Engineering PQQ glucose dehydrogenase with improved substrate specificity site-directed mutagenesis studies on the active center of PQQ glucose dehydrogenase

被引:57
|
作者
Igarashi, S
Hirokawa, T
Sode, K
机构
[1] Tokyo Univ Agr & Technol, Fac Technol, Dept Biotechnol, Koganei, Tokyo 1848588, Japan
[2] AIST, Computat Biol Res Ctr, Koto Ku, Tokyo 1350064, Japan
来源
BIOMOLECULAR ENGINEERING | 2004年 / 21卷 / 02期
关键词
pyrroloquinoline quinone (PQQ); glucose dehydrogenase (GDH); substrate specificity; protein engineering;
D O I
10.1016/j.bioeng.2003.12.001
中图分类号
Q5 [生物化学];
学科分类号
071010 ; 081704 ;
摘要
Site-directed mutagenesis was carried out on the active site of water-soluble PQQ glucose dehydrogenase (PQQGDH-B) to improve its Substrate specificity. Amino acid substitution of His168 resulted in a drastic decrease in the enzyme's catalytic activity. consistent with its Putative catalytic role. Substitutions were also carried out in neighboring residues, Lys166, Asp167, and Gln169, in an attempt to alter the enzyme's Substrate binding site. Lys166 and Gln169 Mutants showed only minor changes in Substrate specificity profiles. In sharp contrast, Mutants of Asp167 showed considerably altered specificity profiles. Of the numerous Asp167 mutants characterized, Asp167Glu showed the best Substrate specificity profile, while retaining most of its catalytic activity for glucose and stability. We also investigated the cumulative effect of combining the Asp167Glu substitution with the previously reported Asn452Thr mutation. Interpretation of the effect of the replacement of Asp167 to Glu on the alteration of substrate specificity in relation with the predicted 3D model of PQQGDH-B is also discussed. (C) 2004 Elsevier B.V. All rights reserved.
引用
收藏
页码:81 / 88
页数:8
相关论文
共 50 条
  • [22] Analysis of acidic surface of Haloferax mediterranei glucose dehydrogenase by site-directed mutagenesis
    Esclapez, J.
    Pire, C.
    Bautista, V.
    Martinez-Espinosa, R. M.
    Ferrer, J.
    Bonete, M. J.
    FEBS LETTERS, 2007, 581 (05) : 837 - 842
  • [23] Site-directed mutagenesis of active site residues of phosphite dehydrogenase
    Woodyer, R
    Wheatley, JL
    Relyea, HA
    Rimkus, S
    van der Donk, WA
    BIOCHEMISTRY, 2005, 44 (12) : 4765 - 4774
  • [24] Altering the substrate specificity of glutamate dehydrogenase from Bacillus subtilis by site-directed mutagenesis
    Khan, MIH
    Kim, H
    Ashida, H
    Ishikawa, T
    Shibata, H
    Sawa, Y
    BIOSCIENCE BIOTECHNOLOGY AND BIOCHEMISTRY, 2005, 69 (09) : 1802 - 1805
  • [25] Modification of the substrate specificity of leucine dehydrogenase by site-directed mutagenesis based on biocomputing strategies
    Lu, Jiapeng
    Wang, Zengyu
    Jiang, Yingying
    Sun, Zhoutong
    Luo, Wei
    SYSTEMS MICROBIOLOGY AND BIOMANUFACTURING, 2023, 3 (02): : 384 - 392
  • [26] Bioelectrochemical sensor based on PQQ-dependent glucose dehydrogenase
    Malinauskas, A
    Kuzmarskyte, J
    Meskys, R
    Ramanavicius, A
    SENSORS AND ACTUATORS B-CHEMICAL, 2004, 100 (03): : 387 - 394
  • [27] FUNCTIONAL ANALYSIS OF THERMOSTABLE PQQ-DEPENDENT GLUCOSE DEHYDROGENASE
    Mikawa, Tsutomu
    Kagawa, Ako
    Kitaura, Kayo
    Kigawa, Takanori
    PROTEIN SCIENCE, 2019, 28 : 34 - 35
  • [28] Evaluation of Glucose Dehydrogenase and Pyrroloquinoline Quinine (pqq) Mutagenesis that Renders Functional Inadequacies in Host Plants
    Naveed, Muhammad
    Sohail, Younas
    Khalid, Nauman
    Ahmed, Iftikhar
    Mumtaz, Abdul Samad
    JOURNAL OF MICROBIOLOGY AND BIOTECHNOLOGY, 2015, 25 (08) : 1349 - 1360
  • [29] Engineered PQQ glucose dehydrogenase based enzyme sensor for continuous glucose monitoring
    Okuda, J
    Wakai, J
    Igarashi, S
    Sode, K
    ANALYTICAL LETTERS, 2004, 37 (09) : 1847 - 1857
  • [30] Oxygen insensitive glucose biosensor based on PQQ-dependent glucose dehydrogenase
    Laurinavicius, V
    Kurtinaitiene, B
    Liauksminas, V
    Ramanavicius, A
    Meskys, R
    Rudomanskis, R
    Skotheim, T
    Boguslavsky, L
    ANALYTICAL LETTERS, 1999, 32 (02) : 299 - 316