Crystallization and X-ray diffraction analysis of the C-terminal domain of the flax rust effector protein AvrM
Author(s)
Ve, Thomas
Williams, Simon J
Stamp, Anna
Valkov, Eugene
Dodds, Peter N
Anderson, Peter A
Kobe, Bostjan
Griffith University Author(s)
Year published
2011
Metadata
Show full item recordAbstract
The flax rust effector AvrM is a secreted protein of unknown fold that is
recognized by the M resistance protein in flax. In order to investigate the
structural basis of the AvrM–M interaction and possible virulence-associated
functions of AvrM, the C-terminal domains of two different AvrM variants
(AvrM-A and avrM) were crystallized. Crystals of native AvrM-A were obtained
using pentaerythritol ethoxylate (15/4 EO/OH) as a precipitant and diffracted
X-rays to 2.9 A˚ resolution. Selenomethionine-derivative crystals of similar
quality were obtained using PEG 1500 as a precipitant. Both the native and
selenomethionine-labelled ...
View more >The flax rust effector AvrM is a secreted protein of unknown fold that is recognized by the M resistance protein in flax. In order to investigate the structural basis of the AvrM–M interaction and possible virulence-associated functions of AvrM, the C-terminal domains of two different AvrM variants (AvrM-A and avrM) were crystallized. Crystals of native AvrM-A were obtained using pentaerythritol ethoxylate (15/4 EO/OH) as a precipitant and diffracted X-rays to 2.9 A˚ resolution. Selenomethionine-derivative crystals of similar quality were obtained using PEG 1500 as a precipitant. Both the native and selenomethionine-labelled AvrM-A crystals had symmetry of space group C2221 with eight molecules in the asymmetric unit. Crystals of avrM had symmetry of space group P212121 and diffracted X-rays to 2.7 A˚ resolution. Initial AvrM-A phases were calculated using the single-wavelength anomalous dispersion (SAD) method and a partial model was built. Phases for avrM were obtained by molecular replacement using the partial AvrM-A model.
View less >
View more >The flax rust effector AvrM is a secreted protein of unknown fold that is recognized by the M resistance protein in flax. In order to investigate the structural basis of the AvrM–M interaction and possible virulence-associated functions of AvrM, the C-terminal domains of two different AvrM variants (AvrM-A and avrM) were crystallized. Crystals of native AvrM-A were obtained using pentaerythritol ethoxylate (15/4 EO/OH) as a precipitant and diffracted X-rays to 2.9 A˚ resolution. Selenomethionine-derivative crystals of similar quality were obtained using PEG 1500 as a precipitant. Both the native and selenomethionine-labelled AvrM-A crystals had symmetry of space group C2221 with eight molecules in the asymmetric unit. Crystals of avrM had symmetry of space group P212121 and diffracted X-rays to 2.7 A˚ resolution. Initial AvrM-A phases were calculated using the single-wavelength anomalous dispersion (SAD) method and a partial model was built. Phases for avrM were obtained by molecular replacement using the partial AvrM-A model.
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Journal Title
Acta Crystallographica Section F: Structural Biology and Crystallization Communications
Volume
F67
Issue
12
Subject
Microbiology not elsewhere classified