Nau Carla, Wang Sho-Ya, Wang Ging Kuo
Department of Anesthesiology, Friedrich-Alexander-University Erlangen-Nuremberg, Krankenhausstrasse 12, 91054 Erlangen, Germany.
Mol Pharmacol. 2003 Jun;63(6):1398-406. doi: 10.1124/mol.63.6.1398.
Local anesthetics (LAs) block voltage-gated sodium channels. Parts of the LA binding site are located in the pore-lining transmembrane segments 6 of domains 1, 3, and 4 (D1-S6, D3-S6, D4-S6). We suggested previously that residue N434 in D1-S6 interacts directly with bupivacaine enantiomers in inactivated channels because side-chain properties of different residues substituted at N434 correlated with changes in blocking potencies of bupivacaine enantiomers. Furthermore, mutation N434R exhibited significant stereoselectivity for block of inactivated channels that resulted from a selective decrease in block by S(-)-bupivacaine. In the present study, we analyzed the role of residue L1280 in D3-S6 of the rat skeletal muscle Nav1.4 channel in interactions with the enantiomers of bupivacaine. We substituted native leucine at L1280 with amino acids of different physicochemical properties. Wild-type and mutant channels were expressed transiently in human embryonic kidney 293t cells and were investigated under whole-cell voltage clamp. Block of resting mutant channels by bupivacaine enantiomers revealed little difference compared with wild-type channels. Block of inactivated channels was increased in a mutation containing an aromatic group (L1280W) and decreased in mutations containing a positive charge (L1280K, L1280R). Surprisingly, mutants L1280E, L1280N, L1280Q, and L1280R exhibited significant stereoselectivity for block of inactivated channels. More surprisingly, stereoselectivity resulted from a selective decrease in block by R(+)-bupivacaine, in contrast to mutation N434R in D1-S6. We propose that in inactivated channels, residues L1280 in D3-S6 and N434 in D1-S6 interact directly with LAs and thereby face each other in the ion-conducting pore.
局部麻醉药(LAs)阻断电压门控钠通道。局部麻醉药结合位点的部分位于结构域1、3和4(D1-S6、D3-S6、D4-S6)的孔内衬跨膜片段6中。我们之前提出,D1-S6中的N434残基在失活通道中直接与布比卡因对映体相互作用,因为在N434处取代的不同残基的侧链性质与布比卡因对映体阻断效力的变化相关。此外,N434R突变对失活通道的阻断表现出显著的立体选择性,这是由于S(-)-布比卡因的阻断选择性降低所致。在本研究中,我们分析了大鼠骨骼肌Nav1.4通道D3-S6中的L1280残基在与布比卡因对映体相互作用中的作用。我们用具有不同物理化学性质的氨基酸取代L1280处的天然亮氨酸。野生型和突变型通道在人胚肾293t细胞中瞬时表达,并在全细胞膜片钳下进行研究。与野生型通道相比,布比卡因对映体对静息突变型通道的阻断几乎没有差异。含有芳香基团的突变(L1280W)中失活通道的阻断增加,而含有正电荷的突变(L1280K、L1280R)中失活通道的阻断减少。令人惊讶的是,突变体L1280E、L1280N、L1280Q和L1280R对失活通道的阻断表现出显著的立体选择性。更令人惊讶的是,与D1-S6中的N434R突变相反,立体选择性是由R(+)-布比卡因的阻断选择性降低所致。我们提出,在失活通道中,D3-S6中的L1280残基和D1-S6中的N434残基直接与局部麻醉药相互作用,从而在离子传导孔中彼此相对。