Department of Medical Physics, University of Wisconsin-Madison, Madison, Wisconsin 53705, USA.
J Neurosci. 2013 Feb 6;33(6):2512-6. doi: 10.1523/JNEUROSCI.4182-12.2013.
Disruption of the serotonin system has been implicated in anxiety and depression and a related genetic variation has been identified that may predispose individuals for these illnesses. The relationship of a functional variation of the serotonin transporter promoter gene (5-HTTLPR) on serotonin transporter binding using in vivo imaging techniques have yielded inconsistent findings when comparing variants for short (s) and long (l) alleles. However, a significant 5-HTTLPR effect on receptor binding at the 5-HT(1A) receptor site has been reported in humans, suggesting the 5-HTTLPR polymorphism may play a role in serotonin (5-HT) function. Rhesus monkeys possess a 5-HTTLPR length polymorphism similar to humans and serve as an excellent model for studying the effects of this orthologous genetic variation on behaviors and neurochemical functions related to the 5-HT system. In this study, PET imaging of [(18)F]mefway was performed on 58 rhesus monkeys (33 l/l, 25 s-carriers) to examine the relation between 5-HT(1A) receptor-specific binding and 5-HTTLPR genotypes. Significantly lower 5-HT(1A) binding was found in s-carrier subjects throughout both cortical brain regions and the raphe nuclei. These results demonstrate that the underlying 5-HT neurochemical system is influenced by this functional polymorphism and illustrate the strong potential for extending the nonhuman primate model into investigating the role of this genetic variant on behavior and gene-environment interactions.
血清素系统的紊乱与焦虑和抑郁有关,已经确定了一种相关的遗传变异,可能使个体易患这些疾病。使用体内成像技术研究血清素转运体结合物的血清素转运体启动子基因(5-HTTLPR)的功能变异与短(s)和长(l)等位基因的比较时,得到了不一致的发现。然而,已经在人类中报道了 5-HT(1A)受体部位的受体结合对 5-HTTLPR 多态性的显著影响,表明 5-HTTLPR 多态性可能在血清素(5-HT)功能中起作用。恒河猴具有与人类相似的 5-HTTLPR 长度多态性,是研究这种同源遗传变异对与 5-HT 系统相关的行为和神经化学功能的影响的极佳模型。在这项研究中,对 58 只恒河猴(33 只 l/l,25 只 s-携带者)进行了 [(18)F]mefway 的 PET 成像,以检查 5-HT(1A)受体特异性结合与 5-HTTLPR 基因型之间的关系。在皮质脑区和中缝核中,s-携带者的 5-HT(1A)结合明显较低。这些结果表明,基础的 5-HT 神经化学系统受到这种功能多态性的影响,并说明了将非人类灵长类模型扩展到研究这种遗传变异对行为和基因-环境相互作用的作用的强大潜力。