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February 1, 1996Journal of Biological Chemistry131 citationsOpen Access

Functional Differences in Kv1.5 Currents Expressed in Mammalian Cell Lines Are Due to the Presence of Endogenous Kvβ2.1 Subunits

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VUVictor N. UebeleUnited States Military AcademySESarah K. EnglandWashington University in St. LouisACArchana ChaudharyCentral University of South Bihar

Key Result

The presence of the Kv beta 2.1 subunit altered hKv1.5 alpha subunit function, shifting activation and inactivation midpoints to -14.1 mV and -22.1 mV and increasing slow inactivation 1.5-fold.

Structured PICO

P
Population
Mammalian cell lines (HEK 293 and mouse L-cells) expressing hKv1.5 alpha subunit
I
Intervention
Presence of Kvbeta2.1 subunit (endogenous in L-cells or co-expressed in HEK 293 cells)
C
Comparator
Absence of Kvbeta2.1 subunit (HEK 293 cells alone)
O
Outcome
Kinetics and voltage dependence of activation and slow inactivation of voltage-sensitive currentssurrogate

The Kvbeta2.1 subunit alters Kv1.5 alpha subunit function, explaining functional differences observed between different heterologous expression systems.

Abstract

The voltage-sensitive currents observed following hKv1.5 alpha subunit expression in HEK 293 and mouse L-cells differ in the kinetics and voltage dependence of activation and slow inactivation. Molecular cloning, immunopurification, and Western blot analysis demonstrated that an endogenous L-cell Kv beta 2.1 subunit assembled with transfected hKv 1.5 protein. In contrast, both mRNA and protein analysis failed to detect a beta subunit in the HEK 293 cells, suggesting that functional differences observed between these two systems are due to endogenous L-cell Kv beta 2.1 expression. In the absence of Kv beta 2.1, midpoints for activation and inactivation of hKv1.5 in HEK 293 cells were -0.2 +/- 2.0 and -9.6 +/- 1.8 mV, respectively. In the presence of Kv beta 2.1 these values were -14.1 +/- 1.8 and -22.1 +/- 3.7 mV, respectively. The beta subunit also caused a 1.5-fold increase in the extent of slow inactivation at 50 mV, thus completely reconstituting the L-cell current phenotype in the HEK 293 cells. These results indicate that 1) the Kv beta 2.1 subunit can alter Kv1.5 alpha subunit function, 2) beta subunits are not required for alpha subunit expression, and 3) endogenous beta subunits are expressed in heterologous expression systems used to study K+ channel function.

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Cite This Study

Uebele et al. (1996) studied this question. Kv beta 2.1 subunit co-expression vs. Absence of Kv beta 2.1 subunit was evaluated on Midpoints for activation and inactivation of hKv1.5. The presence of the Kv beta 2.1 subunit altered hKv1.5 alpha subunit function, shifting activation and inactivation midpoints to -14.1 mV and -22.1 mV and increasing slow inactivation 1.5-fold.

synapsesocial.com/papers/6a0da1b2cae7912d2fa52370https://doi.org/10.1074/jbc.271.5.2406
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Also Consider

Synapse has enriched 5 closely related papers on similar clinical questions. Consider them for comparative context:

  1. 1Identity of a novel delayed rectifier current from human heart with a cloned K+ channel current.1993 · 354 citations
  2. 2A Novel K+ Channel β-Subunit (hKvβ1.3) Is Produced via Alternative mRNA Splicing1995 · 135 citations
  3. 3Characterization of a voltage-gated K+ channel beta subunit expressed in human heart.1995 · 147 citations
  4. 4Localization of the Kv1.5 K+ channel protein in explanted cardiac tissue.1995 · 213 citations
  5. 5Multiple mRNA isoforms encoding the mouse cardiac Kv1-5 delayed rectifier K+ channel.1993 · 63 citations