Literature DB >> 17207263

Expression of an engineered granule-bound Escherichia coli maltose acetyltransferase in wild-type and amf potato plants.

Farhad Nazarian Firouzabadi1, Jean-Paul Vincken, Qin Ji, Luc C J M Suurs, Richard G F Visser.   

Abstract

Starch is used in many industrial applications, but often requires chemical derivatization to enhance its properties before use. In particular, the stability of starch polymers in solution is improved by acetylation. A drawback of this treatment is the use of pollutant chemicals. A biological alternative to chemical derivatization was investigated by the expression of an amyloplast-targeted Escherichia coli maltose acetyltransferase (MAT) gene in tubers of wild-type (Kardal) and mutant amylose-free (amf) potato plants. MAT was expressed as such, or fused to the N- or C-terminus of a non-catalytic starch-binding domain (SBD) to target the starch granule. Starch granules derived from transgenic plants were found to contain acetyl groups, although their content was low, opening up an avenue to move away from the post-harvest chemical derivatization of starch. MAT inside starch granules was found to be active post-harvest when supplied with acetyl-coenzyme A and glucose or maltose, but it did not acetylate starch polymers in vitro. Starch granules from transformants in which MAT alone was expressed also showed MAT activity, indicating that MAT is accumulated in starch granules, and has affinity for starch by itself. Furthermore, starch granule morphology was altered, and fusion proteins containing MAT and SBD seemed to have a higher affinity for starch granules than two appended SBDs. These results are discussed against the background of the quaternary structure of MAT.

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Year:  2007        PMID: 17207263     DOI: 10.1111/j.1467-7652.2006.00227.x

Source DB:  PubMed          Journal:  Plant Biotechnol J        ISSN: 1467-7644            Impact factor:   9.803


  2 in total

1.  Fusion proteins comprising the catalytic domain of mutansucrase and a starch-binding domain can alter the morphology of amylose-free potato starch granules during biosynthesis.

Authors:  Farhad Nazarian Firouzabadi; Géraldine A Kok-Jacon; Jean-Paul Vincken; Qin Ji; Luc C J M Suurs; Richard G F Visser
Journal:  Transgenic Res       Date:  2006-12-08       Impact factor: 2.788

2.  A tandem CBM25 domain of α-amylase from Microbacterium aurum as potential tool for targeting proteins to starch granules during starch biosynthesis.

Authors:  Xing-Feng Huang; Farhad Nazarian; Jean-Paul Vincken; Richard G F Visser; Luisa M Trindade
Journal:  BMC Biotechnol       Date:  2017-12-04       Impact factor: 2.563

  2 in total

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