Multiplexed CRISPRi Reveals a Transcriptional Switch Between KLF Activators and Repressors in the Maturing Neocortex
Kirk, R. W.; Sun, L.; Xiao, R.; Clark, E. A.; Nelson, S. B.
Show abstract
A critical phase of mammalian brain development takes place after birth. Neurons of the mouse neocortex undergo dramatic changes in their morphology, physiology, and synaptic connections during the first postnatal month, while properties of immature neurons, such as the capacity for robust axon outgrowth, are lost. The genetic and epigenetic programs controlling prenatal development are well studied, but our understanding of the transcriptional mechanisms that regulate postnatal neuronal maturation is comparatively lacking. By integrating chromatin accessibility and gene expression data from two subtypes of neocortical pyramidal neurons in the neonatal and maturing brain, we predicted a role for the Kruppel-Like Factor (KLF) family of Transcription Factors in the developmental regulation of neonatally expressed genes. Using a multiplexed CRISPR Interference (CRISPRi) knockdown strategy, we found that a shift in expression from KLF activators (Klf6, Klf7) to repressors (Klf9, Klf13) during early postnatal development functions as a transcriptional switch to first activate, then repress a set of shared targets with cytoskeletal functions including Tubb2b and Dpysl3. We demonstrate that this switch is buffered by redundancy between KLF paralogs, which our multiplexed CRISPRi strategy is equipped to overcome and study. Our results indicate that competition between activators and repressors within the KLF family regulates a conserved component of the postnatal maturation program that may underlie the loss of intrinsic axon growth in maturing neurons. This could facilitate the transition from axon growth to synaptic refinement required to stabilize mature circuits.
Matching journals
The top 2 journals account for 50% of the predicted probability mass.
Similar papers in this journal
- Reliance of neuronal gene expression on cohesin scales with chromatin loop length 96%
- Dilated cardiomyopathy-associated RNA Binding Motif Protein 20 regulates long pre-mRNAs in neurons 96%
- Nova proteins direct synaptic integration of somatostatin interneurons through activity-dependent alternative splicing 96%
Similar papers in this journal
Similar papers in this journal
- General and cell-type-specific aspects of the motor neuron maturation transcriptional program 97%
- Temporal constraints on enhancer usage shape the regulation of limb gene transcription 95%
- Characterising open chromatin identifies novel cis-regulatory elements important for paraxial mesoderm formation and axis extension 95%
Similar papers in this journal
- Structural perturbation of chromatin domains with multiple developmental regulators can severely impact gene regulation and development 97%
- Developmental cell fate choice employs two distinct cis regulatory strategies 95%
- Repurposing of the multiciliation gene regulatory network in fate specification of Cajal-Retzius neurons 95%
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.