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一种激进的孢子光产物裂合酶转移途径。

A radical transfer pathway in spore photoproduct lyase.

机构信息

Department of Chemistry and Chemical Biology, Indiana University-Purdue University Indianapolis, Indianapolis, IN 46202, USA.

出版信息

Biochemistry. 2013 May 7;52(18):3041-50. doi: 10.1021/bi3016247. Epub 2013 Apr 22.

Abstract

Spore photoproduct lyase (SPL) repairs a covalent UV-induced thymine dimer, spore photoproduct (SP), in germinating endospores and is responsible for the strong UV resistance of endospores. SPL is a radical S-adenosyl-l-methionine (SAM) enzyme, which uses a 4Fe-4S cluster to reduce SAM, generating a catalytic 5'-deoxyadenosyl radical (5'-dA(•)). This in turn abstracts a H atom from SP, generating an SP radical that undergoes β scission to form a repaired 5'-thymine and a 3'-thymine allylic radical. Recent biochemical and structural data suggest that a conserved cysteine donates a H atom to the thymine radical, resulting in a putative thiyl radical. Here we present structural and biochemical data that suggest that two conserved tyrosines are also critical in enzyme catalysis. One [Y99(Bs) in Bacillus subtilis SPL] is downstream of the cysteine, suggesting that SPL uses a novel hydrogen atom transfer (HAT) pathway with a pair of cysteine and tyrosine residues to regenerate SAM. The other tyrosine [Y97(Bs)] has a structural role to facilitate SAM binding; it may also contribute to the SAM regeneration process by interacting with the putative (•)Y99(Bs) and/or 5'-dA(•) intermediates to lower the energy barrier for the second H abstraction step. Our results indicate that SPL is the first member of the radical SAM superfamily (comprising more than 44000 members) to bear a catalytically operating HAT chain.

摘要

孢子光解酶(SPL)修复了在萌发的芽孢中由紫外线诱导形成的嘧啶二聚体——孢子光产物(SP),这使得芽孢具有很强的抗紫外线能力。SPL 是一种自由基 S-腺苷甲硫氨酸(SAM)酶,它使用一个 4Fe-4S 簇来还原 SAM,产生一个催化的 5'-脱氧腺苷自由基(5'-dA(•))。这反过来从 SP 中提取一个 H 原子,生成一个 SP 自由基,该自由基经历 β 断裂,形成一个修复的 5'-胸腺嘧啶和一个 3'-胸腺嘧啶烯丙基自由基。最近的生化和结构数据表明,一个保守的半胱氨酸向胸腺嘧啶自由基提供一个 H 原子,产生一个假定的硫自由基。在这里,我们提出的结构和生化数据表明,两个保守的酪氨酸在酶催化中也很关键。一个 [枯草芽孢杆菌 SPL 中的 Y99(Bs)]位于半胱氨酸的下游,这表明 SPL 使用一种新颖的氢原子转移(HAT)途径,由一对半胱氨酸和酪氨酸残基来再生 SAM。另一个酪氨酸 [Y97(Bs)]具有结构作用,以促进 SAM 结合;它可能通过与假定的 (•)Y99(Bs) 和/或 5'-dA(•) 中间体相互作用来降低第二个 H 提取步骤的能量障碍,从而有助于 SAM 再生过程。我们的结果表明,SPL 是第一个具有催化作用的 HAT 链的自由基 SAM 超家族(包含超过 44000 个成员)的成员。

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本文引用的文献

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The radical SAM enzyme spore photoproduct lyase employs a tyrosyl radical for DNA repair.
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Hydrogen transfer in SAM-mediated enzymatic radical reactions.
Chemistry. 2012 Dec 14;18(51):16463-72. doi: 10.1002/chem.201202869. Epub 2012 Nov 8.
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Mechanistic studies of the spore photoproduct lyase via a single cysteine mutation.
Biochemistry. 2012 Sep 11;51(36):7173-88. doi: 10.1021/bi3010945. Epub 2012 Aug 31.
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Radical SAM enzymes and radical enzymology.
Biochim Biophys Acta. 2012 Nov;1824(11):1151-3. doi: 10.1016/j.bbapap.2012.07.006. Epub 2012 Jul 22.
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Structural insights into recognition and repair of UV-DNA damage by Spore Photoproduct Lyase, a radical SAM enzyme.
Nucleic Acids Res. 2012 Oct;40(18):9308-18. doi: 10.1093/nar/gks603. Epub 2012 Jul 2.
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Mechanistic studies of the radical SAM enzyme spore photoproduct lyase (SPL).
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Probing the reaction mechanism of spore photoproduct lyase (SPL) via diastereoselectively labeled dinucleotide SP TpT substrates.
J Am Chem Soc. 2011 Jul 13;133(27):10434-47. doi: 10.1021/ja110196d. Epub 2011 Jun 14.

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