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Structure-functional relationship of cellular retinoic acid-binding proteins I and II interacting with natural and synthetic ligands

机译:Structure-functional细胞的关系视黄结合蛋白I和II与自然互动和合成配体

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A detailed understanding of the interactions between small-molecule ligands and their proposed binding targets is of the utmost importance for modern drug-development programs. Cellular retinoic acid-binding proteins I and II (CRABPI and CRABPII) facilitate a number of vital retinoid signalling pathways in mammalian cells and offer a gateway to manipulation of signalling that could potentially reduce phenotypes in serious diseases, including cancer and neurodegeneration. Although structurally very similar, the two proteins possess distinctly different biological functions, with their signalling influence being exerted through both genomic and nongenomic pathways. In this article, crystal structures are presented of the L29C mutant of Homo sapiens CRABPI in complex with naturally occurring fatty acids (1.64 A resolution) and with the synthetic retinoid DC645 (2.41 A resolution), and of CRABPII in complex with the ligands DC479 (1.80 A resolution) and DC645 (1.71 A resolution). DC645 and DC479 are two potential drug compounds identified in a recent synthetic retinoid development program. In particular, DC645 has recently been shown to have disease-modifying capabilities in neurodegenerative disease models by activating both genomic and nongenomic signalling pathways. These co-crystal structures demonstrate a canonical binding behaviour akin to that exhibited with all-trans-retinoic acid and help to explain how the compounds are able to exert an influence on part of the retinoid signalling cascade.
机译:一个详细的了解交互小分子配体与他们的提议约束力的目标是至关重要的现代药物研发项目。视黄I和II (CRABPI结合蛋白质和CRABPII)促进至关重要类维生素a在哺乳动物细胞信号通路并提供一个网关操作信号这可能会降低表型严重的疾病,包括癌症和神经退化。类似的,两种蛋白质具有明显不同的生物功能,与他们信号通过施加影响基因组和nongenomic通路。L29C提出了晶体结构突变的智人CRABPI复杂天然脂肪酸(1.64分辨率)和合成维生素a DC645(分辨率)2.41,CRABPII的复杂1.80配体DC479(分辨率)DC645(1.71决议)。两个潜在的药物化合物的识别最近的合成维生素a发展项目。特别DC645最近被证明有疾病修饰功能神经退行性疾病模型通过激活基因组和nongenomic信号通路。这些co-crystal结构展示规范约束力的行为类似于表现出与all-trans-retinoic酸和帮助解释如何能够产生的化合物影响类维生素a信号的一部分级联。

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