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手性π堆积的调控揭示了苯丙氨酸羟化酶的构象灵活性。

Manipulation of a cation-π sandwich reveals conformational flexibility in phenylalanine hydroxylase.

机构信息

Molecular Therapeutics Program, Fox Chase Cancer Center, Philadelphia, PA, 10111, USA; Department of Biochemistry and Molecular Biology, Drexel University College of Medicine, Philadelphia, PA, 19102, USA.

Molecular Therapeutics Program, Fox Chase Cancer Center, Philadelphia, PA, 10111, USA.

出版信息

Biochimie. 2021 Apr;183:63-77. doi: 10.1016/j.biochi.2020.11.011. Epub 2020 Nov 19.

Abstract

Phenylalanine hydroxylase (PAH) is an allosteric enzyme that maintains phenylalanine (Phe) below neurotoxic levels; its failure results in phenylketonuria, an inborn error of amino acid metabolism. Wild type (WT) PAH equilibrates among resting-state (RS-PAH) and activated (A-PAH) conformations, whose equilibrium position depends upon allosteric Phe binding. The RS-PAH conformation of WT rat PAH (rPAH) contains a cation-π sandwich involving Phe80 that cannot exist in the A-PAH conformation. Phe80 variants F80A, F80D, F80L, and F80R were prepared and evaluated using native PAGE, size exclusion chromatography, ion exchange behavior, intrinsic protein fluorescence, enzyme kinetics, and limited proteolysis, each as a function of [Phe]. Like WT rPAH, F80A and F80D show allosteric activation by Phe while F80L and F80R are constitutively active. Maximal activity of all variants suggests relief of a rate-determining conformational change. Limited proteolysis of WT rPAH (minus Phe) reveals facile cleavage within a 4-helix bundle that is buried in the RS-PAH tetramer interface, reflecting dynamic dissociation of that tetramer. This cleavage is not seen for the Phe80 variants, which all show proteolytic hypersensitivity in a linker that repositions during the RS-PAH to A-PAH interchange. Hypersensitivity is corrected by addition of Phe such that all variants become like WT rPAH and achieve the A-PAH conformation. Thus, manipulation of Phe80 perturbs the conformational space sampled by PAH, increasing sampling of on-pathway intermediates in the RS-PAH and A-PAH interchange. The behavior of the Phe80 variants mimics that of disease-associated R68S and suggests a molecular basis for proteolytic susceptibility in PKU-associated human PAH variants.

摘要

苯丙氨酸羟化酶(PAH)是一种变构酶,可将苯丙氨酸(Phe)维持在神经毒性水平以下;其功能丧失会导致苯丙酮尿症,这是一种氨基酸代谢的先天性错误。野生型(WT)PAH 在静息状态(RS-PAH)和激活状态(A-PAH)构象之间达到平衡,其平衡位置取决于变构 Phe 结合。WT 大鼠 PAH(rPAH)的 RS-PAH 构象包含涉及 Phe80 的阳离子-π 夹心结构,该结构不能存在于 A-PAH 构象中。制备并评估了 F80A、F80D、F80L 和 F80R 这四种 F80 变体,采用天然 PAGE、分子筛层析、离子交换行为、固有蛋白荧光、酶动力学和有限蛋白水解法,每种方法均作为 [Phe] 的函数。与 WT rPAH 相似,F80A 和 F80D 显示出 Phe 的变构激活,而 F80L 和 F80R 则为组成型激活。所有变体的最大活性表明解除了限速构象变化的限制。WT rPAH(无 Phe)的有限蛋白水解揭示了在 4 螺旋束内易于切割,该 4 螺旋束在 RS-PAH 四聚体界面中被掩埋,反映了该四聚体的动态解离。该切割在 F80 变体中未见,所有变体在 RS-PAH 到 A-PAH 交换过程中重新定位的连接子中均显示出蛋白水解过度敏感。通过添加 Phe 可纠正过度敏感,使所有变体变得与 WT rPAH 相似,并达到 A-PAH 构象。因此,对 Phe80 的操作会干扰 PAH 采样的构象空间,增加 RS-PAH 和 A-PAH 交换过程中路径中间产物的采样。F80 变体的行为模拟了与疾病相关的 R68S,并且为 PKU 相关的人类 PAH 变体的蛋白水解敏感性提供了分子基础。

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The Genetic Landscape and Epidemiology of Phenylketonuria.苯丙酮尿症的遗传景观和流行病学。
Am J Hum Genet. 2020 Aug 6;107(2):234-250. doi: 10.1016/j.ajhg.2020.06.006. Epub 2020 Jul 14.
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