Coolen M W, van Loo K M J, Ellenbroek B A, Cools A R, Martens G J M
Department of Molecular Animal Physiology, Nijmegen Center for Molecular Life Sciences (NCMLS), Radboud University, Nijmegen, The Netherlands.
Mol Psychiatry. 2006 Aug;11(8):787-93. doi: 10.1038/sj.mp.4001846. Epub 2006 May 23.
Selectively bred apomorphine susceptible (APO-SUS) rats display a complex behavioral phenotype remarkably similar to that of human neurodevelopmental disorders, such as schizophrenia. We recently found that the APO-SUS rats have only one or two Aph-1b gene copies (I/I and II/II rats, respectively), whereas their phenotypic counterpart has three copies (III/III). Aph-1b is a component of the gamma-secretase enzyme complex that is involved in multiple (neuro)developmental signaling pathways. Nevertheless, surprisingly little is known about gamma-secretase expression during development. Here, we performed a longitudinal quantitative PCR study in embryos and the hippocampus of I/I, II/II and III/III rats, and found gene-dosage dependent differences in Aph-1b, but not Aph-1a, mRNA expression throughout pre- and post-natal development. On the basis of the developmental mRNA profiles, we assigned relative activities to the various Aph-1a and -1b gene promoters. Furthermore, in the three rat lines, we observed both tissue-specific and temporal alterations in gamma-secretase cleavage activity towards one of its best-known substrates, the amyloid-beta precursor protein APP. We conclude that the low levels of Aph-1b mRNA and gamma-secretase activity observed in the I/I and II/II rats during the entire developmental period may well underlie their complex phenotype.
经过选择性培育的阿扑吗啡敏感(APO-SUS)大鼠表现出一种复杂的行为表型,与人类神经发育障碍(如精神分裂症)极为相似。我们最近发现,APO-SUS大鼠只有一两个Aph-1b基因拷贝(分别为I/I和II/II大鼠),而与其表型对应的大鼠有三个拷贝(III/III)。Aph-1b是γ-分泌酶复合物的一个组成部分,该复合物参与多种(神经)发育信号通路。然而,令人惊讶的是,关于发育过程中γ-分泌酶的表达却知之甚少。在此,我们对I/I、II/II和III/III大鼠的胚胎及海马体进行了纵向定量PCR研究,发现在整个产前和产后发育过程中,Aph-1b(而非Aph-1a)的mRNA表达存在基因剂量依赖性差异。基于发育mRNA谱,我们确定了各种Aph-1a和-1b基因启动子的相对活性。此外,在这三个大鼠品系中,我们观察到γ-分泌酶对其最著名的底物之一淀粉样前体蛋白APP的切割活性存在组织特异性和时间性变化。我们得出结论,在整个发育期间,I/I和II/II大鼠中观察到的低水平Aph-1b mRNA和γ-分泌酶活性很可能是其复杂表型的基础。