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首页> 外文期刊>Brain research >Impaired spine formation and learning in GPCR kinase 2 interacting protein-1 (GIT1) knockout mice.
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Impaired spine formation and learning in GPCR kinase 2 interacting protein-1 (GIT1) knockout mice.

机译:GPCR激酶2相互作用蛋白1(GIT1)敲除小鼠的脊柱形成和学习受损。

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摘要

The G-protein coupled receptor (GPCR)-kinase interacting proteins 1 and 2 (GIT1 and GIT2) are scaffold proteins with ADP-ribosylating factor GTPase activity. GIT1 and GIT2 control numerous cellular functions and are highly expressed in neurons, endothelial cells and vascular smooth muscle cells. GIT1 promotes dendritic spine formation, growth and motility in cultured neurons, but its role in brain in vivo is unknown. By using global GIT1 knockout mice (GIT1 KO), we show that compared to WT controls, deletion of GIT1 results in markedly reduced dendritic length and spine density in the hippocampus by 36.7% (p<0.0106) and 35.1% (p<0.0028), respectively. This correlated with their poor adaptation to new environments as shown by impaired performance on tasks dependent on learning. We also studied the effect of GIT1 gene deletion on brain microcirculation. In contrast to findings in systemic circulation, GIT1 KO mice had an intact blood-brain barrier and normal regional cerebral blood flow as determined with radiotracers. Thus, our data suggest that GIT1 plays an important role in brain in vivo by regulating spine density involved in synaptic plasticity that is required for processes involved in learning.
机译:G蛋白偶联受体(GPCR)-激酶相互作用蛋白1和2(GIT1和GIT2)是具有ADP-核糖基化因子GTPase活性的支架蛋白。 GIT1和GIT2控制许多细胞功能,并在神经元,内皮细胞和血管平滑肌细胞中高度表达。 GIT1促进培养的神经元中树突棘的形成,生长和运动,但在体内大脑中的作用尚不清楚。通过使用全球性的GIT1基因敲除小鼠(GIT1 KO),我们发现与WT对照相比,GIT1的缺失导致海马的树突长度和脊柱密度显着降低了36.7%(p <0.0106)和35.1%(p <0.0028) , 分别。这与他们对新环境的适应性差有关,表现为依赖学习的任务的表现受损。我们还研究了GIT1基因缺失对脑微循环的影响。与全身循环的发现相反,GIT1 KO小鼠具有完整的血脑屏障和正常的局部脑血流,这是通过放射性示踪剂确定的。因此,我们的数据表明,GIT1通过调节参与学习过程所需的突触可塑性的脊柱密度,在体内大脑中发挥重要作用。

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