Literature DB >> 6766925

The molecular structure of low and high molecular weight levans synthesized by levansucrase.

T Tanaka, S Oi, T Yamamoto.   

Abstract

The levan synthesized by Bacillus subtilis levansucrase in the presence of alcohols was of only high molecular weight, while in solutions of high ionic strength only low molecular weight (MW) levan was produced. The addition of low MW levan to the enzyme reaction mixture at low ionic strength stimulated synthesis of a high MW levan, but the levan added was not incorporated into this high MW levan. Methylation analysis revealed that low MW levans contained glucose, which was isolated as 2,3,46-tetra-O-methyl alditol acetate showing that the glucose units existed as terminal residues. The molecular weight of levan estimated on the basis of glucose content coincided with that determined by the gel filtration method. Methylation analysis also revealed that the number of fructose residues of the linear fraction linked by leads to 6(F)2 leads to type bonds was 22 for levan with a molecular weight of (8.4(-22)) x 10(3), while it was 11 for that of 2,000 x 10(3). The number of (formula: see text) type branched residues increased with increase in the molecular weight of the levan synthesized.

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Year:  1980        PMID: 6766925     DOI: 10.1093/oxfordjournals.jbchem.a132737

Source DB:  PubMed          Journal:  J Biochem        ISSN: 0021-924X            Impact factor:   3.387


  8 in total

1.  Fructan from Erwinia herbicola.

Authors:  J D Blake; M L Clarke; P E Jansson; K E McNeil
Journal:  J Bacteriol       Date:  1982-09       Impact factor: 3.490

2.  Production of bimodal molecular weight levan by a Lactobacillus reuteri isolate from fish gut.

Authors:  Waqar Ahmad; Anam Nasir; Fazal Sattar; Iram Ashfaq; Ming-Hsu Chen; Azam Hayat; Mujaddad Ur Rehman; Sainan Zhao; Shazia Khaliq; Muhammad Afzal Ghauri; Munir Ahmad Anwar
Journal:  Folia Microbiol (Praha)       Date:  2021-08-28       Impact factor: 2.099

Review 3.  Structure-function relationships of glucansucrase and fructansucrase enzymes from lactic acid bacteria.

Authors:  Sacha A F T van Hijum; Slavko Kralj; Lukasz K Ozimek; Lubbert Dijkhuizen; Ineke G H van Geel-Schutten
Journal:  Microbiol Mol Biol Rev       Date:  2006-03       Impact factor: 11.056

4.  Influence of myosin heavy chains on the Ca2+-binding properties of light chain, LC2.

Authors:  S Srivastava; A Muhlrad; J Wikman-Coffelt
Journal:  Biochem J       Date:  1981-03-01       Impact factor: 3.857

5.  A Highly Active Endo-Levanase BT1760 of a Dominant Mammalian Gut Commensal Bacteroides thetaiotaomicron Cleaves Not Only Various Bacterial Levans, but Also Levan of Timothy Grass.

Authors:  Karin Mardo; Triinu Visnapuu; Heiki Vija; Anneli Aasamets; Katrin Viigand; Tiina Alamäe
Journal:  PLoS One       Date:  2017-01-19       Impact factor: 3.240

6.  Levan from Leuconostoc citreum BD1707: production optimization and changes in molecular weight distribution during cultivation.

Authors:  Jin Han; Huafeng Feng; Xiaohua Wang; Zhenmin Liu; Zhengjun Wu
Journal:  BMC Biotechnol       Date:  2021-02-04       Impact factor: 2.563

7.  Lytic transglycosylases mitigate periplasmic crowding by degrading soluble cell wall turnover products.

Authors:  Anna Isabell Weaver; Laura Alvarez; Kelly M Rosch; Asraa Ahmed; Garrett Sean Wang; Michael S van Nieuwenhze; Felipe Cava; Tobias Dörr
Journal:  Elife       Date:  2022-01-24       Impact factor: 8.140

8.  Intrinsic Levanase Activity of Bacillus subtilis 168 Levansucrase (SacB).

Authors:  Luz Méndez-Lorenzo; Jaime R Porras-Domínguez; Enrique Raga-Carbajal; Clarita Olvera; Maria Elena Rodríguez-Alegría; Ernesto Carrillo-Nava; Miguel Costas; Agustín López Munguía
Journal:  PLoS One       Date:  2015-11-23       Impact factor: 3.240

  8 in total

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