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首页> 外文期刊>Journal of Molecular Biology >Mechanistic Insights into Dimethylsulfoniopropionate Lyase DddY, a New Member of the Cupin Superfamily
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Mechanistic Insights into Dimethylsulfoniopropionate Lyase DddY, a New Member of the Cupin Superfamily

机译:机械洞察二甲基磺基丙酸盐酶DDDY,柴油超家族的新成员

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摘要

Abstract The marine osmolyte dimethylsulfoniopropionate (DMSP) is one of Earth's most abundant organosulfur molecules. Bacterial DMSP lyases cleave DMSP, producing acrylate and dimethyl sulfide (DMS), a climate-active gas with roles in global sulfur cycling and atmospheric chemistry. DddY is the only known periplasmic DMSP lyase and is present in β-, γ-, δ- and ε-proteobacteria. Unlike other known DMSP lyases, DddY has not been classified into a protein superfamily, and its structure and catalytic mechanism are unknown. Here, we determined the crystal structure of DddY from the γ-proteobacterium Acinetobacter bereziniae originally isolated from human clinical specimens. This structure revealed that DddY contains a cap domain and a catalytic domain with a Zn 2+ bound at its active site. We also observed that the DddY catalytic domain adopts a typical β-barrel fold and contains two conserved cupin motifs. Therefore, we concluded that DddY should belong to the cupin superfamily. Using structural and mutational analyses, we identified key residues involved in Zn 2+ coordination, DMSP binding and the catalysis of DMSP cleavage, enabling elucidation of the catalytic mechanism, in which the residue Tyr271 of DddY acts as a general base to attack DMSP. Moreover, sequence analysis suggested that this proposed mechanism is common to DddY proteins from β-, γ-, δ- and ε-proteobacteria. The DddY structure and proposed catalytic mechanism provide a better understanding of how DMSP is catabolized to generate the important climate-active gas DMS. Graphical abstract Display Omitted Highlights ? DddY is the only known periplasmic DMSP lyase. ? Crystallographic studies indicate that DddY belongs to the cupin superfamily. ? The catalytic mechanism is proposed based on structural and mutational analyses. ? The proposed mechanism of DddY may have universal significance.
机译:摘要海洋渗透水解二甲基磺基丙酸(DMSP)是地球最丰富的有机素分子之一。细菌DMSP裂解酶切割DMSP,产生丙烯酸酯和二甲基硫醚(DMS),气候活性气体,具有全球硫循环和大气化学的作用。 DDDY是唯一已知的周质DMSP裂解酶,存在于β-,γ-,δ-和ε-植物中。与其他已知的DMSP裂解酶不同,DDDY未被分类为蛋白质超家族,其结构和催化机制未知。这里,我们确定最初从人类临床标本中分离的γ-蛋白聚乙杆菌β-植物聚集杆菌Bereziniae的DDDY的晶体结构。该结构揭示DDDY含有帽结构帽和催化结构域,其在其活性位点上结合Zn 2+。我们还观察到DDDY催化结构域采用典型的β-桶折叠并含有两个保守的柴油基序。因此,我们得出结论,DDDY应该属于超级家族。使用结构和突变分析,我们确定了Zn 2+协调的关键残留物,DMSP结合和DMSP切割的催化,使得催化机制阐明,其中DDDY的残基Tyr271作为攻击DMSP的一般碱。此外,序列分析表明,该提出的机制是来自β-,γ-,δ-和ε-植物的DDDY蛋白常见的。 DDDY结构和所提出的催化机制可以更好地理解DMSP如何分解代谢以产生重要的气候活性气体DMS。图形抽象显示省略了亮点? DDDY是唯一已知的周质DMSP裂解酶。还是晶体研究表明,DDDY属于超级家族。还是提出了基于结构和突变分析的催化机制。还是拟议的DDDY机制可能具有普遍意义。

著录项

  • 来源
    《Journal of Molecular Biology》 |2017年第24期|共13页
  • 作者单位

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

    School of Biological Sciences University of East Anglia;

    Marine Biotechnology Research Center State Key Laboratory of Microbial Technology College of life;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 分子生物学;
  • 关键词

    DMSP; DMSP lyase DddY; DMS generation; cupin superfamily; catalytic mechanism;

    机译:DMSP;DMSP Lyase DDDY;DMS生成;柴蛋白超家族;催化机制;

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