Browse > Article

Structure and Function of RGD Peptides Derived from Disintegrin Proteins  

Kim, Jiun (Department of Biochemistry, Yonsei University)
Hong, Sung-Yu (Department of Biochemistry, Yonsei University)
Park, Hye-seo (Department of Biochemistry, Yonsei University)
Kim, Doo-Sik (Department of Biochemistry, Yonsei University)
Lee, Weontae (Department of Biochemistry, Yonsei University)
Abstract
The Arg-Gly-Asp (RGD) sequence serves as the primary recognition site in extracellular matrix proteins, and peptides containing this sequence can mimic the biological activities of matrix proteins. We have initiated structure-function studies of two RGD containing peptides, RGD-5(AGGDD) and cyclic RGD-6(CARGDDC). Assays have shown that cyclic RGD-peptides inhibit platelet aggregation more efficiently than linear ones. NMR data revealed that RGD-5 and RGD-6 have entirely different conformation. RGD-5 has a linear extended structure and RGD-6 has a stable loop conformation. In RGD-5 the guanidinium group of Arg2 and the carboxyl group of Asp4 lie in parallel, whereas the side-chains of Arg3 and Asp5 of RGD-6 are located in different planes, supporting the idea that the stability of the cyclic form derives from the packing of the side chain of the Arg and Asp residues. The structural features of these peptides could provide a basis for designing new drugs against diseases related to platelet aggregation and as cancer antagonists.
Keywords
Disintegrin; Disulfide Bonded; NMR; RGD; Solution Structure;
Citations & Related Records

Times Cited By Web Of Science : 9  (Related Records In Web of Science)
연도 인용수 순위
  • Reference
1 Bogdanowich-Knipp, S. J., Jois, D. S., and Siahaan, T. J. (1999) The effect of conformation on the solution stability of linear vs. cyclic RGD peptides. J. Pept. Res. 53, 523-529   DOI   ScienceOn
2 Davis, D. G. and Bax, A. J. (1985) 15N-labeled Escherichia coli tRNAfMet, tRNAGlu, tRNATyr, and tRNAPhe. Double resonance and two-dimensional NMR of N1-labeled pseudouridine. J. Biol. Chem. 107, 2820-2821
3 Driscoll, P. C., Gronenborn, A. M., and Clore, G. M. (1989b) A proton nuclear magnetic resonance study of the antihypertensive and antiviral protein BDS-I from the sea anemone Anemonia sulcata: sequential and stereospecific resonance assignment and secondary structure. Biochemistry 28, 2178- 2187   DOI   ScienceOn
4 Fujii, Y., Okuda, D., Fujimoto, Z., Horii, K., Morita, T., et al. (2003) Crystal structure of trimestatin, a disintegrin containing a cell adhesion recognition motif RGD. J. Mol. Biol. 332, 1115-1122   DOI   ScienceOn
5 Koradi, R., Billeter, M., and Wüthrich, K. (1996) MOLMOL: a program for display and analysis of macromolecular structures. J. Mol. Graphics 14, 29-31
6 Marcinkiewicz, C., Taooka, Y., Yokosaki, Y., Calvete, J. J., Marcinkiewicz, M. M., et al. (2000) Inhibitory effect of MLDG-containing heterodimeric disintegrins reveal distinct structural requirements for interaction of the integrin ${\alpha}9{beta}1$ with VCAM, tenascin-C, and osteopontin. J. Biol. Chem. 275, 31930-31937   DOI   ScienceOn
7 Scarborough, R. M., Rose, J. W., Hsu, M. A., Phillips, D. R., Fried, V. A., et al. (1991) Barbourin; A GPIIb-IIIa-specific integrin antagonist from the venom of Sistrurus M. barbouri. J. Biol. Chem. 266, 9359-9362
8 Shin, J., Hong, S. Y., Chung, K., Kang, I., Jang, Y., et al. (2003) Solution structure of a novel disintegrin, salmosin from Agkistrondon halys Venom. Biochemistry 42, 14408-14415   DOI   ScienceOn
9 Smith, K. J., Jaseja, M., Lu, X., Williams, J. A., Hyde, E. I., et al. (1996) Three-dimensional structure of the RGD-containing snake toxin albolabrin in solution, based on 1H NMR spectroscopy and simulated annealing calculations. Int. J. Pept. Protein 48, 220-228
