Brophy K, Hawi Z, Kirley A, Fitzgerald M, Gill M
Department of Genetics, Trinity College Dublin, Dublin 2, Ireland.
Mol Psychiatry. 2002;7(8):913-7. doi: 10.1038/sj.mp.4001092.
Several lines of evidence have suggested that ADHD is a polygenic disorder produced by the interaction of several genes each of a minor effect. Synaptosomal-associated protein 25 (SNAP-25) is a presynaptic plasma membrane protein which is expressed highly and specifically in the nerve cells. The gene encodes a protein essential for synaptic vesicle fusion and neurotransmitter release. Animal model studies showed that the coloboma mouse mutant has a hyperactive phenotype similar to that of ADHD. The hyperactive phenotype of this model has been shown to be the result of a deletion of the SNAP-25 gene. DNA variations within or closely mapped to the SNAP-25 gene may alter the level of expression and hence may have an effect on the function of synaptic vesicle fusion and neurotransmitter release. Using HHRR and TDT we analysed 93 ADHD nuclear families from Ireland and found increased preferential transmission of SNAP-25/DdeI allelel to ADHD cases; HHRR (chi(2) = 6.55, P = 0.01) and linkage (TDT) (chi(2) = 6.5, P = 0.015). In contrast to our findings, Barr et al(1) reported an increased transmission of allele 2 of the DdeI polymorphism though this was not statistically significant. However, they also reported a significantly increased transmission of a haplotype (made of allele 1 of MnlI and allele 2 of the DdeI) in their Canadian ADHD sample. It is not clear what the role of SNAP-25 in ADHD is until these findings are either confirmed or refuted in other ADHD samples.
多项证据表明,注意力缺陷多动障碍(ADHD)是一种多基因疾病,由多个微效基因相互作用产生。突触体相关蛋白25(SNAP - 25)是一种突触前质膜蛋白,在神经细胞中高度且特异性表达。该基因编码一种对突触小泡融合和神经递质释放至关重要的蛋白质。动物模型研究表明,无眼畸形小鼠突变体具有与ADHD相似的多动表型。已证明该模型的多动表型是SNAP - 25基因缺失的结果。SNAP - 25基因内部或紧密连锁的DNA变异可能会改变表达水平,进而可能影响突触小泡融合和神经递质释放的功能。我们使用家系传递不平衡检验(HHRR)和传递不平衡检验(TDT)分析了来自爱尔兰的93个ADHD核心家庭,发现SNAP - 25/DdeI等位基因向ADHD患者的优先传递增加;HHRR(卡方 = 6.55,P = 0.01)和连锁分析(TDT)(卡方 = 6.5,P = 0.015)。与我们的研究结果相反,巴尔等人(1)报告了DdeI多态性的2号等位基因传递增加,尽管这在统计学上不显著。然而,他们还报告了在其加拿大ADHD样本中,一种单倍型(由MnlI的1号等位基因和DdeI的2号等位基因组成)的传递显著增加。在这些发现被其他ADHD样本证实或反驳之前,尚不清楚SNAP - 25在ADHD中的作用是什么。