Liu T I, Lebaric Z N, Rosenthal J J, Gilly W F
Neurosciences Program, Hopkins Marine Station, Stanford University, Pacific Grove, California 93950, USA.
J Neurophysiol. 2001 Jan;85(1):61-71. doi: 10.1152/jn.2001.85.1.61.
Shaker-type K-channel alpha-subunits (SqKv1A, B, D) expressed in neurons of the squid stellate ganglion differ in the length of their N-termini and in the species of amino acid present at several points in the T1 domain, an intracellular region involved in the tetramerization process during channel assembly. Heterologous expression of wild-type SqKv1A, B, and D in Xenopus oocytes reveals large differences in the level of both functional channels (assayed by whole-oocyte voltage clamp) and total channel protein (assayed by immunoblotting). Functional expression is poorest with SqKv1A and by far the best with SqKv1D. Biophysical properties of the three SqKv1 channels are essentially identical (assayed by cell-attached patch clamp). Site-directed mutagenesis was used to determine whether the observed differences in expression level are impacted by two residues in the T1 domain at which SqKv1A and B (but not D) differ from the consensus sequences found in many other taxa. In SqKv1A, glycine is substituted for arginine in an otherwise universally conserved sequence (FFDR in the T1(B) subdomain). In SqKv1B, glycine replaces serine in a sequence that is conserved within the Kv1 subfamily (SGLR in the T1(A) subdomain). Restoration of the consensus amino acid at these positions largely accounts for the observed differences in expression level. Analysis of the glycosylation state of aberrant versus restored alpha-subunits suggests that the anomalous amino acids in SqKv1A and B exert their influence during early steps in channel processing and assembly which take place in the endoplasmic reticulum (ER).
在鱿鱼星状神经节神经元中表达的震颤型钾通道α亚基(SqKv1A、B、D),其N端长度以及T1结构域中几个位点的氨基酸种类存在差异,T1结构域是通道组装过程中参与四聚化过程的细胞内区域。野生型SqKv1A、B和D在非洲爪蟾卵母细胞中的异源表达显示,功能性通道水平(通过全细胞电压钳测定)和总通道蛋白水平(通过免疫印迹测定)均存在很大差异。SqKv1A的功能性表达最差,而SqKv1D的功能性表达则是迄今为止最好的。通过细胞贴附式膜片钳测定,三种SqKv1通道的生物物理特性基本相同。定点诱变用于确定观察到的表达水平差异是否受到T1结构域中两个残基的影响,在这两个残基处,SqKv1A和B(但不是D)与许多其他分类群中发现的共有序列不同。在SqKv1A中,在一个普遍保守的序列(T1(B)亚结构域中的FFDR)中,甘氨酸取代了精氨酸。在SqKv1B中,在Kv1亚家族内保守的序列(T1(A)亚结构域中的SGLR)中,甘氨酸取代了丝氨酸。在这些位置恢复共有氨基酸在很大程度上解释了观察到的表达水平差异。对异常α亚基与恢复后的α亚基糖基化状态的分析表明,SqKv1A和B中的异常氨基酸在内质网(ER)中发生的通道加工和组装的早期步骤中发挥作用。