Local protein synthesis mediates precise spatio-temporal regulation of gene expression for neuronal functions such as long-term plasticity, axon guidance and regeneration. To reveal the underlying mechanisms of local translation, it is crucial to understand mRNA transport, localization and translation in live neurons. Among various techniques for mRNA analysis, fluorescence microscopy has been widely used as the most direct method to study localization of mRNA. Live-cell imaging of single RNA molecules is particularly advantageous to dissect the highly heterogeneous and dynamic nature of messenger ribonucleoprotein (mRNP) complexes in neurons. Here, we review recent advances in the study of mRNA localization and translation in live neurons ...
A steady accumulation of experimental data argues that protein synthesis in neurons is not merely re...
Here are the gene expression datasets of RIBOmap included in "Spatially Resolved Single-cell Transla...
mRNA transport restricts translation to specific subcellular locations, which is the basis for many ...
Neurons are amongst the most structurally complex cells and exhibit a high degree of spatial compart...
Curs 2015-2016So far research has traditionally identified a negative correlation between miRNA and ...
Local translation in distal processes of the neuron was discovered over 35 years ago, but only with ...
mRNA translation is a key step in decoding the genetic information stored in DNA. Regulation of tran...
Fine-tuning cellular physiology in response to intracellular and environmental cues requires precise...
Here are the pre-processed image datasets of RIBOmap included in "Spatially Resolved Single-cell Tra...
The use of fluorescent proteins has revolutionized the study of protein localization and transport. ...
RNA molecules are diverse in form and function. They include messenger RNAs (mRNAs) that are templat...
mRNA translation is a key step in gene expression. Proper regulation of translation efficiency ensur...
Single-molecule translation imaging (SMTI) is a straightforward technique for the direct quantificat...
The precise control of mRNA translation is a crucial step in post-transcriptional gene regulation of...
A steady accumulation of experimental data argues that protein synthesis in neurons is not merely re...
Here are the gene expression datasets of RIBOmap included in "Spatially Resolved Single-cell Transla...
mRNA transport restricts translation to specific subcellular locations, which is the basis for many ...
Neurons are amongst the most structurally complex cells and exhibit a high degree of spatial compart...
Curs 2015-2016So far research has traditionally identified a negative correlation between miRNA and ...
Local translation in distal processes of the neuron was discovered over 35 years ago, but only with ...
mRNA translation is a key step in decoding the genetic information stored in DNA. Regulation of tran...
Fine-tuning cellular physiology in response to intracellular and environmental cues requires precise...
Here are the pre-processed image datasets of RIBOmap included in "Spatially Resolved Single-cell Tra...
The use of fluorescent proteins has revolutionized the study of protein localization and transport. ...
RNA molecules are diverse in form and function. They include messenger RNAs (mRNAs) that are templat...
mRNA translation is a key step in gene expression. Proper regulation of translation efficiency ensur...
Single-molecule translation imaging (SMTI) is a straightforward technique for the direct quantificat...
The precise control of mRNA translation is a crucial step in post-transcriptional gene regulation of...
A steady accumulation of experimental data argues that protein synthesis in neurons is not merely re...
Here are the gene expression datasets of RIBOmap included in "Spatially Resolved Single-cell Transla...
mRNA transport restricts translation to specific subcellular locations, which is the basis for many ...