Barker E L, Moore K R, Rakhshan F, Blakely R D
Department of Pharmacology and Center for Molecular Neuroscience, Vanderbilt University School of Medicine, Nashville, Tennessee 37232-6600, USA.
J Neurosci. 1999 Jun 15;19(12):4705-17. doi: 10.1523/JNEUROSCI.19-12-04705.1999.
Mutation of a conserved Asp (D98) in the rat serotonin (5HT) transporter (rSERT) to Glu (D98E) led to decreased 5HT transport capacity, diminished coupling to extracellular Na+ and Cl-, and a selective loss of antagonist potencies (cocaine, imipramine, and citalopram but not paroxetine or mazindol) with no change in 5HT Km value. D98E, which extends the acidic side chain by one carbon, affected the rank-order potency of substrate analogs for inhibition of 5HT transport, selectively increasing the potency of two analogs with shorter alkylamine side chains, gramine, and dihydroxybenzylamine. D98E also increased the efficacy of gramine relative to 5HT for inducing substrate-activated currents in Xenopus laevis oocytes, but these currents were noticeably dependent on extracellular medium acidification. I-V profiles for substrate-independent and -dependent currents indicated that the mutation selectively impacts ion permeation coupled to 5HT occupancy. The ability of the D98E mutant to modulate selective aspects of substrate recognition, to perturb ion dependence as well as modify substrate-induced currents, suggests that transmembrane domain I plays a critical role in defining the permeation pathway of biogenic amine transporters.
大鼠血清素(5HT)转运体(rSERT)中保守的天冬氨酸(D98)突变为谷氨酸(D98E),导致5HT转运能力下降,与细胞外Na⁺和Cl⁻的偶联减弱,拮抗剂(可卡因、丙咪嗪和西酞普兰,但帕罗西汀或吗茚酮无此现象)效价选择性丧失,而5HT Km值无变化。D98E使酸性侧链延长了一个碳原子,影响了底物类似物抑制5HT转运的效价顺序,选择性增加了两种具有较短烷基胺侧链的类似物即禾本科碱和二羟基苄胺的效价。相对于5HT,D98E还增加了禾本科碱在非洲爪蟾卵母细胞中诱导底物激活电流的效力,但这些电流明显依赖于细胞外培养基酸化。底物非依赖性和依赖性电流的I-V曲线表明,该突变选择性影响与5HT占据相关的离子渗透。D98E突变体调节底物识别的选择性方面、扰乱离子依赖性以及改变底物诱导电流的能力,表明跨膜结构域I在确定生物胺转运体的渗透途径中起关键作用。