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首页> 外文期刊>Journal of Neurochemistry: Offical Journal of the International Society for Neurochemistry >The cGMP system in normal and degenerating mouse neuroretina: New proteins with cGMP interaction potential identified by a proteomics approach
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The cGMP system in normal and degenerating mouse neuroretina: New proteins with cGMP interaction potential identified by a proteomics approach

机译:正常和退化小鼠神经内酯中的CGMP系统:蛋白质组学方法鉴定的CGMP相互作用电位的新蛋白质

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摘要

The hereditary disease Retinitis pigmentosa results in severe vision loss due to pho-toreceptor degeneration by unclear mechanisms. In several disease models, the second messenger cGMP accumulates in the degenerating photoreceptors, where it may over-activate specific cGMP-interacting proteins, like cGMP-dependent protein kinase. Moreover, interventions that counteract the activity of these proteins lead to reduced photoreceptor cell death. Yet there is little or no information whether other than such regular cGMP-interactors are present in the retina, which we, therefore, investigated in wild-type and retinal degeneration (rd1, rd10, and rd2) mouse models. An affinity chromatography based proteomics approach that utilized immobilized cGMP analogs was applied to enrich and select for regular and potentially new cGMP-interacting proteins as identified by mass spectrometry. This approach revealed 12 regular and 10 potentially new retinal cGMP-interacting proteins (e.g., EPAC2 and CaMKIIa). Several of the latter were found to be expressed in the photo-receptors and to have proximity to cGMP and may thus be of interest when defining prospective therapeutic targets or biomarkers for retinal degeneration.
机译:遗传性视网膜色素变性(Retinitis pigmentosa,简称视网膜色素变性)是一种机制不明确的视网膜感光细胞变性(pho-toreptor degeneration,简称pho-toreptor degeneration,简称pho-toreptor degeneration,简称pho-tore degeneration。在几种疾病模型中,第二信使cGMP积聚在退化的光感受器中,可能过度激活特定的cGMP相互作用蛋白,如cGMP依赖性蛋白激酶。此外,抵消这些蛋白质活性的干预措施可减少光感受器细胞死亡。然而,除了这种常规的cGMP相互作用物之外,视网膜中是否存在其他的cGMP相互作用物几乎没有信息,因此,我们在野生型和视网膜变性(rd1、rd10和rd2)小鼠模型中对其进行了研究。一种基于亲和层析的蛋白质组学方法利用固定化cGMP类似物来富集和选择通过质谱鉴定的常规和潜在的新cGMP相互作用蛋白质。这种方法揭示了12种常规的和10种潜在的新的视网膜cGMP相互作用蛋白(例如EPAC2和CaMKIIa)。后者中有几个被发现在光受体中表达,并与cGMP接近,因此在确定视网膜变性的前瞻性治疗靶点或生物标记物时可能有意义。

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