4.5 Article

Trafficking defects in PAS domain mutant Kv11.1 channels: roles of reduced domain stability and altered domain-domain interactions

Journal

BIOCHEMICAL JOURNAL
Volume 454, Issue -, Pages 69-77

Publisher

PORTLAND PRESS LTD
DOI: 10.1042/BJ20130328

Keywords

genotype phenotype relationship; human ether-a-go-go-related gene; KCNH2; long-QT syndrome; protein trafficking

Funding

  1. National Health and Medical Research Council of Australia [573715]
  2. National Heart Foundation of Australia [G11S 5829]
  3. National Health and Medical Research Council (NHMRC) [1019693]
  4. Australian Research Council Future Fellowship [FT110100075]
  5. Australian Research Council [FT110100075] Funding Source: Australian Research Council

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Loss of K(v)11.1 potassium channel function is the underlying cause of pathology in long-QT syndrome type 2, one of the commonest causes of sudden cardiac death in the young. Previous studies have identified the cytosolic PAS (Per/Arnt/Sim) domain as a hotspot for mutations that cause K(v)11.1 trafficking defects. To investigate the underlying basis of this observation, we have quantified the effect of mutants on domain folding as well as interactions between the PAS domain and the remainder of the channel. Apart from R56Q, all mutants impaired the thermostability of the isolated PAS domain. Six mutants, located in the vicinity of a hydrophobic patch on the PAS domain surface, also affected binding of the isolated PAS domain to an N-terminal truncated hERG (human ether-a-go-go-related gene) channel. Conversely, four other surface mutants (C64Y, T65P, A78P and I96T) and one buried mutant (L86R) did not prevent the isolated PAS domain binding to the truncated channels. Our results highlight a critical role for interactions between the PAS domain and the remainder of the channel in the hERG assembly and that mutants that affect PAS domain interactions with the remainder of the channel have a more severe trafficking defect than that caused by domain unfolding alone.

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