Ftouh Saoussen, Akbar Mohammed T, Hirsch Steven R, de Belleroche Jacqueline S
Division of Neuroscience and Mental Health, Faculty of Medicine, Imperial College London, Charing Cross Hospital, London, UK.
J Neurochem. 2005 Jul;94(2):520-30. doi: 10.1111/j.1471-4159.2005.03239.x.
The aetiology of schizophrenia is complex and the pathological mechanisms involved are still not fully understood. The aim of this project was to gain insight into the underlying molecular changes occurring in schizophrenia through the analysis of gene expression. Using suppression subtractive hybridization to isolate differentially expressed genes in superior temporal cortex (BA22), we detected one prominent sequence with reduced expression in schizophrenia and represented in at least nine clones. This was then selected for further validation. This 190-bp partial transcript showed identity to part of the Dickkopf-3 (Dkk3) gene sequence. Differential expression was initially confirmed in BA22 by slot blot hybridization where expression was decreased by 35% (p < 0.026). These results were further authenticated in a larger panel (12 control and 11 schizophrenia cases) using SYBR Green I real-time quantitative RT-PCR, in which a 41% decrease in expression of Dkk3 mRNA in schizophrenia was obtained (p < 0.012). Furthermore, using in situ hybridization, Dkk3 mRNA was shown to be abundantly expressed in cortical neurones, with prominent expression in layers II/III and V/VI of BA22. Dkk3 belongs to a novel family of Dkk proteins, which have been shown to be potent inhibitors of the neurodevelopmental wingless (Wnt) signalling pathway, and is therefore a putative candidate for further investigation into the aetiology of schizophrenia.
精神分裂症的病因复杂,其涉及的病理机制仍未完全明确。本项目旨在通过基因表达分析深入了解精神分裂症潜在的分子变化。利用抑制性消减杂交技术分离颞上叶皮质(BA22区)中差异表达的基因,我们检测到一个在精神分裂症中表达降低且至少在九个克隆中出现的显著序列。随后选择该序列进行进一步验证。这个190bp的部分转录本与Dickkopf-3(Dkk3)基因序列的一部分具有同源性。最初通过狭缝印迹杂交在BA22区证实了差异表达,其中表达下降了35%(p < 0.026)。使用SYBR Green I实时定量逆转录-聚合酶链反应在更大的样本组(12例对照和11例精神分裂症病例)中进一步验证了这些结果,其中精神分裂症患者中Dkk3 mRNA表达下降了41%(p < 0.012)。此外,通过原位杂交显示,Dkk3 mRNA在皮质神经元中大量表达,在BA22区的II/III层和V/VI层有显著表达。Dkk3属于Dkk蛋白的一个新家族,已被证明是神经发育性无翅型(Wnt)信号通路的有效抑制剂,因此是进一步研究精神分裂症病因的一个假定候选基因。