Identification of functionally important domains in the N-terminal region of telomerase reverse transcriptase

被引:122
作者
Xia, JQ
Peng, Y
Mian, IS
Lue, NF
机构
[1] Cornell Univ, Weill Med Coll, WR Hearst Microbiol Res Ctr, Dept Microbiol & Immunol, New York, NY 10021 USA
[2] Univ Calif Berkeley, Lawrence Berkeley Lab, Div Life Sci, Berkeley, CA 94720 USA
关键词
D O I
10.1128/MCB.20.14.5196-5207.2000
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
Telomerase is a ribonucleoprotein reverse transcriptase responsible for the maintenance of one strand of telomere terminal repeats. The key protein subunit of the telomerase complex, known as TERT, possesses reverse transcriptase-like motifs that presumably mediate catalysis. These motifs are located in the C-terminal region of the polypeptide. Hidden Markov model-based sequence analysis revealed in the N-terminal region of all TERTs the presence of four conserved motifs, named GQ, CP, QFP, and T. Paint mutation analysis of conserved residues confirmed the functional importance of the GQ motif. In addition, the distinct phenotypes of the GQ mutants suggest that this motif may play at least two distinct functions in telomere maintenance. Deletion analysis indicates that even the most N-terminal nonconserved region of yeast TERT (N region) is required for telomerase function. This N region exhibits a nonspecific nucleic acid binding activity that probably reflects an important physiologic function. Expression studies of various portions of the yeast TERT in Escherichia coli suggest that the N region and the GQ motif together may constitute a stable domain. We propose that all TERTs may have a bipartite organization, with an N-GQ domain connected to the other motifs through a flexible linker.
引用
收藏
页码:5196 / 5207
页数:12
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[1]   Reconstitution of human telomerase activity in vitro [J].
Beattie, TL ;
Zhou, W ;
Robinson, MO ;
Harrington, L .
CURRENT BIOLOGY, 1998, 8 (03) :177-180
[2]   TELOMERASES [J].
BLACKBURN, EH .
ANNUAL REVIEW OF BIOCHEMISTRY, 1992, 61 :113-129
[3]   Telomerase reverse transcriptase genes identified in Tetrahymena thermophila and Oxytricha trifallax [J].
Bryan, TM ;
Sperger, JM ;
Chapman, KB ;
Cech, TR .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (15) :8479-8484
[4]   CONNECTIONS BETWEEN TRANSCRIPTIONAL ACTIVATORS, SILENCERS, AND TELOMERES AS REVEALED BY FUNCTIONAL-ANALYSIS OF A YEAST DNA-BINDING PROTEIN [J].
BUCHMAN, AR ;
LUE, NF ;
KORNBERG, RD .
MOLECULAR AND CELLULAR BIOLOGY, 1988, 8 (12) :5086-5099
[5]   TELOMERASE IN YEAST [J].
COHN, M ;
BLACKBURN, EH .
SCIENCE, 1995, 269 (5222) :396-400
[6]   TETRAHYMENA TELOMERASE CATALYZES NUCLEOLYTIC CLEAVAGE AND NONPROCESSIVE ELONGATION [J].
COLLINS, K ;
GREIDER, CW .
GENES & DEVELOPMENT, 1993, 7 (7B) :1364-1376
[7]   PURIFICATION OF TETRAHYMENA TELOMERASE AND CLONING OF GENES ENCODING THE 2 PROTEIN-COMPONENTS OF THE ENZYME [J].
COLLINS, K ;
KOBAYASHI, R ;
GREIDER, CW .
CELL, 1995, 81 (05) :677-686
[8]   The reverse transcriptase component of the Tetrahymena telomerase ribonucleoprotein complex [J].
Collins, K ;
Gandhi, L .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1998, 95 (15) :8485-8490
[9]   Est1 and Cdc13 as comediators of telomerase access [J].
Evans, SK ;
Lundblad, V .
SCIENCE, 1999, 286 (5437) :117-120
[10]   Disruption of the telomerase catalytic subunit gene from Arabidopsis inactivates telomerase and leads to a slow loss of telomeric DNA [J].
Fitzgerald, MS ;
Riha, K ;
Gao, F ;
Ren, SX ;
McKnight, TD ;
Shippen, DE .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1999, 96 (26) :14813-14818