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Structural and functional diversity of lysyl oxidase and the LOX-like proteins

机译:赖氨酰氧化酶和LOX样蛋白的结构和功能多样性

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摘要

Lysyl oxidase (LOX) and four lysyl oxidase-like proteins, LOXL, LOXL2, LOXL3 and LOXL4, each contain a copper binding site, conserved lysyl and tyrosyl residues that may contribute to quinone co-factor formation, and a cytokine receptor-like domain. Each protein differs mainly in their N-terminal sequence, which may confer individual functions. Processing of the LOX proteins by BMP-1 and possibly other mechanisms may result in multiple functional forms. Splicing, reported for LOXL3, may also generate additional variants with unique functions. Each LOX, with its individual, developmentally regulated tissue and cell-specific expression and localization, results in a complex structural and functional variation for the LOX amine oxidases. The presence of only two LOX-like proteins in Drosophila, each with distinct spatial and temporal expression, allows for the assignment of individual function to one of these amine oxidases. Comparative expression analysis of each LOX protein is presented to help determine their functional significance.
机译:赖氨酰氧化酶(LOX)和四个类似于赖氨酰氧化酶的蛋白LOXL,LOXL2,LOXL3和LOXL4,每个都含有一个铜结合位点,保守的赖氨酰和酪氨酰残基,可能有助于醌辅因子的形成以及一个类似于细胞因子受体的结构域。每种蛋白质的主要区别在于其N端序列,这可能赋予各自的功能。 BMP-1对LOX蛋白的加工以及可能的其他机制可能导致多种功能形式。报告为LOXL3的剪接还可能生成具有独特功能的其他变体。每个LOX,具有其各自的,发育受调节的组织以及细胞特异性表达和定位,会导致LOX胺氧化酶的复杂结构和功能变异。果蝇中仅存在两个LOX样蛋白,每个蛋白具有不同的时空表达,从而可以将单个功能分配给这些胺氧化酶之一。提供了每种LOX蛋白的比较表达分析,以帮助确定其功能重要性。

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