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result(s) for
"Thill, Greg"
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LINGO-1 is a component of the Nogo-66 receptor/p75 signaling complex
by
Allaire, Norm
,
Sands, Bryan
,
Ji, Benxiu
in
Amino Acid Sequence - genetics
,
Animal Genetics and Genomics
,
Animals
2004
Axon regeneration in the adult CNS is prevented by inhibitors in myelin. These inhibitors seem to modulate RhoA activity by binding to a receptor complex comprising a ligand-binding subunit (the Nogo-66 receptor NgR1) and a signal transducing subunit (the neurotrophin receptor p75). However, in reconstituted non-neuronal systems, NgR1 and p75 together are unable to activate RhoA, suggesting that additional components of the receptor may exist. Here we describe LINGO-1, a nervous system-specific transmembrane protein that binds NgR1 and p75 and that is an additional functional component of the NgR1/p75 signaling complex. In non-neuronal cells, coexpression of human NgR1, p75 and LINGO-1 conferred responsiveness to oligodendrocyte myelin glycoprotein, as measured by RhoA activation. A dominant-negative human
LINGO-1
construct attenuated myelin inhibition in transfected primary neuronal cultures. This effect on neurons was mimicked using an exogenously added human LINGO-1-Fc fusion protein. Together these observations suggest that LINGO-1 has an important role in CNS biology.
Journal Article
LINGO-1 negatively regulates myelination by oligodendrocytes
by
Jung, Vincent
,
Miller, Robert H
,
Scott, Martin L
in
Animal Genetics and Genomics
,
Animals
,
Antibodies
2005
The control of myelination by oligodendrocytes in the CNS is poorly understood. Here we show that LINGO-1 is an important negative regulator of this critical process. LINGO-1 is expressed in oligodendrocytes. Attenuation of its function by dominant-negative LINGO-1,
LINGO-1
RNA-mediated interference (RNAi) or soluble human LINGO-1 (LINGO-1-Fc) leads to differentiation and increased myelination competence. Attenuation of LINGO-1 results in downregulation of RhoA activity, which has been implicated in oligodendrocyte differentiation. Conversely, overexpression of LINGO-1 leads to activation of RhoA and inhibition of oligodendrocyte differentiation and myelination. Treatment of oligodendrocyte and neuron cocultures with LINGO-1-Fc resulted in highly developed myelinated axons that have internodes and well-defined nodes of Ranvier. The contribution of LINGO-1 to myelination was verified
in vivo
through the analysis of
LINGO-1
knockout mice. The ability to recapitulate CNS myelination
in vitro
using LINGO-1 antagonists and the
in vivo
effects seen in the
LINGO-1
knockout indicate that LINGO-1 signaling may be critical for CNS myelination.
Journal Article