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PMID: 15128940 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't Research Support, U.S. Gov't, P.H.S.

An invariant aspartic acid in the DNA glycosylase domain of DEMETER is necessary for transcriptional activation of the imprinted MEDEA gene.

Choi Y, Harada JJ, Goldberg RB, Fischer RL

Abstract

Helix-hairpin-helix DNA glycosylases are typically small proteins that initiate repair of DNA by excising damaged or mispaired bases. An invariant aspartic acid in the active site is involved in catalyzing the excision reaction. Replacement of this critical residue with an asparagine severely reduces catalytic activity but preserves enzyme stability and structure. The Arabidopsis DEMETER (DME) gene encodes a large 1,729-aa polypeptide with a 200-aa DNA glycosylase domain. DME is expressed primarily in the central cell of the female gametophyte. DME activates maternal allele expression of the imprinted MEDEA (MEA) gene in the central cell and is required for seed viability. We mutated the invariant aspartic acid at position 1304 in DME to asparagine (D1304N) to determine whether the catalytic activity of the DNA glycosylase domain is required for DME function in vivo. Transgenes expressing wild-type DME in the central cell rescue seed abortion caused by a mutation in the endogenous DME gene and activate maternal MEA:GFP transcription. However, transgenes expressing the D1304N mutant DME do not rescue seed abortion or activate maternal MEA:GFP transcription. Whereas ectopic expression of the wild-type DME polypeptide in pollen is sufficient to activate ectopic paternal MEA and MEA:GUS expression, equivalent expression of the D1304N mutant DME in pollen failed to do so. These results show that the conserved aspartic acid residue is necessary for DME to function in vivo and suggest that an active DNA glycosylase domain, normally associated with DNA repair, promotes gene transcription that is essential for gene imprinting.

MeSH Terms
Arabidopsis Proteins/chemistry,metabolism Aspartic Acid/chemistry,metabolism Base Sequence DNA Glycosylases/chemistry,metabolism DNA Primers N-Glycosyl Hydrolases/chemistry,metabolism RNA, Plant Trans-Activators/chemistry,metabolism Transcription, Genetic Transgenes
Chemicals
Arabidopsis Proteins DNA Primers RNA, Plant Trans-Activators Aspartic Acid DEMETER protein, Arabidopsis DNA Glycosylases N-Glycosyl Hydrolases
Authors & Affiliations
4 authors, click to expand affiliations / ORCID
Choi Yeonhee
Department of Plant and Microbial Biology, University of California, Berkeley, CA 94720, USA.
Harada John J
Goldberg Robert B
Fischer Robert L
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Article Info
Journal
Proceedings of the National Academy of Sciences of the United States of America
Abbr.
Proc Natl Acad Sci U S A
ISSN
0027-8424
Published
2004-05-11
Epub
2004-00-05
Pages
7481-6
Language
English
Region
United States
NLM ID
7505876
PMCID
PMC409944
Subset
IM
Grants
NIGMS NIH HHS · R01 GM069415 · United States
NIGMS NIH HHS · GM 069415 · United States
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