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1.
Br J Pharmacol ; 172(7): 1664-76, 2015 Apr.
Article in English | MEDLINE | ID: mdl-25303710

ABSTRACT

Annexin A2 (AnxA2) was originally identified as a substrate of the pp60v-src oncoprotein in transformed chicken embryonic fibroblasts. It is an abundant protein that associates with biological membranes as well as the actin cytoskeleton, and has been implicated in intracellular vesicle fusion, the organization of membrane domains, lipid rafts and membrane-cytoskeleton contacts. In addition to an intracellular role, AnxA2 has been reported to participate in processes localized to the cell surface including extracellular protease regulation and cell-cell interactions. There are many reports showing that AnxA2 is differentially expressed between normal and malignant tissue and potentially involved in tumour progression. An important aspect of AnxA2 function relates to its interaction with small Ca(2+) -dependent adaptor proteins called S100 proteins, which is the topic of this review. The interaction between AnxA2 and S100A10 has been very well characterized historically; more recently, other S100 proteins have been shown to interact with AnxA2 as well. The biochemical evidence for the occurrence of these protein interactions will be discussed, as well as their function. Recent studies aiming to generate inhibitors of S100 protein interactions will be described and the potential of these inhibitors to further our understanding of AnxA2 S100 protein interactions will be discussed.


Subject(s)
Annexin A2/metabolism , S100 Proteins/metabolism , Animals , Annexin A2/chemistry , Humans , Protein Conformation , S100 Proteins/chemistry
2.
FEBS Lett ; 587(19): 3210-5, 2013 Oct 01.
Article in English | MEDLINE | ID: mdl-23994525

ABSTRACT

Annexin A2 (AnxA2) and S100A10 are known to form a molecular complex. Using fluorescence-based binding assays, we show that both proteins are localised on the cell surface, in a molecular form that allows mutual interaction. We hypothesized that binding between these proteins could facilitate cell-cell interactions. For cells that express surface S100A10 and surface annexin A2, cell-cell interactions can be blocked by competing with the interaction between these proteins. Thus an annexin A2-S100A10 molecular bridge participates in cell-cell interactions, revealing a hitherto unexplored function of this protein interaction.


Subject(s)
Annexin A2/metabolism , Breast Neoplasms/pathology , Cell Adhesion/physiology , Endothelium, Vascular/cytology , S100 Proteins/metabolism , Annexin A2/physiology , Breast Neoplasms/metabolism , Cell Line, Tumor , Cells, Cultured , Female , Humans , Protein Binding , S100 Proteins/physiology
3.
J Med Chem ; 54(7): 2080-94, 2011 Apr 14.
Article in English | MEDLINE | ID: mdl-21375334

ABSTRACT

S100 proteins are small adaptors that regulate the activity of partner proteins by virtue of direct protein interactions. Here, we describe the first small molecule blockers of the interaction between S100A10 and annexin A2. Molecular docking yielded candidate blockers that were screened for competition of the binding of an annexin A2 peptide to S100A10. Several inhibitory clusters were identified with some containing compounds with potency in the lower micromolar range. We chose 3-hydroxy-1-(2-hydroxypropyl)-5-(4-isopropylphenyl)-4-(4-methylbenzoyl)-1H-pyrrol-2(5H)-one (1a) as a starting point for structure-activity studies. These confirmed the hypothetical binding mode from the virtual screen for this series of molecules. Selected compounds disrupted the physiological complex of annexin A2 and S100A10, both in a broken cell preparation and inside MDA-MB-231 breast cancer cells. Thus, this class of compounds has promising properties as inhibitors of the interaction between annexin A2 and S100A10 and may help to elucidate the cellular function of this protein interaction.


Subject(s)
Annexin A2/metabolism , Drug Design , Pyrroles/chemistry , Pyrroles/pharmacology , S100 Proteins/metabolism , Annexin A2/chemistry , Drug Evaluation, Preclinical , Ligands , Models, Molecular , Peptide Fragments/metabolism , Protein Binding/drug effects , Protein Conformation , Pyrroles/chemical synthesis , S100 Proteins/chemistry , Structure-Activity Relationship , User-Computer Interface
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