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1
Mechanistic investigations of the pseudouridine synthase RluA using RNA containing 5-fluorouridine.使用含有5-氟尿苷的RNA对假尿苷合酶RluA进行的机制研究。
Biochemistry. 2006 Oct 3;45(39):12029-38. doi: 10.1021/bi061293x.
2
The handling of the mechanistic probe 5-fluorouridine by the pseudouridine synthase TruA and its consistency with the handling of the same probe by the pseudouridine synthases TruB and RluA.假尿嘧啶核苷合成酶 TruA 对 5-氟尿嘧啶核苷的作用机制探针的处理及其与假尿嘧啶核苷合成酶 TruB 和 RluA 对相同探针的处理的一致性。
Biochemistry. 2011 Jan 25;50(3):426-36. doi: 10.1021/bi101737z. Epub 2010 Dec 29.
3
The pseudouridine synthases: revisiting a mechanism that seemed settled.假尿苷合酶:重新审视一个看似已确定的机制。
J Am Chem Soc. 2004 Oct 13;126(40):12758-9. doi: 10.1021/ja046375s.
4
Not all pseudouridine synthases are potently inhibited by RNA containing 5-fluorouridine.并非所有假尿苷合酶都能被含有5-氟尿苷的RNA有效抑制。
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5
Unexpected linear ion trap collision-induced dissociation and Fourier transform ion cyclotron resonance infrared multi-photon dissociation fragmentation of a hydrated C-glycoside of 5-fluorouridine formed by the action of the pseudouridine synthases RluA and TruB.出乎意料的线性离子阱碰撞诱导解离和傅里叶变换离子回旋共振红外多光子解离碎裂的由假尿嘧啶核苷合成酶 RluA 和 TruB 作用形成的 5-氟尿嘧啶核苷的 C-糖苷水合物。
Rapid Commun Mass Spectrom. 2011 Sep 30;25(18):2627-32. doi: 10.1002/rcm.5162.
6
Crystal structure of pseudouridine synthase RluA: indirect sequence readout through protein-induced RNA structure.假尿苷合酶RluA的晶体结构:通过蛋白质诱导的RNA结构进行间接序列识别
Mol Cell. 2006 Nov 17;24(4):535-45. doi: 10.1016/j.molcel.2006.09.017.
7
Crystal structure of the catalytic domain of RluD, the only rRNA pseudouridine synthase required for normal growth of Escherichia coli.RluD催化结构域的晶体结构,RluD是大肠杆菌正常生长所需的唯一rRNA假尿嘧啶合酶。
RNA. 2004 Feb;10(2):231-9. doi: 10.1261/rna.5187404.
8
Enzymatic characterization and mutational studies of TruD--the fifth family of pseudouridine synthases.TruD(假尿苷合酶的第五个家族)的酶学特性及突变研究
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9
Pseudouridine in RNA: what, where, how, and why.RNA中的假尿苷:是什么、在哪里、如何以及为何存在。
IUBMB Life. 2000 May;49(5):341-51. doi: 10.1080/152165400410182.
10
Role of cysteine residues in pseudouridine synthases of different families.半胱氨酸残基在不同家族假尿苷合成酶中的作用。
Biochemistry. 1999 Oct 5;38(40):13106-11. doi: 10.1021/bi9913911.

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8
Unexpected linear ion trap collision-induced dissociation and Fourier transform ion cyclotron resonance infrared multi-photon dissociation fragmentation of a hydrated C-glycoside of 5-fluorouridine formed by the action of the pseudouridine synthases RluA and TruB.出乎意料的线性离子阱碰撞诱导解离和傅里叶变换离子回旋共振红外多光子解离碎裂的由假尿嘧啶核苷合成酶 RluA 和 TruB 作用形成的 5-氟尿嘧啶核苷的 C-糖苷水合物。
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9
The products of 5-fluorouridine by the action of the pseudouridine synthase TruB disfavor one mechanism and suggest another.5-氟尿苷经假尿嘧啶核苷合成酶 TruB 作用的产物不支持一种机制,而提示另一种机制。
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10
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本文引用的文献

