Structural and functional characterization of TRI3 trichothecene 15-O-acetyltransferase from Fusarium sporotrichioides

被引:39
作者
Garvey, Graeme S. [1 ]
McCormick, Susan P. [2 ]
Alexander, Nancy J. [2 ]
Rayment, Ivan [1 ]
机构
[1] Univ Wisconsin, Dept Biochem, Madison, WI 53706 USA
[2] USDA ARS, Mycotoxin Res Unit, Natl Ctr Agr Utilizat Res, Peoria, IL 61604 USA
关键词
Fusarium head blight; trichothecene mycotoxin; deoxynivalenol; T-2; toxin; Fusarium graminearum; Fusarium sporotrichioides; acetyltransferase; coenzyme A; BAHD superfamily; HEAD BLIGHT; CYTOCHROME-P450; MONOOXYGENASE; OXYGENATION STEPS; CRYSTAL-STRUCTURE; GENE-CLUSTER; BIOSYNTHESIS; GRAMINEARUM; ENCODES; CLONING; TOXIN;
D O I
10.1002/pro.80
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Fusarium head blight is a devastating disease of cereal crops whose worldwide incidence is increasing and at present there is no satisfactory way of combating this pathogen or its associated toxins. There is a wide variety of trichothecene mycotoxins and they all contain a 12,13-epoxytrichothecene skeleton but differ in their substitutions. Indeed, there is considerable variation in the toxin profile across the numerous Fusarium species that has been ascribed to differences in the presence or absence of biosynthetic enzymes and their relative activity. This article addresses the source of differences in acetylation at the C15 position of the trichothecene molecule. Here, we present the in vitro structural and biochemical characterization of TRI3, a 15-O-trichothecene acetyltransferase isolated from F. sporotrichioides and the "in vivo'' characterization of Delta tri3 mutants of deoxynivalenol (DON) producing F. graminearum strains. A kinetic analysis shows that TRI3 is an efficient enzyme with the native substrate, 15-decalonectrin, but is inactive with either DON or nivalenol. The structure of TRI3 complexed with 15-decalonectrin provides an explanation for this specificity and shows that Tri3 and Tri101 (3-O-trichothecene acetyltransferase) are evolutionarily related. The active site residues are conserved across all sequences for TRI3 orthologs, suggesting that differences in acetylation at C15 are not due to differences in Tri3. The tri3 deletion mutant shows that acetylation at C15 is required for DON biosynthesis even though DON lacks a C15 acetyl group. The enzyme(s) responsible for deacetylation at the 15 position of the trichothecene mycotoxins have not been identified.
引用
收藏
页码:747 / 761
页数:15
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