自磷酸化
神经保护
神经科学
谷氨酸受体
海马结构
生物
医学
药理学
蛋白激酶A
激酶
细胞生物学
生物化学
受体
作者
Nane Griem‐Krey,Anders B. Klein,Bettina Hjelm Clausen,Mathias RJ Namini,Pernille Vinther Nielsen,Mozammel Haque Bhuiyan,Raghavendra Y. Nagaraja,T Michael De Silva,Christopher G. Sobey,Heung‐Chin Cheng,Cyrille Orset,Denis Vivien,Kate Lykke Lambertsen,Andrew N. Clarkson,Petrine Wellendorph
标识
DOI:10.1177/0271678x231167920
摘要
Ca 2+ /calmodulin-dependent protein kinase II alpha (CaMKIIα) is a major contributor to physiological and pathological glutamate-mediated Ca 2+ signals, and its involvement in various critical cellular pathways demands specific pharmacological strategies. We recently presented γ-hydroxybutyrate (GHB) ligands as the first small molecules selectively targeting and stabilizing the CaMKIIα hub domain. Here, we report that the cyclic GHB analogue 3-hydroxycyclopent-1-enecarboxylic acid (HOCPCA), improves sensorimotor function after experimental stroke in mice when administered at a clinically relevant time and in combination with alteplase. Further, we observed improved hippocampal neuronal activity and working memory after stroke. On the biochemical level, we observed that hub modulation by HOCPCA results in differential effects on distinct CaMKII pools, ultimately alleviating aberrant CaMKII signalling after cerebral ischemia. As such, HOCPCA normalised cytosolic Thr286 autophosphorylation after ischemia in mice and downregulated ischemia-specific expression of a constitutively active CaMKII kinase proteolytic fragment. Previous studies suggest holoenzyme stabilisation as a potential mechanism, yet a causal link to in vivo findings requires further studies. Similarly, HOCPCA’s effects on dampening inflammatory changes require further investigation as an underlying protective mechanism. HOCPCA’s selectivity and absence of effects on physiological CaMKII signalling highlight pharmacological modulation of the CaMKIIα hub domain as an attractive neuroprotective strategy.
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