1
Dissecting the roles of a strictly conserved tyrosine in substrate recognition and catalysis by pseudouridine 55 synthase.剖析假尿苷55合酶中一个严格保守的酪氨酸在底物识别和催化中的作用。
Biochemistry. 2005 Nov 29;44(47):15488-94. doi: 10.1021/bi050961w.
2
Precursor complex structure of pseudouridine synthase TruB suggests coupling of active site perturbations to an RNA-sequestering peripheral protein domain.假尿苷合酶TruB的前体复合物结构表明活性位点扰动与RNA隔离外周蛋白结构域的偶联。
Protein Sci. 2005 Aug;14(8):2201-6. doi: 10.1110/ps.051493605. Epub 2005 Jun 29.
3
The roles of the essential Asp-48 and highly conserved His-43 elucidated by the pH dependence of the pseudouridine synthase TruB.通过假尿苷合酶TruB的pH依赖性阐明了必需的天冬氨酸-48和高度保守的组氨酸-43的作用。
Arch Biochem Biophys. 2005 Jan 1;433(1):322-34. doi: 10.1016/j.abb.2004.09.009.
4
The pseudouridine synthases: revisiting a mechanism that seemed settled.假尿苷合酶:重新审视一个看似已确定的机制。
J Am Chem Soc. 2004 Oct 13;126(40):12758-9. doi: 10.1021/ja046375s.
5
Crystal structure of the highly divergent pseudouridine synthase TruD reveals a circular permutation of a conserved fold.高度分化的假尿苷合酶TruD的晶体结构揭示了一种保守折叠的环状排列。
RNA. 2004 Jul;10(7):1026-33. doi: 10.1261/rna.7240504.
6
X-ray structure of tRNA pseudouridine synthase TruD reveals an inserted domain with a novel fold.转运RNA假尿苷合酶TruD的X射线结构揭示了一个具有新型折叠的插入结构域。
FEBS Lett. 2004 May 7;565(1-3):59-64. doi: 10.1016/j.febslet.2004.03.085.
7
Crystal structures of the catalytic domains of pseudouridine synthases RluC and RluD from Escherichia coli.来自大肠杆菌的假尿苷合酶RluC和RluD催化结构域的晶体结构。
Biochemistry. 2004 Apr 20;43(15):4454-63. doi: 10.1021/bi036079c.
8
Crystal structure of the apo forms of psi 55 tRNA pseudouridine synthase from Mycobacterium tuberculosis: a hinge at the base of the catalytic cleft.结核分枝杆菌psi 55 tRNA假尿苷合酶脱辅基形式的晶体结构:催化裂隙底部的一个铰链区
J Biol Chem. 2004 Jun 4;279(23):24585-91. doi: 10.1074/jbc.M401045200. Epub 2004 Mar 17.
9
Crystal structure of TruD, a novel pseudouridine synthase with a new protein fold.
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10
Conformational change of pseudouridine 55 synthase upon its association with RNA substrate.假尿苷55合酶与RNA底物结合后的构象变化。
Nucleic Acids Res. 2004 Feb 27;32(4):1422-9. doi: 10.1093/nar/gkh287. Print 2004.

使用含有5-氟尿苷的RNA对假尿苷合酶RluA进行的机制研究。

Mechanistic investigations of the pseudouridine synthase RluA using RNA containing 5-fluorouridine.

作者信息

Hamilton Christopher S, Greco Todd M, Vizthum Caroline A, Ginter Joy M, Johnston Murray V, Mueller Eugene G

机构信息

Department of Chemistry and Biochemistry, University of Delaware, Newark, Delaware 19716, USA.

出版信息

Biochemistry. 2006 Oct 3;45(39):12029-38. doi: 10.1021/bi061293x.

DOI:10.1021/bi061293x
PMID:17002302
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC2580076/
Abstract

The pseuoduridine synthases (psi synthases) isomerize uridine (U) to pseudouridine (psi) in RNA, and they fall into five families that share very limited sequence similarity but have the same overall fold and active-site architecture, including an essential Asp. The mechanism by which the psi synthases operate remains unknown, and mechanistic work has largely made use of RNA containing 5-fluorouridine (f5U) in place of U. The psi synthase TruA forms a covalent adduct with such RNA, and heat disruption of the adduct generates a hydrated product of f5U, which was reasonably concluded to result from the hydrolysis of an ester linkage between the essential Asp and f5U. In contrast, the psi synthase TruB, which is a member of a different family, does not form an adduct with f5U in RNA but catalyzes the rearrangement and hydration of the f5U, which labeling studies with [18O]water showed does not result from ester hydrolysis. To extend the line of mechanistic investigation to another family of psi synthases and an enzyme that makes an adduct with f5U in RNA, the behavior of RluA toward RNA containing f5U was examined. Stem-loop RNAs are shown to be good substrates for RluA. Heat denaturation of the adduct between RluA and RNA containing f5U produces a hydrated nucleoside product, and labeling studies show that hydration does not occur by ester hydrolysis. These results are interpreted in light of a consistent mechanistic scheme for the handling of f5U by psi synthases.

摘要

假尿苷合酶(ψ合酶)可将RNA中的尿苷(U)异构化为假尿苷(ψ),它们分为五个家族,这些家族的序列相似性非常有限,但具有相同的整体折叠结构和活性位点结构,包括一个必需的天冬氨酸。ψ合酶的作用机制尚不清楚,机理研究主要利用含有5-氟尿苷(f5U)的RNA代替U。ψ合酶TruA与这种RNA形成共价加合物,加合物的热破坏产生f5U的水合产物,合理推测这是由必需天冬氨酸与f5U之间的酯键水解所致。相比之下,属于不同家族的ψ合酶TruB不会与RNA中的f5U形成加合物,但能催化f5U的重排和水合作用,用[18O]水进行的标记研究表明这并非酯水解的结果。为了将机理研究扩展到另一类ψ合酶以及一种能与RNA中的f5U形成加合物的酶,研究了RluA对含有f5U的RNA的作用。茎环RNA被证明是RluA的良好底物。RluA与含有f5U的RNA之间加合物的热变性产生一种水合核苷产物,标记研究表明水合作用不是通过酯水解发生的。根据ψ合酶处理f5U的一致机理方案对这些结果进行了解释。