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参与枯草芽孢杆菌肽抗生素枯草菌素生物合成的羊毛硫氨酸环化酶SpaC的结构-功能关系

Structure-function relationships of the lanthionine cyclase SpaC involved in biosynthesis of the Bacillus subtilis peptide antibiotic subtilin.

作者信息

Helfrich Markus, Entian Karl-Dieter, Stein Torsten

机构信息

Institut für Molekulare Biowissenschaften, Johann Wolfgang Goethe-Universität, Max von Laue Strasse 9, 60438 Frankfurt am Main, Germany.

出版信息

Biochemistry. 2007 Mar 20;46(11):3224-33. doi: 10.1021/bi062124f. Epub 2007 Feb 17.

Abstract

Biosynthesis of the lantibiotic subtilin in Bacillus subtilis is accomplished by a synthetase complex consisting of the dehydratase SpaB, cyclase SpaC, and transporter SpaT. Genetically engineered subtilin cyclases SpaC and related NisC and EriC proteins involved in biosynthesis of the lantibiotics nisin and ericin A/S, respectively, were analyzed to functionally substitute native SpaC in vivo. We could show for the first time posttranslational modification of a lantibiotic precursor peptide (subtilin) by a hybrid lantibiotic synthetase (SpaBT/EriC). Genetically engineered SpaC alanine replacement mutants revealed the essentiality of residues His231, Trp302, Cys303, Tyr304, Gly305, Cys349, and His350, as well as the conserved C-terminal motif Lys437-Ala438-Leu439-Leu440-Ile441 for subtilin biosynthesis. Assignment of these strictly conserved lantibiotic cyclase residues to the NisC structure [Li, B., Yu, J. B., Brunzelle, J. S., Moll, G. N., van der Donk, W. A., and Nair, S. K. (2006) Science, 311, 1464-1467] revealed the first experimental evidence for structure-function relationships in catalytic centers of lantibiotic cyclases. SpaC residues His231, Cys303, and Cys349 are involved in coordination of the central zinc ion. The pair His231/Tyr304 is discussed to act as general acid/base catalysts in lanthionine formation. Furthermore, pull-down experiments revealed that functional inactive SpaC mutants were still able to interact with the hexahistidine-tagged subtilin precursor peptide in vitro. Our results suggest that Trp302 and the C-terminal residues of SpaC are constituents of a hydrophobic cluster which is involved in stabilization of the catalytic center and binding of the subtilin precursor peptide.

摘要

枯草芽孢杆菌中羊毛硫抗生素枯草菌素的生物合成是由一个合成酶复合体完成的,该复合体由脱水酶SpaB、环化酶SpaC和转运蛋白SpaT组成。对参与羊毛硫抗生素乳链菌肽和埃里菌素A/S生物合成的基因工程改造的枯草菌素环化酶SpaC以及相关的NisC和EriC蛋白进行了分析,以在体内功能替代天然的SpaC。我们首次证明了杂合羊毛硫抗生素合成酶(SpaBT/EriC)对羊毛硫抗生素前体肽(枯草菌素)的翻译后修饰。基因工程改造的SpaC丙氨酸替代突变体揭示了His231、Trp302、Cys303、Tyr304、Gly305、Cys349和His350残基以及保守的C端基序Lys437-Ala438-Leu439-Leu440-Ile441对于枯草菌素生物合成的必要性。将这些严格保守的羊毛硫抗生素环化酶残基与NisC结构[Li, B., Yu, J. B., Brunzelle, J. S., Moll, G. N., van der Donk, W. A., and Nair, S. K. (2006) Science, 311, 1464 - 1467]进行比对,揭示了羊毛硫抗生素环化酶催化中心结构 - 功能关系的首个实验证据。SpaC残基His231、Cys303和Cys349参与中心锌离子的配位。His231/Tyr304这一对残基被认为在羊毛硫氨酸形成过程中作为一般酸碱催化剂起作用。此外,下拉实验表明功能失活的SpaC突变体在体外仍能够与六组氨酸标签的枯草菌素前体肽相互作用。我们的结果表明,Trp302和SpaC的C端残基是一个疏水簇的组成部分,该疏水簇参与催化中心的稳定以及枯草菌素前体肽的结合。

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