Fairman C, Zhou X, Kung C
Laboratory of Molecular Biology, University of Wisconsin, 1525 Linden Dr., Madison, WI 53706, USA.
J Membr Biol. 1999 Mar 15;168(2):149-57. doi: 10.1007/s002329900505.
The current through TOK1 (YKC1), the outward-rectifying K+ channel in Saccharomyces cerevisiae, was amplified by expressing TOK1 from a plasmid driven by a strong constitutive promoter. TOK1 so hyper-expressed could overcome the K+ auxotrophy of a mutant missing the two K+ transporters, TRK1 and TRK2. This trk1Delta trk2Delta double mutant hyperexpressing the TOK1 transgene had a higher internal K+ content than one expressing the empty plasmid. We examined protoplasts of these TOK1-hyperexpressing cells under a patch clamp. Besides the expected K+ outward current activating at membrane potential (Vm) above the K+ equilibrium potential (EK+), a small inward current was consistently observed when the Vm was slightly below EK+. The inward and the outward currents are similar in their activation rates, deactivation rates, ion specificities and Ba2+ inhibition, indicating that they flow through the same channel. Thus, the yeast outwardly rectifying K+ channel can take up K+ into yeast cells, at least under certain conditions.
通过在由强组成型启动子驱动的质粒上表达酿酒酵母中的外向整流钾通道TOK1(YKC1),其电流得以放大。如此过度表达的TOK1能够克服缺失两个钾转运体TRK1和TRK2的突变体的钾营养缺陷。这种超表达TOK1转基因的trk1Delta trk2Delta双突变体比表达空质粒的突变体具有更高的细胞内钾含量。我们在膜片钳下检查了这些超表达TOK1细胞的原生质体。除了在高于钾平衡电位(EK+)的膜电位(Vm)时激活的预期钾外向电流外,当Vm略低于EK+时,始终观察到一小股内向电流。内向电流和外向电流在激活速率、失活速率、离子特异性和Ba2+抑制方面相似,表明它们通过同一通道流动。因此,酵母外向整流钾通道至少在某些条件下能够将钾吸收到酵母细胞中。