Regulated ADAM10-dependent Ectodomain Shedding of γ-Protocadherin C3 Modulates Cell-Cell Adhesion
Регулируемое ADAM10-зависимое отщепление эктодомена γ-протокадгерина C3 модулирует межклеточную адгезию
2006-06-03
SCID: 54.1/r7fzy4n5
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ADAM10-dependent ectodomain sheddingcell-cell adhesionsynaptic regulationγ-Protocadherin B4γ-Protocadherin C3
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Abstract (AI)
Gamma-protocadherins (Pcdh gamma) are type I transmembrane proteins, which are most notably expressed in the nervous system. They are enriched at synapses and involved in synapse formation, specification, and maintenance. In this study, we show that Pcdh gamma C3 and Pcdh gamma B4 are specifically cleaved within their ectodomains by the disintegrin and metalloprotease ADAM10. Analysis of ADAM10-deficient fibroblasts and embryos, inhibitor studies, as well as RNA interference-mediated down-regulation demonstrated that ADAM10 is not only responsible for the constitutive but also for the regulated shedding of these proteins in fibroblasts and in neuronal cells. In contrast to N-cadherin shedding, which was activated by N-methyl-D-aspartic acid receptor activation in neuronal cells, Pcdh gamma shedding was induced by alpha-amino-3-hydroxy-5-methylisoxazole-4-propionic acid hydrate stimulation, suggesting differential regulation mechanisms of cadherin-mediated functions at synapses. Cell aggregation assays in the presence or absence of metalloprotease inhibitors strongly suggest that the ectodomain shedding events modulate the cell adhesion role of Pcdh gamma. The identification of ADAM10 as the protease responsible for constitutive and regulated Pcdh gamma shedding may therefore provide new insight into the regulation of Pcdh gamma functions.
Key Findings
1
ADAM10 mediates both constitutive and regulated shedding of γ-protocadherins, as shown using deficient cells, embryos, inhibitors, and RNA interference.
2
ADAM10 specifically cleaves the ectodomains of γ-protocadherin C3 and B4 in fibroblasts and neuronal cells.
3
Identifying ADAM10 as the γ-protocadherin sheddase provides insight into how γ-protocadherin functions may be regulated.
4
Metalloprotease-dependent ectodomain shedding modulates the cell-cell adhesion function of γ-protocadherins.
5
Unlike N-cadherin shedding, γ-protocadherin shedding is stimulated by AMPA receptor activation rather than NMDA receptor activation, indicating distinct synaptic regulation mechanisms.
Research Object
ADAM10-dependent ectodomain shedding of γ-protocadherin C3 (and γ-protocadherin B4) in fibroblasts and neuronal cells
Research Subject
Regulation of γ-protocadherin ectodomain shedding and its effect on cell-cell adhesion, including constitutive and stimulation-induced mechanisms
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2006-06-03
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