Fine-tuning neuron number: Lzts as a key regulator of neurogenesis and cell proliferation in Ciona
En palabras de los autores
How progenitor mitotic timing is coupled to the number of neurons in a nervous system remains poorly understood, in part because most model systems have large, variable progenitor pools that obscure this relationship. The non-vertebrate chordate Ciona robusta offers a tractable alternative: its larval nervous system arises from an invariant lineage, including four Bipolar Tail Neurons (BTNs) that are reproducibly generated from the caudal neural plate border. Here we investigate the developmental function of the single Ciona ortholog belonging to the leucine zipper tumor suppressor (Lzts) gene family, whose vertebrate members are implicated in cell-cycle regulation and tumor suppression. In Ciona, Lzts is expressed in several embryonic tissues, including differentiating BTNs. Tissue-specific CRISPR/Cas9 knockout of Lzts in the BTN lineage produced supernumerary BTNs, without expanding the embryonic Neurog+ domain, indicating that Lzts acts downstream of BTN specification to limit neuron number. Lzts1 promotes Cdk1 activity via stabilization of Cdc25C, co-expression of Ciona Cdc25C or a non-phosphorylatable Cdk1/2/3 mutant rescued normal BTN number in Lzts crispants, proving the existence of an ancestral Lzts-Cdc25-Cdk1 circuit controlling neural cell cycle. These findings establish Ciona Lzts as a regulator of mitotic tempo determining the BTN number and suggest that this cell-cycle regulatory axis links proliferation to neurogenesis across chordates in vivo.
Apareció: sábado, 26 de septiembre. bioRxiv. Preprint, todavía sin revisión por pares.