In the murine cerebral cortex, mammalian homologues of the Cux family transcription factors, Cux1 and Cux2, have been identified as restricted molecular markers for the upper layer (II-IV) pyramidal neurons. However, their functions in cortical development are largely unknown. Here we report that increasing the intracellular level of Cux1, but not Cux2, reduced the dendritic complexity of cultured cortical pyramidal neurons. Consistently, reducing the expression of Cux1 promoted the dendritic arborization in these pyramidal neurons. This effect required the existence of the DNA-binding domains, hence the transcriptional passive repression activity of Cux1. Analysis of downstream signals suggested that Cux1 regulates dendrite development pri...
<p>(A) Representative examples of transfected neurons at DIV6. Scale bars: 50 µm. (B–C) The dendriti...
Neuronal subtype-specific transcription factors (TFs) instruct key features of neuronal function and...
Gasterstadt I, Schroder M, Cronin L, et al. Chemogenetic Silencing of Differentiating Cortical Neuro...
© 2014 Wiley Periodicals, Inc. A number of recent reports implicate the differential regulation of a...
<p>(A–B) Both p27<sup>ck-</sup> (p27 deficient in the interaction with cyclins and Cdks) and p27-CT ...
SummaryDendrite branching and spine formation determines the function of morphologically distinct an...
<p>(A) RT-PCR analysis of p27 and NCAM expression levels after overexpression of Cux proteins. Repre...
<p>(A) Domain structure of Cux1 protein. Constructed deletions of Cux1 are indicated. (B) Representa...
<p>(A–B) RT-PCR analysis of Cux expression level following RNAi treatments. Two specific RNAi each d...
Whereas neurons of the lower layers (VI--V) of the cerebral cortex are first born from dividing prec...
Whereas neurons of the lower layers (VI--V) of the cerebral cortex are first born from dividing prec...
Cut-Like Homeobox 2 (Cux2) is a transcription factor involved in dendrite and spine development, and...
<p>(A–B) Increase of p27 expression level by transfection of Cux1-RNAi plasmids into cultured cortic...
Projection neurons destined for the cortical plate are generated sequentially from the proliferative...
AbstractThe acquisition of cell type-specific morphologies is a central feature of neuronal differen...
<p>(A) Representative examples of transfected neurons at DIV6. Scale bars: 50 µm. (B–C) The dendriti...
Neuronal subtype-specific transcription factors (TFs) instruct key features of neuronal function and...
Gasterstadt I, Schroder M, Cronin L, et al. Chemogenetic Silencing of Differentiating Cortical Neuro...
© 2014 Wiley Periodicals, Inc. A number of recent reports implicate the differential regulation of a...
<p>(A–B) Both p27<sup>ck-</sup> (p27 deficient in the interaction with cyclins and Cdks) and p27-CT ...
SummaryDendrite branching and spine formation determines the function of morphologically distinct an...
<p>(A) RT-PCR analysis of p27 and NCAM expression levels after overexpression of Cux proteins. Repre...
<p>(A) Domain structure of Cux1 protein. Constructed deletions of Cux1 are indicated. (B) Representa...
<p>(A–B) RT-PCR analysis of Cux expression level following RNAi treatments. Two specific RNAi each d...
Whereas neurons of the lower layers (VI--V) of the cerebral cortex are first born from dividing prec...
Whereas neurons of the lower layers (VI--V) of the cerebral cortex are first born from dividing prec...
Cut-Like Homeobox 2 (Cux2) is a transcription factor involved in dendrite and spine development, and...
<p>(A–B) Increase of p27 expression level by transfection of Cux1-RNAi plasmids into cultured cortic...
Projection neurons destined for the cortical plate are generated sequentially from the proliferative...
AbstractThe acquisition of cell type-specific morphologies is a central feature of neuronal differen...
<p>(A) Representative examples of transfected neurons at DIV6. Scale bars: 50 µm. (B–C) The dendriti...
Neuronal subtype-specific transcription factors (TFs) instruct key features of neuronal function and...
Gasterstadt I, Schroder M, Cronin L, et al. Chemogenetic Silencing of Differentiating Cortical Neuro...