In Drosophila, the posterior localization of oskar mRNA and its translational regulation are essential for axis specification and germline formation. Recently in Cell, Chekulaeva et al. (2006) demonstrated that Bruno inhibits cap-dependent translation of oskar mRNA and uncovered a novel Bruno-dependent assembly of oskar mRNA into multimeric RNP particles, which are inaccessible to the translational machinery. This work provides a novel link between mRNA localization, particle formation, and translational regulation
The localization of oskar mRNA to the posterior of the Drosophila oocyte defines the site of assembl...
oskar mRNA localization to the posterior of the Drosophila oocyte defines where the abdomen and germ...
Anteroposterior patterning of the Drosophilaembryo depends on a gradient of Nanos protein arising fr...
Prior to reaching the posterior pole of the Drosophila oocyte, oskar mRNA is translationally silence...
Oskar is a body pattern and germ cell determining protein in Drosophila melanogaster. This protein ...
SummaryPrior to reaching the posterior pole of the Drosophila oocyte, oskar mRNA is translationally ...
In Drosophila, the posterior localization of oskar mRNA and its translational regulation are essenti...
Study of the timing and location for mRNA translation across model systems has begun to shed light o...
<div><p>A complex program of translational repression, mRNA localization, and translational activati...
International audienceLocal translation of asymmetrically enriched mRNAs is a powerful mechanism for...
Local translation of asymmetrically enriched mRNAs is a powerful mechanism for functional polarizati...
The localization of Oskar at the posterior pole of the Drosophila oocyte induces the assembly of the...
SummaryAsymmetric positioning of proteins within cells is crucial for cell polarization and function...
AbstractOskar (osk) protein directs the deployment of nanos (nos), the posterior body-patterning mor...
AbstractThe RNA Recognition Motif (RRM) type RNA binding protein Bruno is required for the different...
The localization of oskar mRNA to the posterior of the Drosophila oocyte defines the site of assembl...
oskar mRNA localization to the posterior of the Drosophila oocyte defines where the abdomen and germ...
Anteroposterior patterning of the Drosophilaembryo depends on a gradient of Nanos protein arising fr...
Prior to reaching the posterior pole of the Drosophila oocyte, oskar mRNA is translationally silence...
Oskar is a body pattern and germ cell determining protein in Drosophila melanogaster. This protein ...
SummaryPrior to reaching the posterior pole of the Drosophila oocyte, oskar mRNA is translationally ...
In Drosophila, the posterior localization of oskar mRNA and its translational regulation are essenti...
Study of the timing and location for mRNA translation across model systems has begun to shed light o...
<div><p>A complex program of translational repression, mRNA localization, and translational activati...
International audienceLocal translation of asymmetrically enriched mRNAs is a powerful mechanism for...
Local translation of asymmetrically enriched mRNAs is a powerful mechanism for functional polarizati...
The localization of Oskar at the posterior pole of the Drosophila oocyte induces the assembly of the...
SummaryAsymmetric positioning of proteins within cells is crucial for cell polarization and function...
AbstractOskar (osk) protein directs the deployment of nanos (nos), the posterior body-patterning mor...
AbstractThe RNA Recognition Motif (RRM) type RNA binding protein Bruno is required for the different...
The localization of oskar mRNA to the posterior of the Drosophila oocyte defines the site of assembl...
oskar mRNA localization to the posterior of the Drosophila oocyte defines where the abdomen and germ...
Anteroposterior patterning of the Drosophilaembryo depends on a gradient of Nanos protein arising fr...