PulseExploreJournal ClubDebatesTrendingResearchersJournals
Instagram
HomeExploreJournal ClubTrending
Synapse
⌘+K
Synapse
July 3, 1995Proceedings of the National Academy of Sciences147 citationsOpen Access

Characterization of a voltage-gated K+ channel beta subunit expressed in human heart.

SESarah K. EnglandVUVictor N. UebeleHSH L Shear

Key Points

  • This research aims to characterize the hKv beta 3 subunit of voltage-gated potassium channels in the human heart.
  • Cloning of hKv beta 3 from adult human left ventricle

Structured PICO

P
Population
Adult human left ventricle tissue, Xenopus oocytes, and human/rodent cell hybrid mapping panel
I
Intervention
Coinjection of hKv beta 3 with human cardiac delayed rectifier hKv1.5
O
Outcome
Electrophysiological properties (inactivation, activation curve shift, deactivation speed)surrogate

The cloning and characterization of hKv beta 3 demonstrates that beta-subunit composition significantly alters K+ channel function, which must be considered when studying endogenous cardiac currents.

Abstract

Voltage-gated K+ channels are important modulators of the cardiac action potential. However, the correlation of endogenous myocyte currents with K+ channels cloned from human heart is complicated by the possibility that heterotetrameric alpha-subunit combinations and function-altering beta subunits exist in native tissue. Therefore, a variety of subunit interactions may generate cardiac K+ channel diversity. We report here the cloning of a voltage-gated K+ channel beta subunit, hKv beta 3, from adult human left ventricle that shows 84% and 74% amino acid sequence identity with the previously cloned rat Kv beta 1 and Kv beta 2 subunits, respectively. Together these three Kv beta subunits share > 82% identity in the carboxyl-terminal 329 aa and show low identity in the amino-terminal 79 aa. RNA analysis indicated that hKv beta 3 message is 2-fold more abundant in human ventricle than in atrium and is expressed in both healthy and diseased human hearts. Coinjection of hKv beta 3 with a human cardiac delayed rectifier, hKv1.5, in Xenopus oocytes increased inactivation, induced an 18-mV hyperpolarizing shift in the activation curve, and slowed deactivation (tau = 8.0 msec vs. 35.4 msec at -50 mV). hKv beta 3 was localized to human chromosome 3 by using a human/rodent cell hybrid mapping panel. These data confirm the presence of functionally important K+ channel beta subunits in human heart and indicate that beta-subunit composition must be accounted for when comparing cloned channels with endogenous cardiac currents.

Ask AI
Helpful
Bookmark
Share
View Full Paper

Cite This Study

England et al. (1995) studied this question.

synapsesocial.com/papers/6a215bf7e06b4fc4c1ab9a6dhttps://doi.org/10.1073/pnas.92.14.6309
Ask AI
Helpful
Bookmark
Share
View Full Paper