Localization, anchoring and translational control of oskar, gurken, bicoid and nanos mRNA during Drosophila oogenesis

mRNA localization, and translation that is regulated spatially and temporally, are key mechanisms in the execution of polarized developmental programs. For over two decades, the Drosophila oocyte has served as a valuable model to study these mechanisms. Genetic and biochemical studies in flies have...

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Published inFly (Austin, Tex.) Vol. 3; no. 1; pp. 15 - 28
Main Authors Kugler, Jan-Michael, Lasko, Paul
Format Journal Article
LanguageEnglish
Published United States Taylor & Francis 01.01.2009
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Abstract mRNA localization, and translation that is regulated spatially and temporally, are key mechanisms in the execution of polarized developmental programs. For over two decades, the Drosophila oocyte has served as a valuable model to study these mechanisms. Genetic and biochemical studies in flies have greatly contributed to the identification and understanding of factors that govern RNA localization and translational control. Embryonic axis formation is mediated through the subcellular localization and precise translational regulation of four key determinant mRNAs during oogenesis encoded by oskar, bicoid, gurken and nanos. In this review we aim to summarize recent insights into the mechanisms governing the asymmetric distribution and translation of these mRNAs.
AbstractList mRNA localization, and translation that is regulated spatially and temporally, are key mechanisms in the execution of polarized developmental programs. For over two decades, the Drosophila oocyte has served as a valuable model to study these mechanisms. Genetic and biochemical studies in flies have greatly contributed to the identification and understanding of factors that govern RNA localization and translational control. Embryonic axis formation is mediated through the subcellular localization and precise translational regulation of four key determinant mRNAs during oogenesis encoded by oskar, bicoid, gurken and nanos. In this review we aim to summarize recent insights into the mechanisms governing the asymmetric distribution and translation of these mRNAs.
Author Lasko, Paul
Kugler, Jan-Michael
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Snippet mRNA localization, and translation that is regulated spatially and temporally, are key mechanisms in the execution of polarized developmental programs. For...
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SubjectTerms Animals
Binding
Biological Transport, Active
Biology
Bioscience
Calcium
Cancer
Cell
Cell Polarity
Cycle
Drosophila - genetics
Drosophila - growth & development
Drosophila - metabolism
Drosophila Proteins - biosynthesis
Drosophila Proteins - genetics
Female
Genes, Insect
Homeodomain Proteins - biosynthesis
Homeodomain Proteins - genetics
Landes
Microtubules - metabolism
Models, Biological
Oogenesis - genetics
Organogenesis
Protein Biosynthesis
Proteins
RNA, Messenger - genetics
RNA, Messenger - metabolism
RNA-Binding Proteins - biosynthesis
RNA-Binding Proteins - genetics
Trans-Activators - biosynthesis
Trans-Activators - genetics
Transforming Growth Factor alpha - biosynthesis
Transforming Growth Factor alpha - genetics
Title Localization, anchoring and translational control of oskar, gurken, bicoid and nanos mRNA during Drosophila oogenesis
URI https://www.tandfonline.com/doi/abs/10.4161/fly.3.1.7751
http://www.landesbioscience.com/journals/fly/article/7751/
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