SummaryMolecular motors actively transport many types of cargo along the cytoskeleton in a wide range of organisms. One class of cargo is localized mRNAs, which are transported by myosin on actin filaments or by kinesin and dynein on microtubules. How the cargo is kept at its final intracellular destination and whether the motors are recycled after completion of transport are poorly understood. Here, we use a new RNA anchoring assay in living Drosophila blastoderm embryos to show that apical anchoring of mRNA after completion of dynein transport does not depend on actin or on continuous active transport by the motor. Instead, apical anchoring of RNA requires microtubules and involves dynein as a static anchor that remains with the cargo at ...
SummaryLocalization of bicoid mRNA to the anterior of the Drosophila oocyte is essential to produce ...
RNA localization serves numerous purposes from controlling development and differentiation to suppor...
Cytoplasmic dynein is a microtubule-based motor with diverse cellular roles. Here, we use mutations ...
AbstractAsymmetric mRNA localization targets proteins to their cytoplasmic site of function. We have...
SummaryDuring asymmetric cytoplasmic mRNA transport, cis-acting localization signals are widely assu...
mRNA localization ensures correct spatial and temporal control of protein synthesis in the cell. Usi...
AbstractBackground: The cytoskeleton and associated motors play an important role in the establishme...
AbstractAsymmetric mRNA localization targets proteins to their cytoplasmic site of function. We have...
SummaryDuring asymmetric cytoplasmic mRNA transport, cis-acting localization signals are widely assu...
AbstractRecent studies show that dynein and kinesin are both required for cargo transport to the ant...
SummaryIn Drosophila oocytes, dorso-anterior transport of gurken mRNA requires both the Dynein motor...
Polarised mRNA transport is a prevalent mechanism for spatial control of protein synthesis. However...
AbstractProper spatial and temporal localization of specific mRNAs is pivotal in the early stages of...
AbstractBackground: The cytoskeleton and associated motors play an important role in the establishme...
Cytoplasmic dynein is a microtubule-based motor with diverse cellular roles. Here, we use mutations ...
SummaryLocalization of bicoid mRNA to the anterior of the Drosophila oocyte is essential to produce ...
RNA localization serves numerous purposes from controlling development and differentiation to suppor...
Cytoplasmic dynein is a microtubule-based motor with diverse cellular roles. Here, we use mutations ...
AbstractAsymmetric mRNA localization targets proteins to their cytoplasmic site of function. We have...
SummaryDuring asymmetric cytoplasmic mRNA transport, cis-acting localization signals are widely assu...
mRNA localization ensures correct spatial and temporal control of protein synthesis in the cell. Usi...
AbstractBackground: The cytoskeleton and associated motors play an important role in the establishme...
AbstractAsymmetric mRNA localization targets proteins to their cytoplasmic site of function. We have...
SummaryDuring asymmetric cytoplasmic mRNA transport, cis-acting localization signals are widely assu...
AbstractRecent studies show that dynein and kinesin are both required for cargo transport to the ant...
SummaryIn Drosophila oocytes, dorso-anterior transport of gurken mRNA requires both the Dynein motor...
Polarised mRNA transport is a prevalent mechanism for spatial control of protein synthesis. However...
AbstractProper spatial and temporal localization of specific mRNAs is pivotal in the early stages of...
AbstractBackground: The cytoskeleton and associated motors play an important role in the establishme...
Cytoplasmic dynein is a microtubule-based motor with diverse cellular roles. Here, we use mutations ...
SummaryLocalization of bicoid mRNA to the anterior of the Drosophila oocyte is essential to produce ...
RNA localization serves numerous purposes from controlling development and differentiation to suppor...
Cytoplasmic dynein is a microtubule-based motor with diverse cellular roles. Here, we use mutations ...