10 Calvete, J. J., Fox, J. W., Agelan, A., Niewiarowski, S., and Marcinkiewicz, C. (2002) The presence of the WGD motif in CC8 heterodimeric disintegrin increases its inhibitory effect on ${\alpha}IIb{\beta}3,\;{\alpha}v{\beta}3,\;and\;{\alpha}5{\beta}1$ integrins. Biochemistry 41, 2014-2021   DOI   ScienceOn
11 Yamamoto, M., Fisher, J. E., Gentile, M., Seedor, J. G., Leu, C. T., et al. (1998) Obtaining of measles virus haemagglutinin from strain L-16 grown in primary cell cultures. Endocrinology 139, 1411-1419   DOI   ScienceOn
12 Nilges, M., Gronenborn, A. M., Brunger, A. T., and Clore, G. M. (1988b) Determination of three-dimensional structures of proteins by simulated annealing with interproton distance restraints. Application to crambin, potato carboxypeptidase inhibitor and barley serine proteinase inhibitor 2. Protein Eng. 1, 127-138
13 Saudek, V., Atkinson, R. A., and Pelton, J. T. (1991) Threedimensional structure of echistatin, the smallest active RGD protein. Biochemistry 30, 7369-7372   DOI   ScienceOn
14 Piotto, M., Saudek, V., and Sklenar, V. J. (1992) Gradienttailored excitation for single-quantum NMR spectroscopy of aqueous solutions. J. Biomol. NMR 2, 661   DOI
15 Wuthrich, K., Billeter, M., and Braun, W. (2003) Dissection of heteronuclear NMR experiments for studies of magnetization transfer efficiencies. J. Magn. Reson. 165, 89-94   DOI   ScienceOn
16 Arap, W., Pasqualini, R., and Ruoslahti, E. (1998) Obtaining of measles virus haemagglutinin from strain L-16 grown in primary cell cultures. Science 279, 377-380   DOI   ScienceOn
17 Bax, A. and Davis D. G. (1985) The pulmonary hypertension of sclerosing agents is prevented by cyclooxygenase inhibitors. J. Magn. Reson. 65, 355-360
18 Senn, H. and Klaus, W. (1993) The nuclear magnetic resonance solution structure of flavoridin, an antagonist of the platelet GPIIb-IIIa receptor. J. Mol. Biol. 232, 907-925   DOI   ScienceOn
19 Kim, H.-Y., Kim, Y.-M., Shin, Y.-K., Park, S.-H., and Lee, W. (2004) Solution structure of the cytoplasmic domain of human CD99 type I. Mol. Cells 18, 1, 24-29
20 McLane, M. A., Marcinkiewicz, C., Vijay-Kumar, S., Wierzbicka- Patynowski, I., and Niewiarowski, S. (1998) Viper venom disintegrins and related molecules. Proc. Soc. Exptl. Biol. Med. 219, 109-119
21 Wagner, G., Braun, W., Havel., T. F., Schaumann, T., Go, N., et al. (1987) Protein structures in solution by nuclear magnetic resonance and distance geometry. The polypeptide fold of the basic pancreatic trypsin inhibitor determined using two different algorithms, DISGEO and DISMAN. J. Mol. Biol. 196, 611-639   DOI
22 Bogdanowich-Knipp, S. J., Chakrabarti, S., Williams, T. D., Dillman, R. K., and Siahaan, T. J. (1999) Solution stability of linear vs. cyclic RGD peptides. J. Pept. Res. 53, 530-541   DOI   ScienceOn
23 Driscoll, P. C., Gronenborn, A. M., Beress, L., and Clore, G. M. (1989a) Determination of the three-dimensional solution structure of the antihypertensive and antiviral protein BDS-I from the sea anemone Anemonia sulcata: a study using nuclear magnetic resonance and hybrid distance geometrydynamical simulated annealing. Biochemistry 28, 2188-2198   DOI   ScienceOn
24 Gould, R. J., Polokoff, M. A., Friedman, P. A., Huang, T. F., Holt, J. C., et al. (1990) Disintegrins: a family of integrin inhibitory proteins from viper venoms. Proc. Soc. Biol. Med. 195, 168-171
25 Wüthrich, K. (1986) NMR of proteins and nucleic acids, Wiley, New York
