INTEGRIN LIGANDS · Integrin ligands containing novel constrained amino acids - Synthesis, structure analysis, and biological evaluation
6РП — Действия „Мария Кюри“
- Период
- 2006-12-14 → 2008-12-13
- Финансиране от ЕС
- 149 154 €
- Участници
- 1
- Схема
- EIF
Линиите свързват координатора с партньорите.
Накратко на български
Циклични пептиди с конкретна последователност от аминокиселини се синтезират, за да се промени начинът, по който те се свързват с протеините интегрини на повърхността на клетките. Това помага за разработването на нови противовъзпалителни и противоракови лекарства.
Кратко обяснение, генерирано от езиков модел по текста на CORDIS. Оригиналът е по-долу.
Резултати накратко
Final Activity Report Summary - INTEGRIN LIGANDS (Integrin ligands containing novel constrained amino acids - Synthesis, structure analysis, and biological evaluation)
The project focussed on one important class of proteins, the integrins, which are heterodimeric glycoprotein receptors located on the cell surface and are involved in many biological processes. The binding of integrins with their natural ligands is the molecular basis of physiological and pathological processes. Small molecules that are able to interfere with the integrin-natural ligand binding process have pharmacological potential as anti-inflammatory and anticancer agents. The project aimed at the development of new cyclic peptides containing the recognition sequence arginine-glycine-aspartic acid (RGD), which was essential for the interaction between integrins and their corresponding ligands. More specifically, a new series of small cyclic peptides, which contained novel sterically constrained amino acids, was studied and special focus was placed upon the synthesis and subsequent chemical, biological and functional characterisation of these peptides, in order to perform a systematic investigation of both structural and biological consequences of the discrete amino acid incorporation. Thus, different cyclic RGD pentapeptides with the basic sequence c-(-Arg-Gly-Asp-Xaa-Yaa-) were synthesised incorporating different amino acids in position Xaa and Yaa. A series of constrained analogues of phenylalanine (Phe) was chosen for position Xaa, while position Yaa was occupied by derivatives of leucine (Leu) or valine (Val). Some of these novel non-proteinogenic amino acids were newly synthesised as part of the project, either by following existing synthetic methologies or by application of new strategies. The linear precursors of the new peptides were synthesised on solid phase; as such cyclisation under pseudo-high dilution, followed by side-chain deprotection, afforded the targeted cyclic peptides. All new peptides were tested, or were in the process of being tested by the time of the project completion, as ligands of integrins alphaVbeta3 and alpha5beta1 in cell-adhesion assays with the cancer cell lines WM-115 and K-562, respectively, which expressed the corresponding integrin. In these assays, the binding of the natural ligand to the integrin presented by the cells was measured, with simultaneous analysis of the influence of the different RGD peptides on this interaction process. With the exception of one, all peptides that were so far tested were active integrin alphaVbeta3 ligands with good inhibitory activity in the micro- to nanomolar range, comparable to the values obtained for reference peptides. Furthermore, other cyclic and linear RGD peptides were synthesised for the investigation of the interaction between integrins and the helicobacter protein CagL and mutants thereof. This ongoing project in the host group studied the minimal recognition sequence of the binding of CagL to integrins, as well as the effect that RGD-peptides could have on this interaction. Structural studies on all the peptides were in progress in the host group as part of this project, by the time of the completion of this report. NMR measurements and molecular dynamics simulations were being used in order to establish the structure of the cyclopeptides in solution and determine the conformational preferences of the novel amino acids that were introduced in the peptides.
Текст от CORDIS, на английски · Данни: CORDIS, © Европейски съюз
Цел на проекта
The interdisciplinary project addresses research issues on the borderline between bioorganic chemistry, biochemistry, and medical sciences. It focuses on an important class of proteins, the integrins, employing organic synthesis of novel conformationally constrained amino acids, incorporation of such building blocks into peptides, as well as structural and functional characterization using methods of protein biochemistry, cell culture, NMR spectroscopy, and biophysical analysis. Integrins are heterodimeric cell surface glycoprotein receptors, involved in cellcell and cellmatrix adhesion.The interaction of integrins with ligands is the molecular basis of physiological or pathological processes, such as platelet aggregation, tumour cell adhesion, wound healing, internalisation of pathogenic bacteria or leukocyte adhesion. Small molecules that interfere with this interaction can efficiently influence the cell-cell and cell-matrix interaction imparted by the integrin, being of potential interest in the therapy o f cancer and inflammatory diseases. The amino acid sequence RGD (arginine-glycine-aspartic acid), which is present on many of the natural ligands, is essential for the interaction between integrins and their corresponding ligands. Synthetic peptides containing the RGD sequence have emerged as promising starting point for the identification, synthesis and development of selective integrin ligands.The incorporation of novel modified and conformationally constrained amino acids can greatly affect the secondary structure of the peptide, in such way that the synthetic ligands prefer to adopt a particular conformation. Consequently, these amino acids serve as useful tools in the de novo design of biologically active peptides, since the spatial orientation of the pharmacophoric groups, which are critical to the molecular recognition process and the ligand receptor interaction, can be defined by the incorporation of such residues in strategic positions.
Оригинален текст от CORDIS (на английски).
Участници
- BIELEFELD UNIVERSITY · BIELEFELDКоординаторГермания
Връзки
Данни: CORDIS, © Европейски съюз
