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Calcium signaling in chemorepellant Slit2-dependent regulation of neuronal migration
Author(s) -
Huatai Xu,
Xiaobing Yuan,
Chen-bing Guan,
Shumin Duan,
Chien-ping Wu,
Linyin Feng
Publication year - 2004
Publication title -
proceedings of the national academy of sciences
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 5.011
H-Index - 771
eISSN - 1091-6490
pISSN - 0027-8424
DOI - 10.1073/pnas.0303893101
Subject(s) - extracellular , intracellular , soma , neuronal migration , microbiology and biotechnology , neuroscience , calcium in biology , biology , premovement neuronal activity , cell migration , calcium , neurite , calcium signaling , chemistry , cell , biochemistry , in vitro , organic chemistry
Migration of neuronal precursor cells in the developing brain is guided by extracellular cues, but intracellular signaling processes underlying the guidance of neuronal migration are largely unknown. By examining the migration of cerebellar granule neurons along the surface of cocultured astroglial cells, we found that an extracellular gradient of Slit2, a chemorepellant for neuronal migration in vivo, caused a reversal in the direction of migration without affecting the migration speed. A Slit2 gradient elevated the intracellular concentration of Ca2+, probably due to calcium release from the internal store, led to a reversal of the preexisting asymmetric intracellular Ca2+ distribution in the soma of migrating neurons, and this reversal was closely related with its action of reversing the migrating direction. Asymmetric Ca2+ distribution in the soma was both necessary and sufficient for directing neuronal migration. These results have demonstrated an important role for Ca2+ in mediating neuronal responses to Slit2 and suggest a general mechanism for neuronal guidance.

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