The assembly of neuronal circuits depends on the correct wiring of axons and dendrites. Studies in our laboratory revealed a critical role of seven-pass atypical cadherin Celsr3, a member of planar cell polarity (PCP) proteins, in the development of axonal tracts in the central nervous system, such as the anterior commissure, internal capsule and corticospinal tract. Celsr3 deficiency does not alter axonal growth, but affects axon guidance in cell-autonomous or non-cell-autonomous manners, causing axon stalling at intermediate targets or rerouting. Notably, all axon guidance defects in Celsr3−/− were observed in mice bearing mutations in the PCP gene Fzd3, and some errors were reported in mice with mutations of Vangl2, another PCP gene. Des...
International audienceIn the nervous system, cilia dysfunction perturbs the circulation of the cereb...
Development of axonal tracts requires interactions between growth cones and the environment. Tracts ...
Cadherin EGF LAG seven-pass G-type receptors 1, 2, and 3 (Celsr1-3) form a family of three atypical ...
The cadherin Celsr3 regulates the directional growth and targeting of axons in the CNS, but whether ...
International audienceThe cadherin Celsr3 regulates the directional growth and targeting of axons in...
The ability of the mammalian central nervous system to interpret the environment accurately, integra...
Atypical cadherin (Celsr3) and the receptor Frizzled3 (Fzd3) are crucial for the development of axon...
Celsr1-3 (for Cadherin EGF Laminin Seven Pass Receptor), the mammalian orthologs of Drosophila Flami...
The development of axonal tracts requires interactions between growth cones and the environment. Maj...
Cadherin EGF LAG seven-pass G-type receptors 1, 2 and 3 (CELSR1-3) form a family of three atypical c...
The assembly of functional neuronal circuits depends on the correct wiring of axons and dendrites. T...
Atypical cadherin Celsr3, a regulator of planar cell polarity, is critical for the development of th...
Celsr3 and Fzd3, members of "core planar cell polarity" (PCP) genes, were shown previously to contro...
Cadherin EGF LAG seven-pass G-type receptors 1, 2, and 3 (Celsr1-3) form a family of three atypical ...
Abstract: Background Core planar cell polarity gene Celsr3 (Cadherin EGF Laminin Seven Pass Recept...
International audienceIn the nervous system, cilia dysfunction perturbs the circulation of the cereb...
Development of axonal tracts requires interactions between growth cones and the environment. Tracts ...
Cadherin EGF LAG seven-pass G-type receptors 1, 2, and 3 (Celsr1-3) form a family of three atypical ...
The cadherin Celsr3 regulates the directional growth and targeting of axons in the CNS, but whether ...
International audienceThe cadherin Celsr3 regulates the directional growth and targeting of axons in...
The ability of the mammalian central nervous system to interpret the environment accurately, integra...
Atypical cadherin (Celsr3) and the receptor Frizzled3 (Fzd3) are crucial for the development of axon...
Celsr1-3 (for Cadherin EGF Laminin Seven Pass Receptor), the mammalian orthologs of Drosophila Flami...
The development of axonal tracts requires interactions between growth cones and the environment. Maj...
Cadherin EGF LAG seven-pass G-type receptors 1, 2 and 3 (CELSR1-3) form a family of three atypical c...
The assembly of functional neuronal circuits depends on the correct wiring of axons and dendrites. T...
Atypical cadherin Celsr3, a regulator of planar cell polarity, is critical for the development of th...
Celsr3 and Fzd3, members of "core planar cell polarity" (PCP) genes, were shown previously to contro...
Cadherin EGF LAG seven-pass G-type receptors 1, 2, and 3 (Celsr1-3) form a family of three atypical ...
Abstract: Background Core planar cell polarity gene Celsr3 (Cadherin EGF Laminin Seven Pass Recept...
International audienceIn the nervous system, cilia dysfunction perturbs the circulation of the cereb...
Development of axonal tracts requires interactions between growth cones and the environment. Tracts ...
Cadherin EGF LAG seven-pass G-type receptors 1, 2, and 3 (Celsr1-3) form a family of three atypical ...