CLONING OF A FULL-LENGTH CDNA-ENCODING BOVINE THYMUS POLY(ADP-RIBOSE) SYNTHETASE - EVOLUTIONARILY CONSERVED SEGMENTS AND THEIR POTENTIAL FUNCTIONS

被引:38
作者
SAITO, I
HATAKEYAMA, K
KIDO, T
OHKUBO, H
NAKANISHI, S
UEDA, K
机构
[1] KYOTO UNIV,DEPT CLIN SCI,SAKYO KU,KYOTO 606,JAPAN
[2] KYOTO UNIV,MED LAB,SAKYO KU,KYOTO 606,JAPAN
[3] KYOTO UNIV,INST IMMUNOL,SAKYO KU,KYOTO 606,JAPAN
关键词
automodification; domain structure; helix-turn-helix; homology profile; nucleotide-binding fold; Recombinant DNA; zinc-binding finger;
D O I
10.1016/0378-1119(90)90187-V
中图分类号
Q3 [遗传学];
学科分类号
071007 ; 090102 ;
摘要
The primary structure of bovine thymus poly(ADP-ribose) synthetase, as deduced from the nucleotide sequence of a cloned cDNA, indicated that this enzyme is composed of 1016 amino acids (aa) with an Mr of 113481. An abundance of Lys and Arg residues was in accord with the known basic nature of this protein. A comparison with reported sequences of human counterparts revealed: (1) three functional domains separated by partial proteolysis, i.e., DNA-binding (N-terminal), auto-modification (central), and NAD-binding (C-terminal) domains, have, in this order, increasing degrees of homology; (2) the DNA-binding domain is composed of two distinct regions: one, less conserved, containing zinc-binding fingers and the other, more conserved, containing helix-turn-helix motifs; (3) all Glu and Asp residues in the automodification domain are conserved; and (4) a 78-aa stretch encompassing the nucleotide-binding fold in the NAD-binding domain is completely conserved. These results are compatible with specific features of each domain, i.e., complex DNA-enzyme interactions, multiple automodification at acidic aa residues, and a stringent specificity for the substrate, NAD. © 1990.
引用
收藏
页码:249 / 254
页数:6
相关论文
共 27 条
[1]   NUCLEIC ACID-BINDING PROTEINS - MORE METAL-BINDING FINGERS [J].
BERG, JM .
NATURE, 1986, 319 (6051) :264-265
[2]   BUFFER GRADIENT GELS AND S-35 LABEL AS AN AID TO RAPID DNA-SEQUENCE DETERMINATION [J].
BIGGIN, MD ;
GIBSON, TJ ;
HONG, GF .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1983, 80 (13) :3963-3965
[3]   CDNA SEQUENCE, PROTEIN-STRUCTURE, AND CHROMOSOMAL LOCATION OF THE HUMAN-GENE FOR POLY(ADP-RIBOSE) POLYMERASE [J].
CHERNEY, BW ;
MCBRIDE, OW ;
CHEN, D ;
ALKHATIB, H ;
BHATIA, K ;
HENSLEY, P ;
SMULSON, ME .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1987, 84 (23) :8370-8374
[4]  
CHOU DY, 1978, ANNU REV BIOCHEM, V47, P251
[5]  
DEMURCIA G, 1986, J BIOL CHEM, V261, P7011
[6]  
Hanahan D., 1985, DNA CLONING PRACTICA, P109
[7]   PREDICTION OF PROTEIN ANTIGENIC DETERMINANTS FROM AMINO-ACID-SEQUENCES [J].
HOPP, TP ;
WOODS, KR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1981, 78 (06) :3824-3828
[8]   SEQUENCE AND ORGANIZATION OF THE MOUSE POLY (ADP-RIBOSE) POLYMERASE GENE [J].
HUPPI, K ;
BHATIA, K ;
SIWARSKI, D ;
KLINMAN, D ;
CHERNEY, B ;
SMULSON, M .
NUCLEIC ACIDS RESEARCH, 1989, 17 (09) :3387-3401
[9]  
ITO S, 1979, J BIOL CHEM, V254, P3647
[10]   SEQUENCE REQUIREMENTS FOR NUCLEAR LOCATION OF SIMIAN VIRUS-40 LARGE-T-ANTIGEN [J].
KALDERON, D ;
RICHARDSON, WD ;
MARKHAM, AF ;
SMITH, AE .
NATURE, 1984, 311 (5981) :33-38