Zhu Jing, Gomez Barbara, Watanabe Itaru, Thornhill William B
Department of Biological Sciences, Fordham University, Bronx, New York 10458, USA.
Mol Membr Biol. 2007 May-Jun;24(3):194-205. doi: 10.1080/09687860601066309.
We have shown previously that truncating all of the variable cytoplasmic C-terminus of Kv1.1 potassium channels to G421stop had only a small inhibitory effect on their cell surface conductance density levels and cell surface protein levels. Here we investigated the role of a highly conserved cytoplasmic C-terminal charged region of five amino acids (HRETE) of the S6 transmembrane domain in the protein and conductance expression of Kv1.1, Kv1.2, and Kv1.4 channels. For Kv1.1 we found that E420stop, T419stop, and E418stop showed cell surface conductance densities and cell surface protein levels similar to full length control, whereas R417stop and H416stop exhibited essentially no conductance but their surface protein levels were similar to full length control. A bulky non-negatively charged hydrophilic amino acid at position 417 appeared to be critical for wild type gating of Kv1.1 because R417K and R417Q rescued conductance levels whereas R417A or R417E did not. The R417A mutation in the full length Kv1.1 also exhibited surface protein levels similar to control but it did not exhibit significant conductance. In contrast, mutation of the equivalent arginine to alanine in full length Kv1.2 and Kv1.4 appeared to have little or no effect on channel conductance but rather decreased cell surface protein levels by inducing partial high ER retention. These findings are consistent with the notion that the arginine amino acid in the HRETE region plays a different role in affecting conductance levels or cell surface protein levels of very closely related Kv1 potassium channels.
我们之前已经表明,将Kv1.1钾通道所有可变的胞质C末端截短至G421终止,对其细胞表面电导密度水平和细胞表面蛋白水平只有很小的抑制作用。在此,我们研究了S6跨膜结构域中一个由五个氨基酸组成的高度保守的胞质C末端带电荷区域(HRETE)在Kv1.1、Kv1.2和Kv1.4通道的蛋白和电导表达中的作用。对于Kv1.1,我们发现E420终止、T419终止和E418终止显示出与全长对照相似的细胞表面电导密度和细胞表面蛋白水平,而R417终止和H416终止基本上没有电导,但它们的表面蛋白水平与全长对照相似。417位的一个大的非负电荷亲水性氨基酸似乎对Kv1.1的野生型门控至关重要,因为R417K和R417Q挽救了电导水平,而R417A或R417E则没有。全长Kv1.1中的R417A突变也表现出与对照相似的表面蛋白水平,但没有显著的电导。相比之下,全长Kv1.2和Kv1.4中相应的精氨酸突变为丙氨酸似乎对通道电导几乎没有影响,而是通过诱导部分内质网高滞留来降低细胞表面蛋白水平。这些发现与以下观点一致,即HRETE区域中的精氨酸氨基酸在影响非常密切相关的Kv1钾通道的电导水平或细胞表面蛋白水平方面发挥不同的作用。