Jenke Marc, Sánchez Araceli, Monje Francisco, Stühmer Walter, Weseloh Rüdiger M, Pardo Luis A
Max Planck Institute for Experimental Medicine, Hermann-Rein-Strasse 3, 37075 Göttingen, Germany.
EMBO J. 2003 Feb 3;22(3):395-403. doi: 10.1093/emboj/cdg035.
A short C-terminal domain is required for correct tetrameric assembly in some potassium channels. Here, we show that this domain forms a coiled coil that determines not only the stability but also the selectivity of the multimerization. Synthetic peptides comprising the sequence of this domain in Eag1 and other channels are able to form highly stable tetrameric coiled coils and display selective heteromultimeric interactions. We show that loss of function caused by disruption of this domain in Herg1 can be rescued by introducing the equivalent domain from Eag1, and that this chimeric protein can form heteromultimers with Eag1 while wild-type Erg1 cannot. Additionally, a short endoplasmic reticulum retention sequence closely preceding the coiled coil plays a crucial role for surface expression. Both domains appear to co-operate to form fully functional channels on the cell surface and are a frequent finding in ion channels. Many pathological phenotypes may be attributed to mutations affecting one or both domains.
在某些钾通道中,正确的四聚体组装需要一个短的C末端结构域。在此,我们表明该结构域形成一个卷曲螺旋,它不仅决定了多聚化的稳定性,还决定了其选择性。包含Eag1和其他通道中该结构域序列的合成肽能够形成高度稳定的四聚体卷曲螺旋,并表现出选择性异源多聚体相互作用。我们表明,通过引入Eag1的等效结构域,可以挽救Herg1中该结构域破坏导致的功能丧失,并且这种嵌合蛋白可以与Eag1形成异源多聚体,而野生型Erg1则不能。此外,紧接在卷曲螺旋之前的一个短的内质网保留序列对表面表达起着关键作用。这两个结构域似乎协同作用,在细胞表面形成功能完全的通道,并且在离子通道中经常发现。许多病理表型可能归因于影响一个或两个结构域的突变。