Maintenance of motor neuron progenitors in Xenopus requires a novel localized cyclin

Jun An Chen, Sin Tak Chu, Enrique Amaya

    Research output: Contribution to journalArticlepeer-review

    Abstract

    The ventral spinal cord contains a pool of motor neuron progenitors (pMNs), which sequentially generate motor neurons and oligodendrocytes in the embryo. The mechanisms responsible for the maintenance of pMNs are not clearly understood. We have identified a novel cyclin, cyclin Dx (ccndx), which is specifically expressed in pMNs in Xenopus. Here, we show that inhibition of ccndx causes paralysis in embryos. Furthermore, we show that maintenance of pMNs requires ccndx function. In addition, inhibition of ccndx results in the specific loss of differentiated motor neurons. However, the expression of interneuron or sensory neuron markers is unaffected in these embryos, suggesting that the role of ccndx is specifically to maintain pMNs. Thus, we have identified, for the first time, a tissue-specific cell-cycle regulator that is essential for the maintenance of a pool of neural progenitors in the vertebrate spinal cord.
    Original languageEnglish
    Pages (from-to)287-292
    Number of pages5
    JournalEMBO reports
    Volume8
    Issue number3
    DOIs
    Publication statusPublished - Mar 2007

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