4.7 Article

Truncations of xyloglucan xylosyltransferase 2 provide insights into the roles of the N- and C-terminus

Journal

PHYTOCHEMISTRY
Volume 128, Issue -, Pages 12-19

Publisher

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.phytochem.2016.03.016

Keywords

Arabidopsis thalania; Truncated proteins; Xyloglucan xylosyltransferase activity; Xyloglucan

Funding

  1. NSF-MCB grant [1121163]
  2. Div Of Molecular and Cellular Bioscience
  3. Direct For Biological Sciences [1121163] Funding Source: National Science Foundation

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Xyloglucan is the most abundant hemicellulose in the primary cell wall of dicotyledonous plants. In Arabidopsis, three xyloglucan xylosyltransferases, XXT1, XXT2, and XXT5, participate in xylosylation of the xyloglucan backbone. Despite the importance of these enzymes, there is a lack of information on their structure and the critical residues required for substrate binding and transferase activity. In this study, the roles of different domains of XX2 in protein expression and catalytic activity were investigated by constructing a series of N- and C-terminal truncations. XXT2 with an N-terminal truncation of 31 amino acids after the predicted transmembrane domain showed the highest protein expression, but truncations of more than 31 residues decreased protein expression and catalytic activity. XXT2 constructs with C-terminal truncations showed increased protein expression but decreased activity, particularly for truncations of 44 or more amino acids. Site-directed mutagenesis was also used to investigate six positively charged residues near the C-terminus and found that four of the mutants showed decreased enzymatic activity. We conclude that the N- and C-termini of XXT2 have important roles in protein folding and enzymatic activity: the stem region (particularly the N-terminus of the catalytic domain) is critical for protein folding and the C-terminus is essential for enzymatic activity but not for protein folding. (C) 2016 Elsevier Ltd. All rights reserved.

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