Dual nucleotide specificity determinants of an infection aborting anticodon nuclease

被引:5
作者
Krutkina, Ekaterina [1 ]
Klaiman, Daniel [1 ]
Margalit, Tamar [1 ]
Jerabeck-Willemsen, Moran [2 ]
Kaufmann, Gabriel [1 ]
机构
[1] Tel Aviv Univ, Dept Biochem, IL-69978 Ramat Aviv, Israel
[2] NanoTemper, D-81369 Munich, Germany
基金
以色列科学基金会;
关键词
Phage T4-exclusion; PrrC; Anticodon nuclease; DNA restriction and anti-restriction; ABC-ATPase; DTTP binding; ABC-TRANSPORTER; BINDING DOMAIN; ATP-BINDING; TRNA(LYS); RLOC; DIMERIZATION; RECOGNITION; RAD50; SITE; LOOP;
D O I
10.1016/j.virol.2015.10.012
中图分类号
Q93 [微生物学];
学科分类号
071005 ; 100705 ;
摘要
The anticodon nuclease (ACNase) PrrC is silenced by a DNA restriction-modification (RM) protein and activated by a phage T4-encoded restriction inhibitor. The activation is driven by GTP hydrolysis while dTTP, which accumulates during the infection, stabilizes the active form. We show here, first, that the ABC-ATPase N-domains of PrrC can accommodate the two nucleotides simultaneously. Second, mutating a sequence motif that distinguishes the N-domain of PrrC from typical ABC-ATPases implicates three residues in the specificity for dTTP. Third, failure to bind dTTP or its deprivation hastened the centrifugal sedimentation of PrrC, possibly due to exposed sticky PrrC surfaces. Fourth, dTTP inhibited the GTPase activity of PrrC, probably by preventing GDP from leaving. These observations, correlated with relevant traits of a related ACNase, further suggest that PrrC utilizes GTP at canonical ABC-ATPase sites and binds dTTP to distinct sites exposed upon disruption of the ACNase-silencing interaction with the RM partner. (C) 2015 Elsevier Inc. All rights reserved.
引用
收藏
页码:260 / 272
页数:13
相关论文
共 38 条
[1]   The A-loop, a novel conserved aromatic acid subdomain upstream of the Walker A motif in ABC transporters, is critical for ATP binding [J].
Ambudkar, SV ;
Kim, IW ;
Xia, D ;
Sauna, ZE .
FEBS LETTERS, 2006, 580 (04) :1049-1055
[2]   Bacteriophage T4-encoded Stp can be replaced as activator of anticodon nuclease by a normal host cell metabolite [J].
Amitsur, M ;
Benjamin, S ;
Rosner, R ;
Chapman-Shimshoni, D ;
Meidler, R ;
Blanga, S ;
Kaufmann, G .
MOLECULAR MICROBIOLOGY, 2003, 50 (01) :129-143
[3]   Comprehensive analysis of the HEPN superfamily: identification of novel roles in intra-genomic conflicts, defense, pathogenesis and RNA processing [J].
Anantharaman, Vivek ;
Makarova, Kira S. ;
Burroughs, A. Maxwell ;
Koonin, Eugene V. ;
Aravind, L. .
BIOLOGY DIRECT, 2013, 8
[4]   PrrC-anticodon nuclease: functional organization of a prototypical bacterial restriction RNase [J].
Blanga-Kanfi, Shani ;
Amitsur, Michal ;
Azem, Abdussalam ;
Kaufmann, Gabriel .
NUCLEIC ACIDS RESEARCH, 2006, 34 (11) :3209-3219
[5]   A tweezers-like motion of the ATP-binding cassette dimer in an ABC transport cycle [J].
Chen, J ;
Lu, G ;
Lin, J ;
Davidson, AL ;
Quiocho, FA .
MOLECULAR CELL, 2003, 12 (03) :651-661
[6]   Site-directed, Ligase-Independent Mutagenesis (SLIM): a single-tube methodology approaching 100% efficiency in 4 h [J].
Chiu, J ;
March, PE ;
Lee, R ;
Tillett, D .
NUCLEIC ACIDS RESEARCH, 2004, 32 (21) :e174
[7]   WebLogo: A sequence logo generator [J].
Crooks, GE ;
Hon, G ;
Chandonia, JM ;
Brenner, SE .
GENOME RESEARCH, 2004, 14 (06) :1188-1190
[8]   RloC: a wobble nucleotide-excising and zinc-responsive bacterial tRNase [J].
Davidov, Elena ;
Kaufmann, Gabriel .
MOLECULAR MICROBIOLOGY, 2008, 69 (06) :1560-1574
[9]  
Filipovska A, 2011, NAT CHEM BIOL, V7, P425, DOI [10.1038/NCHEMBIO.577, 10.1038/nchembio.577]
[10]  
Garst A.D., 2011, Cold Spring Harb Perspect Biol, V3