Volz Trent J, Hanson Glen R, Fleckenstein Annette E
Department of Pharmacology and Toxicology, University of Utah, Salt Lake City, 84112, USA.
Synapse. 2006 Nov;60(6):474-7. doi: 10.1002/syn.20321.
The vesicular monoamine transporter-2 (VMAT-2) sequesters cytoplasmic dopamine (DA) into vesicles and may thus protect neurons from DA-associated oxidative damage. VMAT-2 function, as assessed by measuring [(3)H]DA uptake, is less in adolescent when compared with young adult rats and VMAT-2 susceptibility to methamphetamine also changes with age. Thus, developmental alterations in VMAT-2 function warrant further investigation. The current study extends these findings by showing that the initial velocities of both DA uptake and methamphetamine-induced DA efflux are less in adolescent postnatal day (PND 38-42) vs. young adult (PND 88-92) rats as assessed in nonmembrane associated (presumably cytoplasmic) vesicles purified from rat striatal synaptosomes. The decrease in DA uptake velocities is due to a decrease in the V(max) of DA uptake with no change in the K(m). The density of kinetically active VMAT-2 and VMAT-2 immunoreactivity are less in adolescent vs. young adult rats while both the turnover number (2.4-2.8 s(-) (1)) and rate constant for the association of DA with VMAT-2 ( 1 x 10(7) M(-) (1) s(-) (1)) are similar in these age groups. These results suggest that the kinetics of DA binding and translocation across the membrane are unaltered in the vesicles of PND 38-42 vs. PND 88-92 rats. However, decreased VMAT-2 density in PND 38-42 rats reduces V(max), which in turn lowers DA uptake.
囊泡单胺转运体2(VMAT-2)将细胞质中的多巴胺(DA)隔离到囊泡中,从而可能保护神经元免受与DA相关的氧化损伤。通过测量[³H]DA摄取来评估,VMAT-2的功能在青少年大鼠中比年轻成年大鼠要低,并且VMAT-2对甲基苯丙胺的敏感性也随年龄而变化。因此,VMAT-2功能的发育变化值得进一步研究。当前的研究扩展了这些发现,结果表明,从大鼠纹状体突触体中纯化的非膜相关(可能是细胞质)囊泡中,与年轻成年(出生后第88 - 92天)大鼠相比,青少年(出生后第38 - 42天)大鼠中DA摄取和甲基苯丙胺诱导的DA流出的初始速度均较低。DA摄取速度的降低是由于DA摄取的V(max)降低,而K(m)没有变化。与年轻成年大鼠相比,青少年大鼠中具有动力学活性的VMAT-2密度和VMAT-2免疫反应性较低,而在这些年龄组中,DA与VMAT-2结合的周转数(2.4 - 2.8 s⁻¹)和速率常数(1 x 10⁷ M⁻¹ s⁻¹)相似。这些结果表明,与出生后第88 - 92天的大鼠相比,出生后第38 - 42天的大鼠囊泡中DA结合和跨膜转运的动力学未改变。然而,出生后第38 - 42天的大鼠中VMAT-2密度降低会降低V(max),进而降低DA摄取。