Jespersen Thomas, Rasmussen Hanne B, Grunnet Morten, Jensen Henrik S, Angelo Kamilla, Dupuis Delphine S, Vogel Lotte K, Jorgensen Nanna K, Klaerke Dan A, Olesen Søren-Peter
Department of Medical Physiology and Copenhagen Heart Research Center, The Panum Institute, University of Copenhagen, Blegdamsvej 3, 2200 Copenhagen N, Denmark.
J Cell Sci. 2004 Sep 1;117(Pt 19):4517-26. doi: 10.1242/jcs.01318. Epub 2004 Aug 17.
KCNQ1 potassium channels are expressed in many epithelial tissues as well as in the heart. In epithelia KCNQ1 channels play an important role in salt and water transport and the channel has been reported to be located apically in some cell types and basolaterally in others. Here we show that KCNQ1 channels are located basolaterally when expressed in polarised MDCK cells. The basolateral localisation of KCNQ1 is not affected by co-expression of any of the five KCNE beta-subunits. We characterise two independent basolateral sorting signals present in the N-terminal tail of KCNQ1. Mutation of the tyrosine residue at position 51 resulted in a non-polarized steady-state distribution of the channel. The importance of tyrosine 51 in basolateral localisation was emphasized by the fact that a short peptide comprising this tyrosine was able to redirect the p75 neurotrophin receptor, an otherwise apically located protein, to the basolateral plasma membrane. Furthermore, a di-leucine-like motif at residues 38-40 (LEL) was found to affect the basolateral localisation of KCNQ1. Mutation of these two leucines resulted in a primarily intracellular localisation of the channel.
KCNQ1钾通道在许多上皮组织以及心脏中均有表达。在上皮组织中,KCNQ1通道在盐和水的运输中发挥着重要作用,据报道该通道在某些细胞类型中位于顶端,而在其他细胞类型中位于基底外侧。在此我们表明,当KCNQ1通道在极化的MDCK细胞中表达时,其位于基底外侧。KCNQ1的基底外侧定位不受五个KCNEβ亚基中任何一个共表达的影响。我们鉴定出KCNQ1 N端尾部存在的两个独立的基底外侧分选信号。第51位酪氨酸残基的突变导致该通道呈非极化的稳态分布。包含此酪氨酸的短肽能够将原本位于顶端的p75神经营养因子受体重定向至基底外侧质膜,这一事实凸显了酪氨酸51在基底外侧定位中的重要性。此外,发现第38 - 40位残基处的一个类双亮氨酸基序(LEL)会影响KCNQ1的基底外侧定位。这两个亮氨酸残基的突变导致该通道主要定位于细胞内。