PubMed Health⌕ Search

PubMed · 14709177

Antisense transcripts with rice full-length cDNAs.

Abstract

BACKGROUND: Natural antisense transcripts control gene expression through post-transcriptional gene silencing by annealing to the complementary sequence of the sense transcript. Because many genome and mRNA sequences have become available recently, genome-wide searches for sense-antisense transcripts have been reported, but few plant sense-antisense transcript pairs have been studied. The Rice Full-Length cDNA Sequencing Project has enabled computational searching of a large number of plant sense-antisense transcript pairs. RESULTS: We identified sense-antisense transcript pairs from 32,127 full-length rice cDNA sequences produced by this project and public rice mRNA sequences by aligning the cDNA sequences with rice genome sequences. We discovered 687 bidirectional transcript pairs in rice, including sense-antisense transcript pairs. Both sense and antisense strands of 342 pairs (50%) showed homology to at least one expressed sequence tag other than that of the pair. Microarray analysis showed 82 pairs (32%) out of 258 pairs on the microarray were more highly expressed than the median expression intensity of 21,938 rice transcriptional units. Both sense and antisense strands of 594 pairs (86%) had coding potential. CONCLUSIONS: The large number of plant sense-antisense transcript pairs suggests that gene regulation by antisense transcripts occurs in plants and not only in animals. On the basis of our results, experiments should be carried out to analyze the function of plant antisense transcripts.

Explore related subjects

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Naoki Osato, Hitomi Yamada, Kouji Satoh, Hisako Ooka, Makoto Yamamoto, Kohji Suzuki, Jun Kawai, Piero Carninci, Yasuhiro Ohtomo, Kazuo Murakami, Kenichi Matsubara, Shoshi Kikuchi, Yoshihide Hayashizaki. 2003-12-11. Antisense transcripts with rice full-length cDNAs.. https://doi.org/10.1186/gb-2003-5-1-r5

Cite the original work for its findings. Save a collection to share your selection of sources.

KEEP EXPLORING

Related citations

Improving nutritional quality of maize proteins by expressing sense and antisense zein genes.

The predominant proteins in maize grain are a family of alcohol-soluble prolamin storage proteins called zeins. They account for >50% of total seed proteins but are deficient in several essential amino acids. As a result, the corn grain is considered to be nutritionally poor for monogastric animals with respect to key essential amino acids, most notably lysine, tryptophan, and methionine. Thus, corn mutants with reduced levels of zeins, such as opaque-2 (o2), have been demonstrated to possess grain with improved nutritional quality characteristics. The o2 mutant has a superior amino acid composition and has been used through conventional breeding to develop Quality Protein Maize (QPM) for human and animal consumption in developing countries. With the understanding of molecular genetics of zeins and progress in biotechnology, an alternative approach to zein reduction is explored here. Through the targeted reduction of the 19-kDa alpha-zeins, increased levels of lysine, tryptophan, and methionine have been engineered in grain of transgenic hybrids. Currently, the agronomic properties and nutritional values of these transgenic lines are being evaluated.

DNA, Antisense↗

[Gene therapy in pancreatic cancer].

Pancreatic cancer is the fifth cause of cancer death in the developed world. It is a highly malignant disease, characterised by aggressive local spread and early locoregional and hepatic metastasis. Surgery offers the only prospect of long-term survival, but the resectability ratio is very low at the time of diagnosis. Conventional chemo- and radiotherapy are relatively ineffective, that is why development of newer therapeutic alternatives are encouraged. Gene therapy came into the limelight of interest. Authors discuss the fundamental scientific principle and clinical experience in connection with gene therapy of pancreatic cancer. Different targets include antisense strategies, gene-replacement, gene-directed prodrug activation therapy, promoter gene strategies, as well as oncolytic viruses.

DNA, Antisense↗

Synthesis of 2'-substituted MMI linked nucleosidic dimers: an optimization study in search of high affinity oligonucleotides for use in antisense constructs.

The synthesis of a series of methylene(methylimino) (MMI) linked oligodeoxyribonucleotide dimers modified at the 2'-position with fluoro and/or methoxy groups and their incorporation into different sequences has been accomplished. From these dimers, bis 2'-OMe MMI dimer was selected for further studies based on its synthetic accessibility and the increased thermodynamic stability conferred upon oligonucleotides incorporating this modification.

DNA, Antisense↗