Literature DB >> 32354790

Molecular Mechanism of Polysaccharide Acetylation by the Arabidopsis Xylan O-acetyltransferase XOAT1.

Vladimir V Lunin1, Hsin-Tzu Wang2,3, Vivek S Bharadwaj1, Markus Alahuhta1, Maria J Peña2, Jeong-Yeh Yang2, Stephanie A Archer-Hartmann2, Parastoo Azadi2, Michael E Himmel1, Kelley W Moremen2,3, William S York2,3, Yannick J Bomble4, Breeanna R Urbanowicz5,3.   

Abstract

Xylans are a major component of plant cell walls. O-Acetyl moieties are the dominant backbone substituents of glucuronoxylan in dicots and play a major role in the polymer-polymer interactions that are crucial for wall architecture and normal plant development. Here, we describe the biochemical, structural, and mechanistic characterization of Arabidopsis (Arabidopsis thaliana) xylan O-acetyltransferase 1 (XOAT1), a member of the plant-specific Trichome Birefringence Like (TBL) family. Detailed characterization of XOAT1-catalyzed reactions by real-time NMR confirms that it exclusively catalyzes the 2-O-acetylation of xylan, followed by nonenzymatic acetyl migration to the O-3 position, resulting in products that are monoacetylated at both O-2 and O-3 positions. In addition, we report the crystal structure of the catalytic domain of XOAT1, which adopts a unique conformation that bears some similarities to the α/β/α topology of members of the GDSL-like lipase/acylhydrolase family. Finally, we use a combination of biochemical analyses, mutagenesis, and molecular simulations to show that XOAT1 catalyzes xylan acetylation through formation of an acyl-enzyme intermediate, Ac-Ser-216, by a double displacement bi-bi mechanism involving a Ser-His-Asp catalytic triad and unconventionally uses an Arg residue in the formation of an oxyanion hole.
© 2020 American Society of Plant Biologists. All rights reserved.

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Year:  2020        PMID: 32354790      PMCID: PMC7346548          DOI: 10.1105/tpc.20.00028

Source DB:  PubMed          Journal:  Plant Cell        ISSN: 1040-4651            Impact factor:   11.277


  55 in total

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  7 in total

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3.  Rational enzyme design for controlled functionalization of acetylated xylan for cell-free polymer biosynthesis.

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Review 6.  The SGNH hydrolase family: a template for carbohydrate diversity.

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  7 in total

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