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首页> 外文期刊>International Journal of Biological Macromolecules: Structure, Function and Interactions >Kinetic characterization and structural modeling of an NAD plus -dependent succinic semialdehyde dehydrogenase from Anabaena sp PCC7120
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Kinetic characterization and structural modeling of an NAD plus -dependent succinic semialdehyde dehydrogenase from Anabaena sp PCC7120

机译:NAD加依赖性琥珀酸型半醛脱氢酶的动力学特征及结构建模,Anabaena SPCCC7120

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Succinic semialdehyde dehydrogenases (SSADH) of cyanobacteria played a pivotal role in completing the cyanobacterial tricarboxylic acid cycle. The structural information of cofactor preference and catalysis for SSADH from cyanobacteria is currently available. However, the detailed kinetics of SSADH from cyanobacteria were not characterized yet. In this study, an all3556 gene encoding SSADH from Anabaena sp. PCC7120 (ApSSADH) was amplified and the recombinant ApSSADH was purified homogenously. Kinetic analysis showed that ApSSADH was an NADP(+)-dependent SSADH, which utilized NADP(+) and succinic semialdehyde (SSA) as its preferred substrates and the activity of ApSSADH was inhibited by its substrate of SSA. At the same time, the Ser157 residue was found to function as the determinant of cofactor preference. Further study demonstrated that activity and substrate inhibition of ApSSADH would be greatly reduced by the mutation of the residues at the active site. Bioinformatic analysis indicated that those residues were highly conserved throughout the SSADHs. To our knowledge this is the first report exploring the detailed kinetics of SSADH from cyanobacteria. (C) 2017 Elsevier B.V. All rights reserved.
机译:Cyanobacteria的琥珀酸半醛脱氢酶(SSADH)在完成蓝藻三羧酸循环时发挥了枢转作用。目前可获得来自蓝藻的Cofactor偏好和催化SsAdh的结构信息。然而,来自Cyanobacteria的Ssadh的详细动力学并未表征。在本研究中,从Anabaena SP编码SSADH的全ALL3556基因。扩增PCC7120(APSSADH)并均匀纯化重组APSSADH。动力学分析表明,APSADH是一种NADP(+)依赖性SSADH,其利用NADP(+)和琥珀酸半醛(SSA)作为其优选的底物,并且通过其SSA的基材抑制APSADH的活性。同时,发现Ser157残基作为辅因子偏好的决定因素。进一步的研究证明,通过活性位点的残基突变将大大降低APSSADH的活性和底物抑制。生物信息分析表明,这些残留物在整个SSADH中受到高度保守。据我们所知,这是探索来自Cyanobacteria的Ssadh详细动力学的第一份报告。 (c)2017年Elsevier B.V.保留所有权利。

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