Separating substrate recognition from base hydrolysis in human thymine DNA glycosylase by mutational analysis

被引:112
作者
Hardeland, U
Bentele, M
Jiricny, J
Schär, P
机构
[1] Univ Zurich, Inst Med Radiobiol, CH-8008 Zurich, Switzerland
[2] Paul Scherrer Inst, CH-8008 Zurich, Switzerland
关键词
D O I
10.1074/jbc.M005095200
中图分类号
Q5 [生物化学]; Q7 [分子生物学];
学科分类号
071010 ; 081704 ;
摘要
Human thymine DNA glycosylase (TDG) was discovered as an enzyme that can initiate base excision repair at sites of 5-methylcytosine- or cytosine deamination in DNA by its ability to release thymine or uracil from G.T and G.U mismatches. Crystal structure analysis of an Escherichia coli homologue identified conserved amino acid residues that are critical for its substrate recognition/interaction and base hydrolysis functions. Guided by this revelation, we performed a mutational study of structure function relationships with the human TDG. Substitution of the postulated catalytic site asparagine with alanine (N140A) resulted in an enzyme that bound mismatched substrates but was unable to catalyze base removal. Mutation of Met-269 in a motif with a postulated role in protein-substrate interaction selectively inactivated stable binding of the enzyme to mismatched substrates but not so its glycosylase activity. These results establish that the structure function model postulated for the E. coli enzyme is largely applicable to the human TDG. We further provide evidence for G.U being the preferred substrate of TDG, not only at the mismatch recognition step of the reaction but also in base hydrolysis, and for the importance of stable complementary strand interactions by TDG to compensate for its comparably poor hydrolytic potential.
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页码:33449 / 33456
页数:8
相关论文
共 20 条
[1]   Crystal structure of a thwarted mismatch glycosylase DNA repair complex [J].
Barrett, TE ;
Schärer, OD ;
Savva, R ;
Brown, T ;
Jiricny, J ;
Verdine, GL ;
Pearl, LH .
EMBO JOURNAL, 1999, 18 (23) :6599-6609
[2]   Crystal structure of a G:T/U mismatch-specific DNA glycosylase:: Mismatch recognition by complementary-strand interactions [J].
Barrett, TE ;
Savva, R ;
Panayotou, G ;
Barlow, T ;
Brown, T ;
Jiricny, J ;
Pearl, LH .
CELL, 1998, 92 (01) :117-129
[3]   SPONTANEOUS DEAMINATION OF CYTOSINE AND 5-METHYLCYTOSINE RESIDUES IN DNA AND REPLACEMENT OF 5-METHYLCYTOSINE RESIDUES WITH CYTOSINE RESIDUES [J].
EHRLICH, M ;
ZHANG, XY ;
INAMDAR, NM .
MUTATION RESEARCH, 1990, 238 (03) :277-286
[4]   A new class of uracil-DNA glycosylases related to human thymine-DNA glycosylase [J].
Gallinari, P ;
Jiricny, J .
NATURE, 1996, 383 (6602) :735-738
[5]   A 55-kDa protein isolated from human cells shows DNA glycosylase activity toward 3,N4-ethenocytosine and the G/T mismatch [J].
Hang, B ;
Medina, M ;
Fraenkel-Conrat, H ;
Singer, B .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (23) :13561-13566
[6]   DNA FRAGMENTATION AND CYTOTOXICITY FROM INCREASED CELLULAR DEOXYURIDYLATE [J].
INGRAHAM, HA ;
DICKEY, L ;
GOULIAN, M .
BIOCHEMISTRY, 1986, 25 (11) :3225-3230
[7]   Resistance to chemotherapeutic antimetabolites: A function of salvage pathway involvement and cellular response to DNA damage [J].
Kinsella, AR ;
Smith, D ;
Pickard, M .
BRITISH JOURNAL OF CANCER, 1997, 75 (07) :935-945
[8]  
MAJOR PP, 1982, CANCER RES, V42, P3005
[9]  
NEDDERMANN P, 1993, J BIOL CHEM, V268, P21218
[10]   EFFICIENT REMOVAL OF URACIL FROM G-CENTER-DOT-U MISPAIRS BY THE MISMATCH-SPECIFIC THYMINE DNA GLYCOSYLASE FROM HELA-CELLS [J].
NEDDERMANN, P ;
JIRICNY, J .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (05) :1642-1646