» Articles » PMID: 21752929

Specific and Integrated Roles of Lmx1a, Lmx1b and Phox2a in Ventral Midbrain Development

Overview
Journal Development
Specialty Biology
Date 2011 Jul 15
PMID 21752929
Citations 68
Authors
Affiliations
Soon will be listed here.
Abstract

The severe disorders associated with a loss or dysfunction of midbrain dopamine neurons (DNs) have intensified research aimed at deciphering developmental programs controlling midbrain development. The homeodomain proteins Lmx1a and Lmx1b are important for the specification of DNs during embryogenesis, but it is unclear to what degree they may mediate redundant or specific functions. Here, we provide evidence showing that DN progenitors in the ventral midbrain can be subdivided into molecularly distinct medial and lateral domains, and these subgroups show different sensitivity to the loss of Lmx1a and Lmx1b. Lmx1a is specifically required for converting non-neuronal floor-plate cells into neuronal DN progenitors, a process that involves the establishment of Notch signaling in ventral midline cells. On the other hand, lateral DN progenitors that do not appear to originate from the floor plate are selectively ablated in Lmx1b mutants. In addition, we also reveal an unanticipated role for Lmx1b in regulating Phox2a expression and the sequential specification of ocular motor neurons (OMNs) and red nucleus neurons (RNNs) from progenitors located lateral to DNs in the midbrain. Our data therefore establish that Lmx1b influences the differentiation of multiple neuronal subtypes in the ventral midbrain, whereas Lmx1a appears to be exclusively devoted to the differentiation of the DN lineage.

Citing Articles

missense-perturbation of regulatory element footprints disrupts serotonergic forebrain axon arborization.

Eastman B, Tabuchi N, Zhang X, Spencer W, Deneris E bioRxiv. 2024; .

PMID: 39713471 PMC: 11661190. DOI: 10.1101/2024.12.12.628165.


Specification and survival of post-metamorphic branchiomeric neurons in a non-vertebrate chordate.

Gigante E, Piekarz K, Gurgis A, Cohen L, Razy-Krajka F, Popsuj S Development. 2024; 151(20).

PMID: 38895900 PMC: 11273300. DOI: 10.1242/dev.202719.


Evolution and development of extraocular motor neurons, nerves and muscles in vertebrates.

Fritzsch B Ann Anat. 2024; 253:152225.

PMID: 38346566 PMC: 11786961. DOI: 10.1016/j.aanat.2024.152225.


Single-Cell Transcriptomics and In Vitro Lineage Tracing Reveals Differential Susceptibility of Human iPSC-Derived Midbrain Dopaminergic Neurons in a Cellular Model of Parkinson's Disease.

Cardo L, Monzon-Sandoval J, Li Z, Webber C, Li M Cells. 2023; 12(24).

PMID: 38132179 PMC: 10741976. DOI: 10.3390/cells12242860.


miR-218 Promotes Dopaminergic Differentiation and Controls Neuron Excitability and Neurotransmitter Release through the Regulation of a Synaptic-Related Genes Network.

Pulcrano S, De Gregorio R, De Sanctis C, Volpicelli F, Piscitelli R, Speranza L J Neurosci. 2023; 43(48):8104-8125.

PMID: 37816598 PMC: 10697421. DOI: 10.1523/JNEUROSCI.0431-23.2023.