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本文引用的文献

1
Plastid-associated porphobilinogen synthase from Toxoplasma gondii: kinetic and structural properties validate therapeutic potential.刚地弓形虫质体相关卟胆原合酶:动力学和结构特性验证了其治疗潜力。
J Biol Chem. 2010 Jul 16;285(29):22122-31. doi: 10.1074/jbc.M110.107243. Epub 2010 May 4.
2
MolProbity: all-atom structure validation for macromolecular crystallography.MolProbity:用于大分子晶体学的全原子结构验证
Acta Crystallogr D Biol Crystallogr. 2010 Jan;66(Pt 1):12-21. doi: 10.1107/S0907444909042073. Epub 2009 Dec 21.
3
The role of medical structural genomics in discovering new drugs for infectious diseases.医学结构基因组学在发现传染病新药方面的作用。
PLoS Comput Biol. 2009 Oct;5(10):e1000530. doi: 10.1371/journal.pcbi.1000530. Epub 2009 Oct 26.
4
Structure of the heme biosynthetic Pseudomonas aeruginosa porphobilinogen synthase in complex with the antibiotic alaremycin.与抗生素阿来霉素复合物中假单胞菌血红素生物合成原卟啉原氧化酶的结构。
Antimicrob Agents Chemother. 2010 Jan;54(1):267-72. doi: 10.1128/AAC.00553-09. Epub 2009 Oct 12.
5
Allosteric inhibition of human porphobilinogen synthase.别构抑制人卟胆原合酶。
J Biol Chem. 2009 Dec 18;284(51):35807-17. doi: 10.1074/jbc.M109.026294.
6
Expanding the Concepts in Protein Structure-Function Relationships and Enzyme Kinetics: Teaching using Morpheeins.拓展蛋白质结构-功能关系及酶动力学的概念:使用多形蛋白进行教学
Biochem Mol Biol Educ. 2008;36(4):274-283. doi: 10.1002/bmb.20211.
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Phaser crystallographic software.相位结晶学软件。
J Appl Crystallogr. 2007 Aug 1;40(Pt 4):658-674. doi: 10.1107/S0021889807021206. Epub 2007 Jul 13.
8
Probing the oligomeric assemblies of pea porphobilinogen synthase by analytical ultracentrifugation.通过分析超速离心法探究豌豆胆色素原合酶的寡聚体组装体
Biochemistry. 2008 Oct 7;47(40):10649-56. doi: 10.1021/bi801128d. Epub 2008 Sep 17.
9
Shape shifting leads to small-molecule allosteric drug discovery.构象转变推动小分子变构药物的发现。
Chem Biol. 2008 Jun;15(6):586-96. doi: 10.1016/j.chembiol.2008.04.012.
10
Kinetics and thermodynamics of the interchange of the morpheein forms of human porphobilinogen synthase.人胆色素原合酶的形态互换的动力学和热力学
Biochemistry. 2008 Mar 11;47(10):3245-57. doi: 10.1021/bi702113z. Epub 2008 Feb 14.

刚地弓形虫卟胆原合酶的晶体结构:八聚体结构和卟胆原生成的研究进展。

Crystal structure of Toxoplasma gondii porphobilinogen synthase: insights on octameric structure and porphobilinogen formation.

机构信息

Institute for Cancer Research, Fox Chase Cancer Center, Philadelphia, Pennsylvania 19111, USA.

出版信息

J Biol Chem. 2011 Apr 29;286(17):15298-307. doi: 10.1074/jbc.M111.226225. Epub 2011 Mar 7.

DOI:10.1074/jbc.M111.226225
PMID:21383008
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC3083160/
Abstract

Porphobilinogen synthase (PBGS) is essential for heme biosynthesis, but the enzyme of the protozoan parasite Toxoplasma gondii (TgPBGS) differs from that of its human host in several important respects, including subcellular localization, metal ion dependence, and quaternary structural dynamics. We have solved the crystal structure of TgPBGS, which contains an octamer in the crystallographic asymmetric unit. Crystallized in the presence of substrate, each active site contains one molecule of the product porphobilinogen. Unlike prior structures containing a substrate-derived heterocycle directly bound to an active site zinc ion, the product-bound TgPBGS active site contains neither zinc nor magnesium, placing in question the common notion that all PBGS enzymes require an active site metal ion. Unlike human PBGS, the TgPBGS octamer contains magnesium ions at the intersections between pro-octamer dimers, which are presumed to function in allosteric regulation. TgPBGS includes N- and C-terminal regions that differ considerably from previously solved crystal structures. In particular, the C-terminal extension found in all apicomplexan PBGS enzymes forms an intersubunit β-sheet, stabilizing a pro-octamer dimer and preventing formation of hexamers that can form in human PBGS. The TgPBGS structure suggests strategies for the development of parasite-selective PBGS inhibitors.

摘要

卟啉原合酶(PBGS)是血红素生物合成所必需的,但原虫寄生虫弓形虫(TgPBGS)的酶在几个重要方面与人类宿主的酶不同,包括亚细胞定位、金属离子依赖性和四级结构动力学。我们已经解决了 TgPBGS 的晶体结构,其在晶体学不对称单位中包含一个八聚体。在存在底物的情况下结晶,每个活性位点包含一个产物卟啉原的分子。与先前含有直接与活性位点锌离子结合的底物衍生杂环的结构不同,产物结合的 TgPBGS 活性位点既不含锌也不含镁,这使得人们普遍认为所有 PBGS 酶都需要活性位点金属离子的观点受到质疑。与人类 PBGS 不同,TgPBGS 八聚体在原八聚体二聚体之间的交点处含有镁离子,据推测这些镁离子在别构调节中起作用。TgPBGS 包含 N 端和 C 端区域,与以前解决的晶体结构有很大不同。特别是,所有顶复门原虫 PBGS 酶中发现的 C 端延伸形成了一个亚基间β-折叠,稳定了原八聚体二聚体并防止了可以在人类 PBGS 中形成的六聚体的形成。TgPBGS 的结构为开发寄生虫选择性 PBGS 抑制剂提供了策略。