GENETIC-ANALYSIS OF THE KIRSTEN-RAS-REVERTANT-1 GENE - POTENTIATION OF ITS TUMOR SUPPRESSOR ACTIVITY BY SPECIFIC POINT MUTATIONS

被引:125
作者
KITAYAMA, H
MATSUZAKI, T
IKAWA, Y
NODA, M
机构
[1] INST PHYS & CHEM RES,TSUKUBA LIFE SCI CTR,MOLEC ONCOL LAB,TSUKUBA,IBARAKI 305,JAPAN
[2] UNIV TSUKUBA,INST BIOL SCI,TSUKUBA,IBARAKI 305,JAPAN
关键词
Ht1080; cells; ras genes; Site-directed mutagenesis; Transformation suppressor gene;
D O I
10.1073/pnas.87.11.4284
中图分类号
O [数理科学和化学]; P [天文学、地球科学]; Q [生物科学]; N [自然科学总论];
学科分类号
07 ; 0710 ; 09 ;
摘要
Kirsten-ras-revertant 1 (Krev-1) cDNA encodes a ras-related protein and exhibits an activity of inducing flat revenants at certain frequencies (2-5% of total transfectants) when introduced into a v-K-ras-transformed mouse NIH 3T3 cell line, DT. Toward understanding the mechanism of action of Krev-1 protein, we constructed a series of point mutants of Krev-1 cDNA and tested their biological activities in DT cells and HT1080 human fibrosarcoma cells harboring the activated N-ras gene. Substitutions of the amino acid residues in the putative guanine nucleotide-binding regions (Asp17 and Asn116), in the putative effector-binding domain (residue 38), at the putative acylation site (Cys181), and at the unique Thr61 all decreased the transformation suppressor activity. On the other hand, substitutions such as Gly12 to Val12 and Gln63 to Glu63 were found to significantly increase the transformation suppressor/tumor suppressor activity of Krev-1. These findings are consistent with the idea that Krev-1 protein is regulated like many other G proteins by the guanine triphosphate/ guanine diphosphate-exchange mechanism probably in response to certain negative growth-regulatory signals.
引用
收藏
页码:4284 / 4288
页数:5
相关论文
共 30 条
[1]   RAS GENES [J].
BARBACID, M .
ANNUAL REVIEW OF BIOCHEMISTRY, 1987, 56 :779-827
[2]   TUMORIGENIC TRANSFORMATION OF MAMMALIAN-CELLS INDUCED BY A NORMAL HUMAN-GENE HOMOLOGOUS TO THE ONCOGENE OF HARVEY MURINE SARCOMA-VIRUS [J].
CHANG, EH ;
FURTH, ME ;
SCOLNICK, EM ;
LOWY, DR .
NATURE, 1982, 297 (5866) :479-483
[3]   HIGH-EFFICIENCY TRANSFORMATION OF MAMMALIAN-CELLS BY PLASMID DNA [J].
CHEN, C ;
OKAYAMA, H .
MOLECULAR AND CELLULAR BIOLOGY, 1987, 7 (08) :2745-2752
[4]   NUMBER AND EVOLUTIONARY CONSERVATION OF ALPHA-TUBULIN AND BETA-TUBULIN AND CYTOPLASMIC BETA-ACTIN AND GAMMA-ACTIN GENES USING SPECIFIC CLONED CDNA PROBES [J].
CLEVELAND, DW ;
LOPATA, MA ;
MACDONALD, RJ ;
COWAN, NJ ;
RUTTER, WJ ;
KIRSCHNER, MW .
CELL, 1980, 20 (01) :95-105
[5]  
CROW R, 1978, EXPT NORMAL TRANSFOR, P10
[6]   BIOLOGICAL AND BIOCHEMICAL-PROPERTIES OF HUMAN RASH GENES MUTATED AT CODON-61 [J].
DER, CJ ;
FINKEL, T ;
COOPER, GM .
CELL, 1986, 44 (01) :167-176
[7]   ANALYSIS OF THE TRANSFORMING POTENTIAL OF THE HUMAN H-RAS GENE BY RANDOM MUTAGENESIS [J].
FASANO, O ;
ALDRICH, T ;
TAMANOI, F ;
TAPAROWSKY, E ;
FURTH, M ;
WIGLER, M .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA-BIOLOGICAL SCIENCES, 1984, 81 (13) :4008-4012
[8]   INHIBITION OF NIH-3T3 CELL-PROLIFERATION BY A MUTANT RAS PROTEIN WITH PREFERENTIAL AFFINITY FOR GDP [J].
FEIG, LA ;
COOPER, GM .
MOLECULAR AND CELLULAR BIOLOGY, 1988, 8 (08) :3235-3243
[9]   PROCESSING AND FATTY-ACID ACYLATION OF RAS1 AND RAS2 PROTEINS IN SACCHAROMYCES-CEREVISIAE [J].
FUJIYAMA, A ;
TAMANOI, F .
PROCEEDINGS OF THE NATIONAL ACADEMY OF SCIENCES OF THE UNITED STATES OF AMERICA, 1986, 83 (05) :1266-1270
[10]   IDENTIFICATION OF TRANSFORMING GENE IN 2 HUMAN SARCOMA CELL-LINES AS A NEW MEMBER OF THE RAS GENE FAMILY LOCATED ON CHROMOSOME-1 [J].
HALL, A ;
MARSHALL, CJ ;
SPURR, NK ;
WEISS, RA .
NATURE, 1983, 303 (5916) :396-400