Molecular Basis of Substrate Recognition of Endonuclease Q from the Euryarchaeon Pyrococcus furiosus

被引:10
|
作者
Shiraishi, Miyako [1 ]
Iwai, Shigenori [1 ]
机构
[1] Osaka Univ, Grad Sch Engn Sci, Dept Mat Engn Sci, Toyonaka, Osaka, Japan
关键词
DNA repair; endonuclease Q; archaea; Pyrococcus furiosus; Bacillus subtilis; endonuclease; URACIL-DNA GLYCOSYLASE; EXCISION-REPAIR; HYPERTHERMOPHILIC ARCHAEON; DEOXYRIBONUCLEIC-ACID; CHEMICAL-SYNTHESIS; CRYSTAL-STRUCTURE; BUILDING-BLOCK; THYMINE GLYCOL; IDENTIFICATION; CYTOSINE;
D O I
10.1128/JB.00542-19
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
Endonuclease Q (EndoQ), a DNA repair endonuclease, was originally identified in the hyperthermophilic euryarchaeon Pyrococcus furiosus in 2015. EndoQ initiates DNA repair by generating a nick on DNA strands containing deaminated bases and an abasic site. Although EndoQ is thought to be important for maintaining genome integrity in certain bacteria and archaea, the underlying mechanism catalyzed by EndoQ remains unclear. Here, we provide insights into the molecular basis of substrate recognition by EndoQ from P. furiosus (PfuEndoQ) using biochemical approaches. Our results of the substrate specificity range and the kinetic properties of PfuEndoQ demonstrate that PfuEndoQ prefers the imide structure in nucleobases along with the discovery of its cleavage activity toward 5,6-dihydrouracil, 5-hydroxyuracil, 5-hydroxycytosine, and uridine in DNA. The combined results for EndoQ substrate binding and cleavage activity analyses indicated that PfuEndoQ flips the target base from the DNA duplex, and the cleavage activity is highly dependent on spontaneous base flipping of the target base. Furthermore, we find that PfuEndoQ has a relatively relaxed substrate specificity; therefore, the role of EndoQ in restriction modification systems was explored. The activity of the EndoQ homolog from Bacillus subtilis was found not to be inhibited by the uracil glycosylase inhibitor from B. subtilis bacteriophage PBS1, whose genome is completely replaced by uracil instead of thymine. Our findings suggest that EndoQ not only has additional functions in DNA repair but also could act as an antiviral enzyme in organisms with EndoQ. IMPORTANCE Endonuclease Q (EndoQ) is a lesion-specific DNA repair enzyme present in certain bacteria and archaea. To date, it remains unclear how EndoQ recognizes damaged bases. Understanding the mechanism of substrate recognition by EndoQ is important to grasp genome maintenance systems in organisms with EndoQ. Here, we find that EndoQ from the euryarchaeon Pyrococcus furiosus recognizes the imide structure in nucleobases by base flipping, and the cleavage activity is enhanced by the base pair instability of the target base, along with the discovery of its cleavage activity toward 5,6-dihydrouracil, 5-hydroxyuracil, 5-hydroxycytosine, and uridine in DNA. Furthermore, a potential role of EndoQ in Bacillus subtilis as an antiviral enzyme by digesting viral genome is demonstrated.
引用
收藏
页数:11
相关论文
共 50 条
  • [21] Structural Basis of Thermal Stability of the Tungsten Cofactor Synthesis Protein MoaB from Pyrococcus furiosus
    Havarushka, Nastassia
    Fischer-Schrader, Katrin
    Lamkemeyer, Tobias
    Schwarz, Guenter
    PLOS ONE, 2014, 9 (01):
  • [22] Structural basis of substrate recognition by human tRNA splicing endonuclease TSEN
    Samoil Sekulovski
    Lukas Sušac
    Lukas S. Stelzl
    Robert Tampé
    Simon Trowitzsch
    Nature Structural & Molecular Biology, 2023, 30 : 834 - 840
  • [23] Structural basis of substrate recognition by human tRNA splicing endonuclease TSEN
    Sekulovski, Samoil
    Susac, Lukas
    Stelzl, Lukas S.
    Tampe, Robert
    Trowitzsch, Simon
    NATURE STRUCTURAL & MOLECULAR BIOLOGY, 2023, 30 (06) : 834 - +
  • [24] Comparative structural analysis and substrate specificity engineering of the hyperthermostable β-glucosidase CelB from Pyrococcus furiosus
    Kaper, T
    Lebbink, JHG
    Pouwels, J
    Kopp, J
    Schulz, GE
    van der Oost, J
    de Vos, WM
    BIOCHEMISTRY, 2000, 39 (17) : 4963 - 4970
  • [25] Structural basis for recognition of distinct deaminated DNA lesions by endonuclease Q
    Shi, Ke
    Moeller, Nicholas H.
    Banerjee, Surajit
    McCann, Jennifer L.
    Carpenter, Michael A.
    Yin, Lulu
    Moorthy, Ramkumar
    Orellana, Kayo
    Harki, Daniel A.
    Harris, Reuben S.
    Aihara, Hideki
    PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 2021, 118 (10)
  • [26] Temperature dependence of the redox potential of rubredoxin from Pyrococcus furiosus: A molecular dynamics study
    Swartz, PD
    Ichiye, T
    BIOCHEMISTRY, 1996, 35 (43) : 13772 - 13779
  • [27] Expression and molecular characterization of spherical particles derived from the genome of the hyperthermophilic euryarchaeote Pyrococcus furiosus
    Namba, K
    Hagiwara, K
    Tanaka, H
    Nakaishi, Y
    Chong, KT
    Yamashita, E
    Armah, GE
    Ono, Y
    Ishino, Y
    Omura, T
    Tsukihara, T
    Nakagawa, A
    JOURNAL OF BIOCHEMISTRY, 2005, 138 (02): : 193 - 199
  • [28] Molecular and biochemical characterization of the ADP-dependent phosphofructokinase from the hyperthermophilic archaeon Pyrococcus furiosus
    Tuininga, Judith E.
    Verhees, Corne H.
    van der Oost, John
    Kengen, Serve W.M.
    Stams, Alfons J.M.
    de Vos, Willem M.
    Journal of Biological Chemistry, 274 (30): : 21023 - 21028
  • [29] Molecular and biochemical characterization of the ADP-dependent phosphofructokinase from the hyperthermophilic archaeon Pyrococcus furiosus
    Tuininga, JE
    Verhees, CH
    van der Oost, J
    Kengen, SWM
    Stams, AJM
    de Vos, WM
    JOURNAL OF BIOLOGICAL CHEMISTRY, 1999, 274 (30) : 21023 - 21028
  • [30] Tertiary structure and carbohydrate recognition by the chitin-binding domain of a hyperthermophilic chitinase from Pyrococcus furiosus
    Nakamura, Tsutomu
    Mine, Shouhei
    Hagihara, Yoshihisa
    Ishikawa, Kazuhiko
    Ikegami, Takahisa
    Uegaki, Koichi
    JOURNAL OF MOLECULAR BIOLOGY, 2008, 381 (03) : 670 - 680