Logo image
Alternatively spliced C-terminal domains regulate the surface expression of large conductance calcium-activated potassium channels
期刊文章   同儕審查

Alternatively spliced C-terminal domains regulate the surface expression of large conductance calcium-activated potassium channels

E.Y. Kim, L.D. Ridgway, S. Zou, Y.-H. ChiuS.E. Dryer
Neuroscience, 卷.146(4), 頁碼.1652-1661
06/2007
PMID: 17478049

摘要

ciliary ganglion neuregulin PDZ Slo1 traffic Neuroscience (all)
The Slo1 gene, also known as KCNMA1, encodes the pore-forming subunits of large-conductance Ca 2+ -activated K + (BK Ca ) channels. Products of this gene are widely expressed in vertebrate tissues, and occur in a large number (≥20) of alternatively spliced variants that vary in their gating properties, susceptibility to modulation, and trafficking to the plasma membrane. Motifs in the large cytoplasmic C-terminal are especially important in determining the functional properties of BK Ca channels. Here we report that chick ciliary ganglion neurons express transcripts and proteins of two Slo1 splice variants that differ at the extreme C-terminal. We refer to these variants as VEDEC and QEDRL (or QEERL for the orthologous mammalian versions), after the five terminal amino acid residues in each isoform. Individual ciliary ganglion neurons preferentially express these variants in different subcellular compartments. Moreover, QEERL channels show markedly higher levels of constitutive expression on the plasma membrane than VEDEC channels in HEK293T and NG108-15 cells. However, growth factor treatment can stimulate surface expression of VEDEC channels to levels comparable to those seen with QEERL. In addition, we show that co-expression of a soluble protein composed of VEDEC C-terminal tail residues markedly increases cell surface expression of full-length VEDEC channels, suggesting that this region binds to proteins that cause retention of the these channels in intracellular stores. © 2007 IBRO.

相關連結

指標

1 檢視次數

詳細資料

Logo image