In Situ Hybridization Reveals Extensive Diversity of K+ Channel mRNA in Isolated Ferret Cardiac Myocytes
MV Brahmajothi, MJ Morales, S Liu… - Circulation …, 1996 - Am Heart Assoc
The molecular basis of K+ currents that generate repolarization in the heart is uncertain. In
part, this reflects the similar functional properties different K+ channel clones display when
heterologously expressed, in addition to the molecular diversity of the voltage-gated K+
channel family. To determine the identity, regional distribution, and cellular distribution of
voltage-sensitive K+ channel mRNA subunits expressed in ferret heart, we used fluorescent
labeled oligonucleotide probes to perform in situ hybridization studies on enzymatically …
part, this reflects the similar functional properties different K+ channel clones display when
heterologously expressed, in addition to the molecular diversity of the voltage-gated K+
channel family. To determine the identity, regional distribution, and cellular distribution of
voltage-sensitive K+ channel mRNA subunits expressed in ferret heart, we used fluorescent
labeled oligonucleotide probes to perform in situ hybridization studies on enzymatically …
[引用][C] In situ hybridization reveals extensive diversity of K^+ channel mRNA in isolated ferret cardiac myocytes
B MV - Circ Res, 1996 - cir.nii.ac.jp
In situ hybridization reveals extensive diversity of K^+ channel mRNA in isolated ferret
cardiac myocytes | CiNii Research … In situ hybridization reveals extensive diversity of K^+
channel mRNA in isolated ferret cardiac myocytes …
cardiac myocytes | CiNii Research … In situ hybridization reveals extensive diversity of K^+
channel mRNA in isolated ferret cardiac myocytes …
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