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Unity in diversity a systems approach to regulating plant cell physiology by 2-oxoglutarate-dependent dioxygenases

机译:多样性统一一种通过2-氧戊二酸依赖性双加氧酶调节植物细胞生理的系统方法

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摘要

Could a disjoint group of enzymes synchronize their activities and execute a complex multi-step, measurable, and reproducible response? Here, I surmise that the alpha-ketoglutarate dependent superfamily of non-haem iron (II) dioxygenases could influence cell physiology as a cohesive unit, and that the broad spectra of substrates transformed is an absolute necessity to this portrayal. This eclectic group comprises members from all major taxa, and participates in pesticide breakdown, hypoxia signaling, and osmotic stress neutralization. The oxidative decarboxylation of 2-oxoglutarate to succinate is coupled with a concomitant substrate hydroxylation and, in most cases, is followed by an additional specialized conversion. The domain profile of a protein sequence was used as an index of miscellaneous reaction chemistry and interpreted alongside existent kinetic data in a linear model of integrated function. Statistical parameters were inferred by the creation of a novel, empirically motivated flat-file database of over 3800 sequences (DB2OG) with putative 2-oxoglutarate dependent activity. The collated information was categorized on the basis of existing annotation schema. The data suggests that 2OG-dependent enzymes incorporate several desirable features of a systems level player. DB2OG, is free, accessible without a login to all users, and available at the following URL ().
机译:不相交的一组酶能否同步其活动并执行复杂的多步,可测量和可再现的反应?在这里,我推测非血红素铁(II)双加氧酶的α-酮戊二酸依赖性超家族可能会影响细胞生理,作为一个内聚单元,而且转化的底物的广谱绝对是这种刻画的必要条件。这个折衷小组包括所有主要分类单元的成员,并参与农药分解,缺氧信号传导和渗透胁迫中和。 2-氧戊二酸酯氧化脱羧成琥珀酸酯与伴随的底物羟基化结合,并且在大多数情况下,随后进行额外的专门转化。蛋白质序列的结构域图谱用作其他反应化学的指标,并在整合功能的线性模型中与现有的动力学数据一起解释。统计参数是通过创建一个新的,基于经验的,具有超过3800个序列(DB2OG)且具有假定的2-氧戊二酸依赖性活性的平面文件数据库来推断的。整理的信息是基于现有注释架构进行分类的。数据表明依赖2OG的酶具有系统水平发挥剂的一些理想功能。 DB2OG是免费的,无需登录所有用户即可访问,并且可以通过以下URL()获得。

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