TY - JOUR
T1 - Association of Src-family protein tyrosine kinases with sphingolipids in rat cerebellar granule cells differentiated in culture
AU - Prinetti, Alessandro
AU - Marano, Nadia
AU - Prioni, Simona
AU - Chigorno, Vanna
AU - Mauri, Laura
AU - Casellato, Riccardo
AU - Tettamanti, Guido
AU - Sonnino, Sandro
PY - 2000
Y1 - 2000
N2 - Src family kinases play a relevant role in the development and differentiation of neuronal cells. They are abundant in sphingolipid-enriched membrane domains of many cell types, and these domains are hypothesized to function in bringing together molecules important to signal transduction. We studied the association of Src family tyrosine kinases and their negative regulatory kinase, Csk, with sphingolipids in sphingolipid-enriched domains of rat cerebellar granule cells differentiated in culture. We find that c-Src, Lyn and Csk are enriched in the sphingolipid-enriched fraction prepared from these cells. Coimmunoprecipitation experiments show that these and sphingolipids are part of the same domain. Cross-linking experiments with a photoactivable, radioactive GD1b derivative show that c-Src and Lyn, which are anchored to the membrane via a myristoyl chain, associate directly with GD1b. Csk, which is not inserted in the hydrophobic core of the membrane, is not photolabeled by this ganglioside. These results suggest that lipid-lipid, lipidprotein, and protein-protein interactions cooperate to maintain domain structure. We hypothesize that such interactions might play a role in the process of neuronal differentiation.
AB - Src family kinases play a relevant role in the development and differentiation of neuronal cells. They are abundant in sphingolipid-enriched membrane domains of many cell types, and these domains are hypothesized to function in bringing together molecules important to signal transduction. We studied the association of Src family tyrosine kinases and their negative regulatory kinase, Csk, with sphingolipids in sphingolipid-enriched domains of rat cerebellar granule cells differentiated in culture. We find that c-Src, Lyn and Csk are enriched in the sphingolipid-enriched fraction prepared from these cells. Coimmunoprecipitation experiments show that these and sphingolipids are part of the same domain. Cross-linking experiments with a photoactivable, radioactive GD1b derivative show that c-Src and Lyn, which are anchored to the membrane via a myristoyl chain, associate directly with GD1b. Csk, which is not inserted in the hydrophobic core of the membrane, is not photolabeled by this ganglioside. These results suggest that lipid-lipid, lipidprotein, and protein-protein interactions cooperate to maintain domain structure. We hypothesize that such interactions might play a role in the process of neuronal differentiation.
KW - Ganglioside enriched domains
KW - Gangliosides
KW - Neuronal cell cultures
KW - Non-receptor tyrosine kinases
KW - Sphingolipids
KW - Src family proteins
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U2 - 10.1023/A:1026545424720
DO - 10.1023/A:1026545424720
M3 - Article
C2 - 11201794
AN - SCOPUS:0034528068
SN - 0282-0080
VL - 17
SP - 223
EP - 232
JO - Glycoconjugate Journal
JF - Glycoconjugate Journal
IS - 3-4
ER -