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Isoform-specific targeting of ROCK proteins in immune cells

机译:免疫细胞中ROCK蛋白的同工型特异性靶向

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摘要

Rho-associated kinase 1 (ROCK1) and ROCK2 are activated by Rho GTPase and control cytoskeleton rearrangement through modulating the phosphorylation of their down-stream effector molecules. Although these 2 isoforms share more than 90% homology within their kinase domain the question of whether ROCK proteins function identically in different cell types is not clear. By using both pharmacological inhibition and genetic knockdown approaches recent studies suggest that the ROCK2 isoform plays an exclusive role in controlling of T-cell plasticity and macrophage polarization. Specifically, selective ROCK2 inhibition shifts the balance between pro-inflammatory and regulatory T-cell subsets via concurrent regulation of STAT3 and STAT5 phosphorylation, respectively. Furthermore, the administration of an orally available selective ROCK2 inhibitor effectively ameliorates clinical manifestations in experimental models of autoimmunity and chronic graft-vs.-host disease (cGVHD). Because ROCK2 inhibition results inthe suppression of M2-type macrophages while favoring polarization of M1 -type macrophages, ROCK2 inhibition can correct the macrophage imbalance seen during age-related macular degeneration (AMD). In summary, the exclusive role of ROCK2 in immune systemmodulation argues for the development and testing of isoform-specific ROCK2 inhibitors for the treatment of inflammatory disorders.
机译:Rho相关激酶1(ROCK1)和ROCK2被Rho GTPase激活,并通过调节其下游效应分子的磷酸化来控制细胞骨架重排。尽管这两种同工型在它们的激酶结构域内共有90%以上的同源性,但关于ROCK蛋白在不同细胞类型中是否功能相同的问题尚不清楚。通过同时使用药理抑制和基因敲除方法,最近的研究表明,ROCK2同工型在控制T细胞可塑性和巨噬细胞极化中起排他作用。具体而言,选择性ROCK2抑制分别通过同时调节STAT3和STAT5磷酸化来改变促炎性T细胞和调节性T细胞亚群之间的平衡。此外,口服可用的选择性ROCK2抑制剂的施用有效改善了自身免疫性和慢性移植物抗宿主病(cGVHD)实验模型中的临床表现。因为ROCK2抑制导致M2型巨噬细胞的抑制而有利于M1型巨噬细胞的极化,所以ROCK2抑制可以纠正在与年龄有关的黄斑变性(AMD)期间看到的巨噬细胞失衡。总之,ROCK2在免疫系统调节中的排他性作用为开发和测试用于治疗炎性疾病的同工型特异性ROCK2抑制剂提供了依据。

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