首页> 外文期刊>Biochemistry >Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing D-Xylono-1,4-lactone-5-phosphate and L-Arabino-1,4-lactone-5-phosphate
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Functional Annotation and Structural Characterization of a Novel Lactonase Hydrolyzing D-Xylono-1,4-lactone-5-phosphate and L-Arabino-1,4-lactone-5-phosphate

机译:新型乳酰酶水解D-二甲苯-1,4-内酯-5-磷酸酯和L-亚马骨-1,4-内酯-5-磷酸酯的功能注释和结构表征

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摘要

A novel lactonase from Mycoplasma synoviae 53 (MS53_0025) and Mycoplasma agalactiae PG2 (MAG_6390) was characterized by protein structure determination, molecular docking, gene context analysis, and library screening. The crystal structure of MS53_0025 was determined to a resolution of 2.06 ?. This protein adopts a typical amidohydrolase (β/α)_8-fold and contains a binuclear zinc center located at the C-terminal end of the β-barrel. A phosphate molecule was bound in the active site and hydrogen bonds to Lys217, Lys244, Tyr245, Arg275, and Tyr278. Both docking and gene context analysis were used to narrow the theoretical substrate profile of the enzyme, thus directing empirical screening to identify that MS53_0025 and MAG_6390 catalyze the hydrolysis of D-xylono-1,4-lactone-5-phosphate (2) with k_(cat)/K_m values of 4.7 × 10~4 and 5.7 × 10~4 M~(-1) s~(-1) and L-arabino-1,4-lactone-5-phosphate (7) with k_(cat)/K_m values of 1.3 × 10~4 and 2.2 × 10~4 M~(-1) s~(-1), respectively. The identification of the substrate profile of these two phospho-furanose lactonases emerged only when all methods were integrated and therefore provides a blueprint for future substrate identification of highly related amidohydrolase superfamily members.
机译:通过蛋白质结构测定,分子对接,基因上下文分析和图书馆筛查,特征来自支原体高温胶质剂53(MS53_0025)和支原体Aβ1A1(MAG_6390)的新型乳酸酶。 MS53_0025的晶体结构被确定为2.06的分辨率?。该蛋白质采用典型的酰胺水(β/α)_8倍,并含有位于β-筒的C末端端部的Binuclear锌中心。将磷酸盐分子与Lys217,Lys244,Tyr245,Arg275和Tyr278结合在活性位点和氢键中。对接和基因上下文分析用于缩小酶的理论基质分布,从而指导经验筛选以鉴定MS53_0025和MAG_6390催化D- Xylon-1,4-内酯-5-磷酸酯(2)的水解(猫)/ k_m值4.7×10〜4和5.7×10〜4 m〜(-1)s〜(-1)和l- ara armino-1,4-内酯-5-磷酸盐(7),k_( CAT)/ k_m值为1.3×10〜4和2.2×10〜4 m〜(-1)s〜(-1)。仅在整合所有方法并且因此为未来基质鉴定的蓝图提供高度相关的酰胺水解酶超家族成员时,才出现了这两个磷酸呋喃糖内乳糖酶的底物谱的鉴定。

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  • 来源
    《Biochemistry》 |2014年第28期|共12页
  • 作者单位

    Department of Pharmaceutical Chemistry University of California San Francisco 1700 Fourth Street San Francisco California 94158-2330 United States;

    Department of Chemistry Texas A&

    M University College Station Texas 77843 United States;

    Biosciences Department Brookhaven National Laboratory P.O. Box 5000 Upton New York 11973-5000 United States;

    Department of Chemistry Texas A&

    M University College Station Texas 77843 United States;

    Department of Chemistry Texas A&

    M University College Station Texas 77843 United States;

    Department of Chemistry Texas A&

    M University College Station Texas 77843 United States;

    Department of Chemistry Texas A&

    M University College Station Texas 77843 United States;

    Lilly Biotechnology Center 10300 Campus Point Drive San Diego California 92121 United States;

    Department of Pharmaceutical Chemistry University of California San Francisco 1700 Fourth Street San Francisco California 94158-2330 United States;

    Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 United States;

    Lilly Biotechnology Center 10300 Campus Point Drive San Diego California 92121 United States;

    Center for Integrative Proteomics Research Department of Chemistry and Chemical Biology Rutgers Cancer Institute of New Jersey Rutgers the State University of New Jersey 174 Frelinghuysen Road Piscataway New Jersey 08854 United States;

    Albert Einstein College of Medicine 1300 Morris Park Avenue Bronx New York 10461 United States;

    Biosciences Department Brookhaven National Laboratory P.O. Box 5000 Upton New York 11973-5000 United States;

    Department of Pharmaceutical Chemistry University of California San Francisco 1700 Fourth Street San Francisco California 94158-2330 United States;

    Department of Chemistry Texas A&

    M University College Station Texas 77843 United States;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 生物化学;
  • 关键词

    Functional; Annotation; Structural;

    机译:功能;注释;结构;

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