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首页> 外文期刊>Biochemistry >Dissecting enzyme regulation by multiple allosteric effectors: Nucleotide regulation of aspartate transcarbamoylase
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Dissecting enzyme regulation by multiple allosteric effectors: Nucleotide regulation of aspartate transcarbamoylase

机译:剖析多种变构效应子对酶的调控:天冬氨酸转氨甲酰酶的核苷酸调控

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The enzyme aspartate transcarbamoylase (ATCase, EC 2.1.3.2 of Escherichia coli), which catalyzes the committed step of pyrimidine biosynthesis, is allosterically regulated by all four ribonucleoside triphosphates (NTPs) in a nonlinear manner. Here, we dissect this regulation using the recently developed approach of random sampling-high-dimensional model representation (RS-HDMR). ATCase activity was measured in vitro at 300 random NTP concentration combinations, each involving (consistent with in vivo conditions) all four NTPs being present. These data were then used to derive a RS-HDMR model of ATCase activity over the full four-dimensional NTP space. The model accounted for 90% of the variance in the experimental data. Its main elements were positive ATCase regulation by ATP and negative by CTP, with the negative effects of CTP dominating the positive ones of ATP when both regulators were abundant (i.e., a negative cooperative effect of ATP x CTP). Strong sensitivity to both ATP and CTP concentrations occurred in their physiological concentration ranges. UTP had only a slight effect, and GTP had almost none. These findings support a predominant role of CTP and ATP in ATCase regulation. The general approach provides a new paradigm for dissecting multifactorial regulation of biological molecules and processes.
机译:天冬氨酸转氨甲酰酶(ATCase,大肠杆菌,EC 2.1.3.2),催化嘧啶生物合成的重要步骤,被所有四个核糖核苷三磷酸(NTPs)都以非线性方式变构调节。在这里,我们使用最近开发的随机采样-高维模型表示(RS-HDMR)方法来剖析此规则。在300种随机NTP浓度组合中体外测量ATCase活性,每种组合都包含(与体内条件一致)所有四种NTP。然后将这些数据用于在整个四维NTP空间上导出ATCase活性的RS-HDMR模型。该模型占实验数据方差的90%。它的主要成分是ATP对ATCase的正调节作用,而CTP对CTC的负调节作用,而当两个调节因子都丰富时,CTP的负作用将主导ATP的正作用(即ATP x CTP的负作用)。在其生理浓度范围内,对ATP和CTP浓度都具有很强的敏感性。 UTP的影响很小,而GTP几乎没有影响。这些发现支持了CTP和ATP在ATCase调控中的主要作用。通用方法为剖析生物分子和过程的多因素调控提供了新的范例。

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