Literature DB >> 15280057

The influence of mutanase and dextranase on the production and structure of glucans synthesized by streptococcal glucosyltransferases.

Mitsue F Hayacibara1, Hyun Koo, Anne M Vacca-Smith, Leslie K Kopec, Kathleen Scott-Anne, Jaime A Cury, William H Bowen.   

Abstract

Glucanohydrolases, especially mutanase [alpha-(1-->3) glucanase; EC 3.2.1.59] and dextranase [alpha-(1-->6) glucanase; EC 3.2.1.11], which are present in the biofilm known as dental plaque, may affect the synthesis and structure of glucans formed by glucosyltransferases (GTFs) from sucrose within dental plaque. We examined the production and the structure of glucans synthesized by GTFs B (synthesis of alpha-(1-->3)-linked glucans) or C [synthesis of alpha-(1-->6)- and alpha-(1-->3)-linked glucans] in the presence of mutanase and dextranase, alone or in combination, in solution phase and on saliva-coated hydroxyapatite beads (surface phase). The ability of Streptococcus sobrinus 6715 to adhere to the glucan, which was formed in the presence of the glucanohydrolases was also explored. The presence of mutanase and/or dextranase during the synthesis of glucans by GTF B and C altered the proportions of soluble to insoluble glucan. The presence of either dextranase or mutanase alone had a modest effect on total amount of glucan formed, especially in the surface phase; the glucanohydrolases in combination reduced the total amount of glucan. The amount of (1-->6)-linked glucan was reduced in presence of dextranase. In contrast, mutanase enhanced the formation of soluble glucan, and reduced the percentage of 3-linked glucose of GTF B and C glucans whereas dextranase was mostly without effect. Glucan formed in the presence of dextranase provided fewer binding sites for S. sobrinus; mutanase was devoid of any effect. We also noted that the GTFs bind to dextranase and mutanase. Glucanohydrolases, even in the presence of GTFs, influence glucan synthesis, linkage remodeling, and branching, which may have an impact on the formation, maturation, physical properties, and bacterial binding sites of the polysaccharide matrix in dental plaque. Our data have relevance for the formation of polysaccharide matrix of other biofilms.

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Year:  2004        PMID: 15280057     DOI: 10.1016/j.carres.2004.05.031

Source DB:  PubMed          Journal:  Carbohydr Res        ISSN: 0008-6215            Impact factor:   2.104


  29 in total

Review 1.  The role of sucrose in cariogenic dental biofilm formation--new insight.

Authors:  A F Paes Leme; H Koo; C M Bellato; G Bedi; J A Cury
Journal:  J Dent Res       Date:  2006-10       Impact factor: 6.116

2.  Influence of apigenin on gtf gene expression in Streptococcus mutans UA159.

Authors:  Hyun Koo; Jennifer Seils; Jacqueline Abranches; Robert A Burne; William H Bowen; Robert G Quivey
Journal:  Antimicrob Agents Chemother       Date:  2006-02       Impact factor: 5.191

3.  Structural and molecular basis of the role of starch and sucrose in Streptococcus mutans biofilm development.

Authors:  M I Klein; S Duarte; J Xiao; S Mitra; T H Foster; H Koo
Journal:  Appl Environ Microbiol       Date:  2008-11-21       Impact factor: 4.792

4.  Catalytic antimicrobial robots for biofilm eradication.

Authors:  Geelsu Hwang; Amauri J Paula; Elizabeth E Hunter; Yuan Liu; Alaa Babeer; Bekir Karabucak; Kathleen Stebe; Vijay Kumar; Edward Steager; Hyun Koo
Journal:  Sci Robot       Date:  2019-04-24

5.  Purification, characterization, and application of a thermostable dextranase from Talaromyces pinophilus.

Authors:  Yu-Qi Zhang; Ruo-Han Li; Hong-Bin Zhang; Min Wu; Xue-Qin Hu
Journal:  J Ind Microbiol Biotechnol       Date:  2016-12-24       Impact factor: 3.346

6.  Dextran-Coated Iron Oxide Nanoparticles as Biomimetic Catalysts for Localized and pH-Activated Biofilm Disruption.

Authors:  Pratap C Naha; Yuan Liu; Geelsu Hwang; Yue Huang; Sarah Gubara; Venkata Jonnakuti; Aurea Simon-Soro; Dongyeop Kim; Lizeng Gao; Hyun Koo; David P Cormode
Journal:  ACS Nano       Date:  2019-01-22       Impact factor: 15.881

Review 7.  The exopolysaccharide matrix: a virulence determinant of cariogenic biofilm.

Authors:  H Koo; M L Falsetta; M I Klein
Journal:  J Dent Res       Date:  2013-09-17       Impact factor: 6.116

8.  Topical delivery of low-cost protein drug candidates made in chloroplasts for biofilm disruption and uptake by oral epithelial cells.

Authors:  Yuan Liu; Aditya C Kamesh; Yuhong Xiao; Victor Sun; Michael Hayes; Henry Daniell; Hyun Koo
Journal:  Biomaterials       Date:  2016-08-02       Impact factor: 12.479

9.  Crystal Structure and Mutational Analysis of Isomalto-dextranase, a Member of Glycoside Hydrolase Family 27.

Authors:  Yuka Okazawa; Takatsugu Miyazaki; Gaku Yokoi; Yuichi Ishizaki; Atsushi Nishikawa; Takashi Tonozuka
Journal:  J Biol Chem       Date:  2015-09-01       Impact factor: 5.157

10.  Influences of naturally occurring agents in combination with fluoride on gene expression and structural organization of Streptococcus mutans in biofilms.

Authors:  Jae-Gyu Jeon; Marlise I Klein; Jin Xiao; Stacy Gregoire; Pedro L Rosalen; Hyun Koo
Journal:  BMC Microbiol       Date:  2009-10-28       Impact factor: 3.605

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