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Published August 1988 | public
Journal Article

A rat brain Na⁺ channel α subunit with novel gating properties

Abstract

We have constructed a full-length rat brain Na+ channel α subunit cDNA that differs from the previously reported a subunit of Noda et al. at 6 amino acid positions. Transcription of the cDNA in vitro and injection into Xenopus oocytes resulted in the synthesis of functional Na⁺ channels. Although the single-channel conductance of the channels resulting from cloned cDNA was the same as that of channels resulting from injection of rat brain RNA, we observed two significant differences in the gating properties of the channels. The Na+ currents from cloned cDNA displayed much slower macroscopic inactivation compared with those from rat brain mRNA. In addition, the current-voltage relationship for currents from cloned cDNA was shifted 20–25 mV in the depolarizing direction compared with currents from rat brain RNA. Coinjection of low MW rat brain RNA restored normal inactivation of the channels indicating the presence of a component, either a structural subunit of the channel complex or a modifying enzyme, necessary for normal gating of the channel.

Additional Information

© 1988 Cell Press. Received 14 April 1988, Revised 25 May 1988. We thank David Anderson for providing a rat brain cDNA library, Steve Clark for help with computer analysis, Shane Climie for sequencing advice, Jim Ingles for pEMBL-18, Derek van der Kooy for providing rat tissue, and Gayle Bodourian for manuscript preparation. This work was supported by the Medical Research Council of Canada (R. J. D.), National Institutes of Health Grants NS111756, and GM10991 (H. A. L. and N. D.), and the Muscular Dystrophy Association (H. A. L. and N. D.). A. L. G. is a Lucille P Markey Scholar, and this work was supported In part by a grant from the Lucille P. Markey Charitable Trust. D. S. K. is a Fellow of the National Institutes of Health.

Additional details

Created:
August 19, 2023
Modified:
October 20, 2023