An epigenetic gene silencing pathway selectively acting on transgenic DNA in the green alga Chlamydomonas

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作者
Juliane Neupert
Sean D. Gallaher
Yinghong Lu
Daniela Strenkert
Na’ama Segal
Rouhollah Barahimipour
Sorel T. Fitz-Gibbon
Michael Schroda
Sabeeha S. Merchant
Ralph Bock
机构
[1] Max-Planck-Institut für Molekulare Pflanzenphysiologie,University of California Los Angeles, Department of Chemistry and Biochemistry
[2] and Institute for Genomics and Proteomics,University of California Los Angeles, Department of Molecular
[3] Cell and Developmental Biology,undefined
[4] Nanjing University of Science and Technology,undefined
[5] Institute of Chemical Biology and Advanced Materials,undefined
[6] University of California Berkeley,undefined
[7] Departments of Molecular and Cell Biology and Plant and Microbial Biology,undefined
[8] Technical University of Kaiserslautern,undefined
[9] Molecular Biotechnology & Systems Biology,undefined
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摘要
Silencing of exogenous DNA can make transgene expression very inefficient. Genetic screens in the model alga Chlamydomonas have demonstrated that transgene silencing can be overcome by mutations in unknown gene(s), thus producing algal strains that stably express foreign genes to high levels. Here, we show that the silencing mechanism specifically acts on transgenic DNA. Once a permissive chromatin structure has assembled, transgene expression can persist even in the absence of mutations disrupting the silencing pathway. We have identified the gene conferring the silencing and show it to encode a sirtuin-type histone deacetylase. Loss of gene function does not appreciably affect endogenous gene expression. Our data suggest that transgenic DNA is recognized and then quickly inactivated by the assembly of a repressive chromatin structure composed of deacetylated histones. We propose that this mechanism may have evolved to provide protection from potentially harmful types of environmental DNA.
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