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Lysyl Oxidase (LOX): Functional Contributions to Signaling Pathways

机译:溶酶氧化酶(LOX):对信号通路的功能贡献

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摘要

Cu-dependent lysyl oxidase (LOX) plays a catalytic activity-related, primary role in the assembly of the extracellular matrix (ECM), a dynamic structural and regulatory framework which is essential for cell fate, differentiation and communication during development, tissue maintenance and repair. LOX, additionally, plays both activity-dependent and independent extracellular, intracellular and nuclear roles that fulfill significant functions in normal tissues, and contribute to vascular, cardiac, pulmonary, dermal, placenta, diaphragm, kidney and pelvic floor disorders. LOX activities have also been recognized in glioblastoma, diabetic neovascularization, osteogenic differentiation, bone matrix formation, ligament remodeling, polycystic ovary syndrome, fetal membrane rupture and tumor progression and metastasis. In an inflammatory context, LOX plays a role in diminishing pluripotent mesenchymal cell pools which are relevant to the pathology of diabetes, osteoporosis and rheumatoid arthritis. Most of these conditions involve mechanisms with complex cell and tissue type-specific interactions of LOX with signaling pathways, not only as a regulatory target, but also as an active player, including LOX-mediated alterations of cell surface receptor functions and mutual regulatory activities within signaling loops. In this review, we aim to provide insight into the diverse ways in which LOX participates in signaling events, and explore the mechanistic details and functional significance of the regulatory and cross-regulatory interactions of LOX with the EGFR, PDGF, VEGF, TGF-β, mechano-transduction, inflammatory and steroid signaling pathways.
机译:Cu依赖性溶血基氧化酶(LOX)在细胞外基质(ECM)的组装中起催化活性相关的主要作用,一种动态的结构和调节框架,这对于开发,组织维护和组织维护期间的细胞命运,分化和通信至关重要修理。此外,LOX还发挥依赖于活性和独立的细胞外,细胞内和核作用,该细胞内和核作用在正常组织中满足显着的功能,并有助于血管,心脏,肺,皮肤,胎盘,隔膜,肾脏和骨盆楼盘。 LOX活动也得到了胶质母细胞瘤,糖尿病新生血管,成骨分化,骨基质形成,韧带重塑,多囊卵巢综合征,胎膜破裂和肿瘤进展和转移。在炎症性背景下,LOX在递减多能间充质细胞库中起作用,这与糖尿病,骨质疏松症和类风湿性关节炎的病理相关。这些条件中的大多数涉及具有络合物的机制和LOx的组织类型特异性与信号通路的特异性相互作用,不仅是调节靶,而且作为活性播放器,包括LOX介导的细胞表面受体功能的改变和内部的相互监管活动信令环。在这篇综述中,我们的目标是提供洞察LOX参与信号传导事件的多种方式,并探索LOX与EGFR,PDGF,VEGF,TGF-β的调节和交叉调节相互作用的机制细节和功能意义,机械转导,炎症和类固醇信号通路。

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