Modulation of telomerase activity by telomere DNA-binding proteins in Oxytricha

被引:71
作者
Froelich-Ammon, SJ
Dickinson, BA
Bevilacqua, JM
Schultz, SC
Cech, TR
机构
[1] Univ Colorado, Dept Chem & Biochem, Boulder, CO 80309 USA
[2] Univ Colorado, Howard Hughes Med Inst, Boulder, CO 80309 USA
关键词
telomere; telomerase; regulation; telomere DNA-binding proteins; Oxytricha;
D O I
10.1101/gad.12.10.1504
中图分类号
Q2 [细胞生物学];
学科分类号
071009 ; 090102 ;
摘要
Telomere proteins protect the chromosomal terminus from nucleolytic degradation and end-to-end fusion, and they may contribute to telomere length control and the regulation of telomerase. The current studies investigate the effect of Oxytricha single-stranded telomere DNA-binding protein subunits alpha and beta on telomerase elongation of telomeric DNA. A native agarose gel system was used to evaluate telomere DNA-binding protein complex composition, and the ability of telomerase to use these complexes as substrates was characterized. Efficient elongation occurred in the presence of the alpha subunit. Moreover, the alpha-DNA cross-linked complex was a substrate for telomerase. At higher alpha concentrations, two alpha subunits bound to the 16-nucleotide single-stranded DNA substrate and rendered it inaccessible to telomerase. The formation of this alpha . DNA . alpha complex may contribute to regulation of telomere length. The alpha . beta . DNA ternary complex was not a substrate for telomerase. Even when telomerase was prebound to telomeric DNA, the addition of alpha and beta inhibited elongation, suggesting that these telomere protein subunits have a greater affinity for the DNA and are able to displace telomerase. In addition, the ternary complex was not a substrate for terminal deoxynucleotidyltransferase. We conclude that the telomere protein inhibits telomerase by rendering the telomeric DNA inaccessible, thereby helping to maintain telomere length.
引用
收藏
页码:1504 / 1514
页数:11
相关论文
共 42 条
[31]   DNA-BOUND BY THE OXYTRICHA TELOMERE PROTEIN IS ACCESSIBLE TO TELOMERASE AND OTHER DNA-POLYMERASES [J].
SHIPPEN, DE ;
BLACKBURN, EH ;
PRICE, CM .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1994, 91 (01) :405-409
[32]   rTP: A candidate telomere protein that is associated with DNA replication [J].
Skopp, R ;
Wang, WL ;
Price, C .
CHROMOSOMA, 1996, 105 (02) :82-91
[33]   ARRANGEMENT OF CODING AND NON-CODING SEQUENCES IN THE DNA-MOLECULES CODING FOR RIBOSOMAL-RNAS IN OXYTRICHA SP .7. DNA OF CILIATED PROTOZOA [J].
SWANTON, MT ;
GRESLIN, AF ;
PRESCOTT, DM .
CHROMOSOMA, 1980, 77 (02) :203-215
[34]   Control of telomere length by the human telomeric protein TRF1 [J].
vanSteensel, B ;
deLange, T .
NATURE, 1997, 385 (6618) :740-743
[35]   Evidence for a new step in telomere maintenance [J].
Wellinger, RJ ;
Ethier, K ;
Labrecque, P ;
Zakian, VA .
CELL, 1996, 85 (03) :423-433
[36]   SACCHAROMYCES TELOMERES ACQUIRE SINGLE-STRAND TG(1-3) TAILS LATE IN S-PHASE [J].
WELLINGER, RJ ;
WOLF, AJ ;
ZAKIAN, VA .
CELL, 1993, 72 (01) :51-60
[37]   G-QUARTET STRUCTURES IN TELOMERIC DNA [J].
WILLIAMSON, JR .
ANNUAL REVIEW OF BIOPHYSICS AND BIOMOLECULAR STRUCTURE, 1994, 23 :703-730
[38]   Normal human chromosomes have long G-rich telomeric overhangs at one end [J].
Wright, WE ;
Tesmer, VM ;
Huffman, KE ;
Levene, SD ;
Shay, JW .
GENES & DEVELOPMENT, 1997, 11 (21) :2801-2809
[39]   INHIBITION OF TELOMERASE BY G-QUARTET DNA STRUCTURES [J].
ZAHLER, AM ;
WILLIAMSON, JR ;
CECH, TR ;
PRESCOTT, DM .
NATURE, 1991, 350 (6320) :718-720
[40]   Structure, function, and replication of Saccharomyces cerevisiae telomeres [J].
Zakian, VA .
ANNUAL REVIEW OF GENETICS, 1996, 30 :141-172