Literature DB >> 8637852

Common molecular scaffold for two unrelated RGD molecules.

K R Ely1, T J Kunicki, R Kodandapani.   

Abstract

The sequence arginine-glycine-aspartic acid (RGD) is important for recognition of cell adhesion proteins by cell surface receptors (integrins). This tripeptide sequence is present in a number of proteins including fibronectin, vitronectin, von Willebrand factor and fibrinogen. Specific and selective binding of the RGD sequence by different receptors suggests that the conformational orientation of the tripeptide is critical for stereochemical recognition. The crystal structures of two proteins that contain the RGD signal were determined: (i) the cell-binding type III module of fibronectin (FNIII10) and (ii) an anti-receptor antibody fragment (OPG2) that is a functional RGD ligand mimic with an RYD recognition site in the variable (VH) domain. Both of these modules are folded into beta-barrels with two layers of antiparallel beta-sheets enclosing a hydrophobic core. Since these molecules each contain the RGD (RYD) sequence, there is a unique opportunity for direct structural comparison. The comparison has defined a common molecular scaffold in these two unrelated molecules. Within this framework, the RGD (RYD) sites are located in structurally related loops in the two modules, i.e. at one end of the scaffold in a long loop connecting the last two strands in one of the beta-sheets. This shared scaffold is used for the stereochemical presentation of the RGD site for receptor recognition.

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Year:  1995        PMID: 8637852     DOI: 10.1093/protein/8.8.823

Source DB:  PubMed          Journal:  Protein Eng        ISSN: 0269-2139


  2 in total

1.  Role of vitronectin-like protein in Agrobacterium attachment and transformation of Arabidopsis cells.

Authors:  Hélène Clauce-Coupel; Sophie Chateau; Corinne Ducrocq; Vincent Niot; Srini Kaveri; Frédéric Dubois; Brigitte Sangwan-Norreel; Rajbir S Sangwan
Journal:  Protoplasma       Date:  2008-10-08       Impact factor: 3.356

2.  Conformational flexibility and crystallization of tandemly linked type III modules of human fibronectin.

Authors:  A Lombardo; Y Wang; C Z Ni; X Dai; C D Dickinson; R Kodandapani; S Chiang; C A White; F Pio; N H Xuong; R C Hamlin; E Ruoslahti; K R Ely
Journal:  Protein Sci       Date:  1996-09       Impact factor: 6.725

  2 in total

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