Zhao Wei, Ho Lap, Wang Jun, Bi Weina, Yemul Shrishailam, Ward Libby, Freire Daniel, Mazzola Paolo, Brathwaite Justin, Mezei Mihaly, Sanchez Roberto, Elder Gregory A, Pasinetti Giulio Maria
Department of Neurology, Icahn School of Medicine at Mount Sinai, New York.
Geriatric Research Education Clinical Center at James J. Peters VA Medical Center, Bronx, New York.
J Cell Biochem. 2016 Oct;117(10):2241-8. doi: 10.1002/jcb.25521. Epub 2016 Jul 12.
The objective of this study was to develop an in silico screening model for characterization of potential novel ligands from commercial drug libraries able to functionally activate certain olfactory receptors (ORs), which are members of the class A rhodopsin-like family of G protein couple receptors (GPCRs), in the brain of murine models of concussion. We previously found that concussions may significantly influence expression of certain ORs, for example, OR4M1 in subjects with a history of concussion/traumatic brain injury (TBI). In this study, we built a 3-D OR4M1 model and used it in in silico screening of potential novel ligands from commercial drug libraries. We report that in vitro activation of OR4M1 with the commercially available ZINC library compound 10915775 led to a significant attenuation of abnormal tau phosphorylation in embryonic cortico-hippocampal neuronal cultures derived from NSE-OR4M1 transgenic mice, possibly through modulation of the JNK signaling pathway. The attenuation of abnormal tau phosphorylation was rather selective since ZINC10915775 significantly decreased tau phosphorylation on tau Ser202/T205 (AT8 epitope) and tau Thr212/Ser214 (AT100 epitope), but not on tau Ser396/404 (PHF-1 epitope). Moreover, no response of ZINC10915775 was found in control hippocampal neuronal cultures derived from wild type littermates. Our in silico model provides novel means to pharmacologically modulate select ubiquitously expressed ORs in the brain through high affinity ligand activation to prevent and eventually to treat concussion induced down regulation of ORs and subsequent cascade of tau pathology. J. Cell. Biochem. 117: 2241-2248, 2016. © 2016 Wiley Periodicals, Inc.
本研究的目的是开发一种计算机筛选模型,用于从商业药物库中鉴定能够功能性激活某些嗅觉受体(ORs)的潜在新型配体,这些嗅觉受体是A类视紫红质样G蛋白偶联受体(GPCRs)家族的成员,存在于脑震荡小鼠模型的大脑中。我们先前发现,脑震荡可能会显著影响某些ORs的表达,例如,有脑震荡/创伤性脑损伤(TBI)病史的受试者中的OR4M1。在本研究中,我们构建了一个三维OR4M1模型,并将其用于从商业药物库中对潜在新型配体进行计算机筛选。我们报告称,用市售的ZINC文库化合物10915775体外激活OR4M1,可导致源自NSE - OR4M1转基因小鼠的胚胎皮质 - 海马神经元培养物中异常tau磷酸化显著减弱,这可能是通过调节JNK信号通路实现的。异常tau磷酸化的减弱具有相当的选择性,因为ZINC10915775显著降低了tau Ser202/T205(AT8表位)和tau Thr212/Ser214(AT100表位)处的tau磷酸化,但对tau Ser396/404(PHF - 1表位)处的磷酸化没有影响。此外,在源自野生型同窝小鼠的对照海马神经元培养物中未发现ZINC10915775有反应。我们的计算机模型提供了新的手段,通过高亲和力配体激活来药理学调节大脑中普遍表达的特定ORs,以预防并最终治疗脑震荡诱导的ORs下调以及随后的tau病理级联反应。《细胞生物化学杂志》117: 2241 - 2, 2016。© 2016威利期刊公司