng Des Sel       Date:  2006-11-02       Impact factor: 1.650

3.  Gene cloning and expression of new trehalose-producing enzymes from the hyperthermophilic archaeum Sulfolobus solfataricus KM1.

Authors:  K Kobayashi; M Kato; Y Miura; M Kettoku; T Komeda; A Iwamatsu
Journal:  Biosci Biotechnol Biochem       Date:  1996-11       Impact factor: 2.043

Review 4.  The metabolism of alpha,alpha-trehalose.

Authors:  A D Elbein
Journal:  Adv Carbohydr Chem Biochem       Date:  1974       Impact factor: 12.200

5.  A covalent enzyme-substrate intermediate with saccharide distortion in a mutant T4 lysozyme.

Authors:  R Kuroki; L H Weaver; B W Matthews
Journal:  Science       Date:  1993-12-24       Impact factor: 47.728

6.  Structural basis of the conversion of T4 lysozyme into a transglycosidase by reengineering the active site.

Authors:  R Kuroki; L H Weaver; B W Matthews
Journal:  Proc Natl Acad Sci U S A       Date:  1999-08-03       Impact factor: 11.205

7.  Purification and characterization of thermostable maltooligosyl trehalose synthase from the thermoacidophilic archaebacterium Sulfolobus acidocaldarius.

Authors:  T Nakada; S Ikegami; H Chaen; M Kubota; S Fukuda; T Sugimoto; M Kurimoto; Y Tsujisaka
Journal:  Biosci Biotechnol Biochem       Date:  1996-02       Impact factor: 2.043

8.  Action of neopullulanase. Neopullulanase catalyzes both hydrolysis and transglycosylation at alpha-(1----4)- and alpha-(1----6)-glucosidic linkages.

Authors:  H Takata; T Kuriki; S Okada; Y Takesada; M Iizuka; N Minamiura; T Imanaka
Journal:  J Biol Chem       Date:  1992-09-15       Impact factor: 5.157

9.  Complex structures of Thermoactinomyces vulgaris R-47 alpha-amylase 2 with acarbose and cyclodextrins demonstrate the multiple substrate recognition mechanism.

Authors:  Akashi Ohtaki; Masahiro Mizuno; Takashi Tonozuka; Yoshiyuki Sakano; Shigehiro Kamitori
Journal:  J Biol Chem       Date:  2004-05-11       Impact factor: 5.157

10.  Purification and properties of a novel enzyme, maltooligosyl trehalose synthase, from Arthrobacter sp. Q36.

Authors:  T Nakada; K Maruta; K Tsusaki; M Kubota; H Chaen; T Sugimoto; M Kurimoto; Y Tsujisaka
Journal:  Biosci Biotechnol Biochem       Date:  1995-12       Impact factor: 2.043

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