Control of species-dependent cortico-motoneuronal connections underlying manual dexterity.
basic_science · Level V
Where this comes from
- Record sourced from PubMed, PMID 28751609.
- Also identified by DOI 10.1126/science.aan3721 and PMC identifier 5774341.
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Abstract
Superior manual dexterity in higher primates emerged together with the appearance of cortico-motoneuronal (CM) connections during the evolution of the mammalian corticospinal (CS) system. Previously thought to be specific to higher primates, we identified transient CM connections in early postnatal mice, which are eventually eliminated by Sema6D-PlexA1 signaling. <i>PlexA1</i> mutant mice maintain CM connections into adulthood and exhibit superior manual dexterity as compared with that of controls. Last, differing <i>PlexA1</i> expression in layer 5 of the motor cortex, which is strong in wild-type mice but weak in humans, may be explained by FEZF2-mediated cis-regulatory elements that are found only in higher primates. Thus, species-dependent regulation of <i>PlexA1</i> expression may have been crucial in the evolution of mammalian CS systems that improved fine motor control in higher primates.
Medical subject headings
- Functional Laterality
- Gene Expression Regulation
- Motor Cortex
- Motor Neurons
- Nerve Tissue Proteins
- Pyramidal Tracts
- Receptors, Cell Surface