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Article

mitoBK <sub>Ca</sub> is functionally expressed in murine and human breast cancer cells and potentially contributes to metabolic reprogramming

2023-10-04

Abstract excerpt

<h4>Summary</h4> Alterations in the function of K + channels such as the voltage- and Ca 2+ activated K + channel of large conductance (BK Ca ) reportedly promote breast cancer (BC) development and progression. Underlying molecular mechanisms remain, however, elusive. Here, we provide electrophysiological evidence for a BK Ca splice variant localized to the inner mitochondrial membrane of murine and human BC...

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Literature Corpus work
490d8f73-9a90-5c52-9624-96d752748cab
DOI
10.1101/2023.10.02.560571
Open publication

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mitoBK <sub>Ca</sub> is functionally expressed in murine and human breast cancer cells and potentially contributes to metabolic reprogrammingDOI 10.1101/2023.10.02.560571
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