## Abstract Voltage‐dependent large‐conductance Ca^2+^‐activated K^+^ channels, often referred to as __BK channels__, are a unique class of ion channels coupling intracellular chemical signaling to electrical signaling. BK channel expression has been shown to be up‐regulated in human glioma biopsie
Expression and function of calcium-activated potassium channels in human glioma cells
✍ Scribed by Amy K. Weaver; Valerie C. Bomben; Harald Sontheimer
- Publisher
- John Wiley and Sons
- Year
- 2006
- Tongue
- English
- Weight
- 661 KB
- Volume
- 54
- Category
- Article
- ISSN
- 0894-1491
No coin nor oath required. For personal study only.
✦ Synopsis
Abstract
Ca^2+^‐activated K^+^ (K~Ca~) channels are a unique family of ion channels because they are capable of directly communicating calcium signals to changes in cell membrane potential required for cellular processes including but not limited to cellular proliferation and migration. It is now possible to distinguish three families of K~Ca~ channels based on differences in their biophysical and pharmacological properties as well as genomic sequence. Using a combination of biochemical, molecular, and biophysical approaches, we show that human tumor cells of astrocytic origin, i.e. glioma cells, express transcripts for all three family members of K~Ca~ channels including BK, IK, and all three SK channel types (SK1, SK2, and SK3). The use of selective pharmacological inhibitors shows prominent expression of currents that are inhibited by the BK channel specific inhibitors iberiotoxin and paxilline. However, despite the presence of transcripts for IK and SK, neither clotrimazole, an inhibitor of IK channels, nor apamin, known to block most SK channels inhibited any current. The exclusive expression of functional BK channels was further substantiated by shRNA knockdown experiments, which selectively reduced iberiotoxin sensitive currents. Western blotting of patient biopsies with antibodies specific for all three KCa channel types further substantiated the exclusive expression of BK type KCa channels in vivo. This finding is in sharp contrast to other cancers that express primarily IK channels. © 2006 Wiley‐Liss, Inc.
📜 SIMILAR VOLUMES
## Abstract We have previously demonstrated the expression of large‐conductance, calcium‐activated potassium (BK) channels in human glioma cells. In the present study, we characterized the calcium sensitivity of glioma BK channels in excised membrane patches. Channels in inside‐out patches were act
## Abstract In humans, three isoforms of the T‐type (Ca~v~3.1) calcium‐channel α~1~ subunit have been reported as a result of alternate splicing of exons 25 and 26 in the III–IV linker region (Ca~v~3.1a, Ca~v~3.1b or Ca~v~3.1bc). In the present study, we report that human glioma express Ca~v~3.1 ch
## Abstract Cell migration is crucial for wound healing, immune defense, or formation of tumor metastases. In addition to the cytoskeleton, Ca^2+^ sensitive K^+^ channels (IK1) are also part of the cellular “migration machinery.” We showed that Ca^2+^ sensitive K^+^ channels support the retraction