Zeng Haoyu, Weiger Thomas M, Fei Hong, Levitan Irwin B
Department of Neuroscience, University of Pennsylvania School of Medicine, Philadelphia, PA 19104, USA.
J Gen Physiol. 2006 Nov;128(5):583-91. doi: 10.1085/jgp.200609653.
Slob57 is an ion channel auxiliary protein that binds to and modulates the Drosophila Slowpoke calcium-dependent potassium channel (dSlo). We reported recently that residues 1-39 of Slob57 comprise the key domain that both causes dSlo inactivation and shifts its voltage dependence of activation to more depolarized voltages. In the present study we show that removal of residues 2-6 from Slob57 abolishes the inactivation, but the ability of Slob57 to rightward shift the voltage dependence of activation of dSlo remains. A synthetic peptide corresponding in sequence to residues 1-6 of Slob57 blocks dSlo in a voltage- and dose-dependent manner. Two Phe residues and at least one Lys residue in this peptide are required for the blocking action. These data indicate that the amino terminus of Slob57 directly blocks dSlo, thereby leading to channel inactivation. Further truncation to residue Arg(16) eliminates the modulation of voltage dependence of activation. Thus these two modulatory actions of Slob57 are independent. Mutation within the calcium bowl of dSlo greatly reduces its calcium sensitivity (Bian, S., I. Favre, and E. Moczydlowski. 2001. Proc. Natl. Acad. Sci. USA. 98:4776-4781). We found that Slob57 still causes inactivation of this mutant channel, but does not shift its voltage dependence of activation. This result confirms further the independence of the inactivation and the voltage shift produced by Slob57. It also suggests that the voltage shift requires high affinity Ca(2+) binding to an intact calcium bowl. Furthermore, Slob57 inhibits the shift in the voltage dependence of activation of dSlo evoked by Ca(2+), and this inhibition by Slob57 is greater at higher free Ca(2+) concentrations. These results implicate distinct calcium-dependent and -independent mechanisms in the modulation of dSlo by Slob.
Slob57是一种离子通道辅助蛋白,它与果蝇慢poke钙依赖性钾通道(dSlo)结合并对其进行调节。我们最近报道,Slob57的1 - 39位残基构成了关键结构域,该结构域既能导致dSlo失活,又能将其激活的电压依赖性向更去极化的电压方向转变。在本研究中,我们发现从Slob57中去除2 - 6位残基可消除失活,但Slob57使dSlo激活电压依赖性右移的能力仍然存在。与Slob57的1 - 6位残基序列对应的合成肽以电压和剂量依赖性方式阻断dSlo。该肽中的两个苯丙氨酸残基和至少一个赖氨酸残基是阻断作用所必需的。这些数据表明,Slob57的氨基末端直接阻断dSlo,从而导致通道失活。进一步截短至精氨酸(16)残基消除了对激活电压依赖性的调节。因此,Slob57的这两种调节作用是独立的。dSlo钙碗内的突变极大地降低了其钙敏感性(边,S.,I. 法夫尔,和E. 莫齐德洛夫斯基。2001年。美国国家科学院院刊。98:4776 - 4781)。我们发现Slob57仍然会导致这种突变通道失活,但不会改变其激活的电压依赖性。这一结果进一步证实了Slob57产生的失活和电压偏移的独立性。这也表明电压偏移需要高亲和力的Ca(2+)与完整的钙碗结合。此外,Slob57抑制由Ca(2+)引起的dSlo激活电压依赖性的偏移,并且Slob57的这种抑制在较高的游离Ca(2+)浓度下更大。这些结果暗示了在Slob对dSlo的调节中存在不同的钙依赖性和非钙依赖性机制。