26 Adler, M., Lazarus, R. A., Dennis, M. S., and Wagner, G. (1991) Solution structure of kistrin, a potent platelet aggregation inhibitor and GPIIb-IIIa antagonist. Science 253, 445-448   DOI
27 Brooks, P. C., Stromblad, S., Klemle, R., Visscher, D., Sarkar, F. H., et al. (1996) Localization of matrix metalloproteinase MMP-2 to the surface of invasive cells by interaction with integrin alpha v beta 3. Cell 85, 683-693   DOI   ScienceOn
28 Lakovski, R. A., MacArthur, M. W., Moss, D. S., and Thornton, J. M. (1993) SFCHECK: a unified set of procedures for evaluating the quality of macromolecular structure-factor data and their agreement with the atomic model. J. Appl. Crystallogr. 26, 191-205
29 McLane, M. A., Vijay-Kumar, S., Marcinkiewicz, C., Calvete, J. J., and Niewiarowski, S. (1996) Importance of the structure of the RGD-containing loop in the disintegrins echistatin and eristostatin for recognition of ${\alpha}IIb{\beta}3\;and\;{\alpha}v{\beta}3$ integrins. FEBS. Lett. 391, 139-143   DOI   ScienceOn
30 Niewiarowski, S., Marcinkiewicz, C., Wierzbicka-Patynowski, I., McLane, M. A., and Calvete, J. J. (2002) Structure and function of disintegrins and C-lectins: viper venom proteins modulating cell adhesion; in Perspectives in Molecular Toxinology, Menez, A. (ed.), pp. 327-340, Wiley, New York
31 Paz Moreno-Murciano, M., Monleon, D., Marcinkiewicz, C., Calvete, J. J., and Celda, B. (2003) NMR solution structure of the non-RGD disintegrin obtustatin. J. Mol. Biol. 329, 135-145   DOI   ScienceOn
32 Rance, M., Soerensen, O. W., Bodehausen, G., Wagner, G., Ernst, R. R., et al. (1983a) Protein conformation and proton nuclear- magnetic-resonance chemical shifts. Eur. J. Biochem. 137, 445-454   DOI   ScienceOn
33 Marcinkiewicz, C., Calvete, J. J., Vijay-Kumar, S., Marcinkiewicz, M. M., Raida, M., et al. (1999b) Structural and functional characterization of EMF10, a heterodimeric disintegrin from Eristocophis macmahoni venom that selectively inhibits ${\alpha}5{\beta}1$ integrin. Biochemistry 38, 13302-13309   DOI   ScienceOn
34 Marcinkiewicz, C., Calvete, J. J., Marcinkiewicz, M. M., Raida, M., Vijay-Kumar, S., et al. (1999a) EC3, a novel heterodimeric disintegrin from Echis carinatus venom, inhibits ${\alpha}4$ and ${\alpha}5$ integrins in an RGD-independent manner. J. Biol. Chem. 274, 12468-12473   DOI   ScienceOn
35 Nilges, M., Clore, G. M., and Gronenborn, A. M. (1988a) Determination of three-dimensional structures of proteins from interproton distance data by dynamical simulated annealing from a random array of atoms. Circumventing problems associated with folding. FEBS Lett. 239, 129-136   DOI   ScienceOn
36 Rance, M., Sorensen, O. W., Bodenhausen, G., Wagner, G., Ernst, R. R., et al. (1983b) Improved spectral resolution in cosy 1H NMR spectra of proteins via double quantum filtering. Biochem. Biophys. Res. Commun. 117, 479   DOI   ScienceOn
37 Chung, K. H., Kim, S. H., Han, K. Y., Sohn, Y. D., Chang, S. I., et al. (2003) Inhibitory effect of salmosin, a Korean snake venom-derived disintegrin, on the integrin alphav-mediated proliferation of SK-Mel-2 human melanoma cells. J. Pharm. Pharmacol. 55, 1577-1582   DOI   ScienceOn
38 Goddard, T. D. and Kneller, D. G. (2002) SPARKY 3, University of California, San Francisco
39 Trikha, M., De Clerk, Y. A., and Markland, F. S. (1994) Contortrostatin, a snake venom disintegrin, inhibits ${\beta}1$ integrinmediated human metastatic melanoma cell adhesion and blocks experimental metastasis. Cancer 54, 4993-4998
40 Lee, W., Moore, C. H., Watt, D. D., and Krishna, N. R. (1994) Solution structure of the variant-3 neurotoxin from Centruroides sculpturatus Ewing. Eur. J. Biochem. 219, 89-95   DOI   ScienceOn