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Biology subjects

Ditzer, N.

Publications and source records attributed to Ditzer, N..

3 recordsLinked to original sources

Human-specific morphoregulatory signatures in basal radial glia characterize neocortex evolution

As the seat of our cognition, the human neocortex is an object of immense fascination. Human neocortex expansion during evolution has been attributed to an increase in the proliferative capacity of neural progenitor cells during development, particularly basal radial glia (bRG). Despite their evolutionary relevance, the genomic changes driving human-specific bRG biology remain uncharacterized. We used comparative chromatin and transcriptional profiling of neural progenitor cells isolated from gorilla, chimpanzee and human cerebral organoids to identify cis-regulatory elements that have gained activity in humans. Focusing specifically on bRG, we discovered that morphoregulatory enhancer activity and gene expression signatures distinguish human bRG from other great apes. Functional analysis of the morphoregulatory genes FAM107A and CNGA3 in human organoids revealed that these genes are required for the morphological complexity of human bRG. Taken together, our interspecies comparison of basal radial glia suggests that human-specific morphoregulatory signatures characterize neocortex evolution.

neuroscience↗

Epigenome profiling identifies H3K27me3 regulation of extra-cellular matrix composition in human corticogenesis

Epigenetic mechanisms regulate gene expression programs during neurogenesis, but the extent of epigenetic remodelling during human cortical development remains unknown. Here, we characterize the epigenetic landscape of the human developing neocortex by leveraging Epi-CyTOF, a mass cytometry-based approach for the simultaneous single cell analysis of more than 30 epigenetic marks. We identify H3K27me3, deposited by Polycomb Repressive Complex 2 (PRC2), as the modification with the strongest cell type-specific enrichment. Inhibition of PRC2 in human cortical organoids resulted in a shift of neural progenitor cell (NPC) proliferation towards differentiation. Cell type- specific profiling of H3K27me3 not only identified neuronal differentiation genes in the human neocortex, but also extra-cellular matrix (ECM) genes. PRC2 inhibition resulted in increased production of the proteoglycan Syndecan 1. Overall, this study comprehensively characterizes the epigenetic state of specific neural cell types and highlights a novel role for H3K27me3 in regulating the ECM composition in the human developing neocortex.

developmental biology↗

Primate-expressed EPIREGULIN promotes basal progenitor proliferation in the developing neocortex

Neocortex expansion during evolution is linked to higher numbers of neurons thought to result from increased proliferative capacity and neurogenic potential of basal progenitor cells (BPs) during development. Here we show that EREG, encoding the growth factor EPIREGULIN, is expressed in the human developing neocortex and in gorilla organoids, but not in the mouse neocortex. Addition of EPIREGULIN to the mouse neocortex increases proliferation of BPs via EGFR-mediated signaling, whereas ablation of EREG in human cortical organoids reduces BP proliferation. Addition of EPIREGULIN to cortical organoids promotes a further increase in proliferation of gorilla but not human BPs. Finally, we identify putative cis-regulatory elements that may contribute to inter-species differences in EREG expression. Overall, our results suggest that species-specific expression of EPIREGULIN may contribute to increased neocortex size in primates by providing a pro-proliferative signal to BPs in the subventricular zone progenitor niche.

developmental biology↗