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在化疗代谢物吉西他滨-5'-三磷酸存在下形成的细菌 CTP 合酶丝的生物物理分析。

Biophysical Analysis of Bacterial CTP Synthase Filaments Formed in the Presence of the Chemotherapeutic Metabolite Gemcitabine-5'-triphosphate.

机构信息

Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, NS B3H 4R2, Canada.

Department of Biochemistry and Molecular Biology, Dalhousie University, Halifax, NS B3H 4R2, Canada; Department of Chemistry, Dalhousie University, Halifax, NS B3H 4R2, Canada.

出版信息

J Mol Biol. 2018 Apr 13;430(8):1201-1217. doi: 10.1016/j.jmb.2018.02.019. Epub 2018 Mar 1.

Abstract

While enzyme activity is often regulated by a combination of substrate/effector availability and quaternary structure, many cytosolic enzymes may be further regulated through oligomerization into filaments. Cytidine-5'-triphosphate (CTP) synthase (CTPS) forms such filaments-a process that is promoted by the product CTP. The CTP analog and active chemotherapeutic metabolite gemcitabine-5'-triphosphate (dF-dCTP) is a potent inhibitor of CTPS; however, its effect on the enzyme's ability to form filaments is unknown. Alongside electron microscopy studies, dynamic light scattering showed that dF-dCTP induces Escherichia coli CTPS (EcCTPS) to form filaments in solution with lengths ≥30 nm in the presence of CTP or dF-dCTP. The substrate UTP blocks formation of filaments and effects their disassembly. EcCTPS variants were constructed to investigate the role of CTP-binding determinants in CTP- and dF-dCTP-dependent filament formation. Substitution of Glu 149 (i.e., E149D), which interacts with the ribose of CTP, caused reduced affinity for both CTP and dF-dCTP, and obviated filament formation. Phe 227 appears to interact with CTP through an edge-on interaction with the cytosine ring, yet the F227A and F227L variants bound CTP and dF-dCTP. F227A EcCTPS did not form filaments, while F227L EcCTPS formed shorter filaments in the presence of CTP or dF-dCTP. Hence, Phe 227 plays a role in filament formation, although replacement by a bulky hydrophobic amino acid is sufficient for limited filament formation. That dF-dCTP can induce filament formation highlights the fact that nucleotide analogs employed as chemotherapeutic agents may affect the filamentous states of enzymes and potentially alter their regulation in vivo.

摘要

虽然酶的活性通常受到底物/效应物的可用性和四级结构的调节,但许多细胞质酶可能通过聚合形成纤维进一步调节。胞苷-5'-三磷酸(CTP)合酶(CTPS)形成这样的纤维-这一过程由产物 CTP 促进。CTP 类似物和活性化疗代谢物吉西他滨-5'-三磷酸(dF-dCTP)是 CTPS 的有效抑制剂;然而,其对酶形成纤维的能力的影响尚不清楚。除了电子显微镜研究外,动态光散射表明,dF-dCTP 在存在 CTP 或 dF-dCTP 的情况下诱导大肠埃希菌 CTPS(EcCTPS)在溶液中形成长度≥30nm 的纤维。底物 UTP 阻止纤维的形成并影响其组装。构建 EcCTPS 变体以研究 CTP 结合决定因素在 CTP 和 dF-dCTP 依赖性纤维形成中的作用。取代与 CTP 的核糖相互作用的谷氨酸 149(即 E149D)会导致对 CTP 和 dF-dCTP 的亲和力降低,并避免纤维形成。苯丙氨酸 227 似乎通过与胞嘧啶环的边缘相互作用与 CTP 相互作用,但 F227A 和 F227L 变体结合 CTP 和 dF-dCTP。F227A EcCTPS 不形成纤维,而 F227L EcCTPS 在存在 CTP 或 dF-dCTP 时形成较短的纤维。因此,苯丙氨酸 227 在纤维形成中起作用,尽管用大的疏水性氨基酸取代足以形成有限的纤维。dF-dCTP 可以诱导纤维形成,这突出表明用作化疗药物的核苷酸类似物可能影响酶的纤维状态,并可能改变它们在体内的调节。

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