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Publication : Structure and functional characterization of neuronal alpha 1E calcium channel subtypes.

First Author  Williams ME Year  1994
Journal  J Biol Chem Volume  269
Issue  35 Pages  22347-57
PubMed ID  8071363 Mgi Jnum  J:19970
Mgi Id  MGI:68089 Doi  10.1016/s0021-9258(17)31796-9
Citation  Williams ME, et al. (1994) Structure and functional characterization of neuronal alpha 1E calcium channel subtypes. J Biol Chem 269(35):22347-57
abstractText  We have cloned overlapping cDNAs encoding alpha 1E Ca2+ channel subunits from mouse and human brain. We observed that these alpha 1E transcripts were widely distributed in the central nervous system. We also demonstrated the existence of two variants of the human alpha 1E subunit. Comparison of the sequence of these alpha 1E subunits to those from other species suggests that at least four alternatively spliced variants of alpha 1E exist. Expression of human alpha 1E in HEK293 cells and Xenopus oocytes produced high voltage-activated Ca2+ currents that inactivated rapidly (tau approximately 20 ms at 0 mV). The size of the currents obtained were enhanced approximately 40-fold by co-expression with human neuronal alpha 2 and beta Ca2+ channel subunits. alpha 1E currents were insensitive to the drugs and toxins previously used to define other classes of voltage-activated Ca2+ channels. Thus, alpha 1E-mediated Ca2+ channels appear to be a pharmacologically distinct class of voltage-activated Ca2+ channels.
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