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5. Three-dimensional structure of p21 in the active conformation and analysis of an oncogenic mutant. Wittinghofer F; Krengel U; John J; Kabsch W; Pai EF Environ Health Perspect; 1991 Jun; 93():11-5. PubMed ID: 1773783 [TBL] [Abstract][Full Text] [Related]
6. A guide to low molecular weight GTPases. Sanders DA Cell Growth Differ; 1990 May; 1(5):251-8. PubMed ID: 2150754 [No Abstract] [Full Text] [Related]
7. GTP-binding proteins as oncogenes in human tumors. McCormick F Environ Health Perspect; 1991 Jun; 93():17-8. PubMed ID: 1773789 [No Abstract] [Full Text] [Related]
8. Going for the GAP. McCormick F Curr Biol; 1998 Sep; 8(19):R673-4. PubMed ID: 9768349 [No Abstract] [Full Text] [Related]
9. Measurements of GTP/GDP exchange in permeabilized fibroblasts. de Vries-Smits AM; van der Voorn ; Downward J; Bos JL Methods Enzymol; 1995; 255():156-61. PubMed ID: 8524099 [No Abstract] [Full Text] [Related]
10. Alternate mechanisms of ras activation are complementary and favor and formation of ras-GTP. Patel G; MacDonald MJ; Khosravi-Far R; Hisaka MM; Der CJ Oncogene; 1992 Feb; 7(2):283-8. PubMed ID: 1549350 [TBL] [Abstract][Full Text] [Related]
11. Catalysis of guanine nucleotide exchange on the CDC42Hs protein by the dbl oncogene product. Hart MJ; Eva A; Evans T; Aaronson SA; Cerione RA Nature; 1991 Nov; 354(6351):311-4. PubMed ID: 1956381 [TBL] [Abstract][Full Text] [Related]
12. Guanine-nucleotide binding activity, interaction with GTPase-activating protein and solution conformation of the human c-Ha-Ras protein catalytic domain are retained upon deletion of C-terminal 18 amino acid residues. Fujita-Yoshigaki J; Ito Y; Yamasaki K; Muto Y; Miyazawa T; Nishimura S; Yokoyama S J Protein Chem; 1992 Dec; 11(6):731-9. PubMed ID: 1466766 [TBL] [Abstract][Full Text] [Related]
14. Vav cooperates with Ras to transform rodent fibroblasts but is not a Ras GDP/GTP exchange factor. Bustelo XR; Suen KL; Leftheris K; Meyers CA; Barbacid M Oncogene; 1994 Aug; 9(8):2405-13. PubMed ID: 8036025 [TBL] [Abstract][Full Text] [Related]
15. Signal transduction pathways involving Ras. Mini review. Wiesmüller L; Wittinghofer F Cell Signal; 1994 Mar; 6(3):247-67. PubMed ID: 7917783 [No Abstract] [Full Text] [Related]
16. A yeast GTPase-activating protein that interacts specifically with a member of the Ypt/Rab family. Strom M; Vollmer P; Tan TJ; Gallwitz D Nature; 1993 Feb; 361(6414):736-9. PubMed ID: 8441469 [TBL] [Abstract][Full Text] [Related]
17. Investigation of the GTP-binding/GTPase cycle of Cdc42Hs using extrinsic reporter group fluorescence. Nomanbhoy TK; Leonard DA; Manor D; Cerione RA Biochemistry; 1996 Apr; 35(14):4602-8. PubMed ID: 8605211 [TBL] [Abstract][Full Text] [Related]
18. ras and GAP--who's controlling whom? Hall A Cell; 1990 Jun; 61(6):921-3. PubMed ID: 2190692 [No Abstract] [Full Text] [Related]
19. Molecular cloning of cDNAs encoding a guanine-nucleotide-releasing factor for Ras p21. Shou C; Farnsworth CL; Neel BG; Feig LA Nature; 1992 Jul; 358(6384):351-4. PubMed ID: 1379346 [TBL] [Abstract][Full Text] [Related]
20. Identification of amino acid residues of Ras protein that are essential for signal-transducing activity but not for enhancement of GTPase activity by GAP. Fujita-Yoshigaki J; Shirouzu M; Koide H; Nishimura S; Yokoyama S FEBS Lett; 1991 Dec; 294(3):187-90. PubMed ID: 1756860 [TBL] [Abstract][Full Text] [Related] [Next] [New Search]