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lüll Regulation of integrin activity and signalling Gahmberg CG; Fagerholm SC; Nurmi SM; Chavakis T; Marchesan S; Gronholm MBiochim Biophys Acta 2009[Jun]; 1790 (6): 431-44The ability of cells to attach to each other and to the extracellular matrix is of pivotal significance for the formation of functional organs and for the distribution of cells in the body. Several molecular families of proteins are involved in adhesion, and recent work has substantially improved our understanding of their structures and functions. Also, these molecules are now being targeted in the fight against disease. However, less is known about how their activity is regulated. It is apparent that among the different classes of adhesion molecules, the integrin family of adhesion receptors is unique in the sense that they constitute a large group of widely distributed receptors, they are unusually complex and most importantly their activities are strictly regulated from the inside of the cell. The activity regulation is achieved by a complex interplay of cytoskeletal proteins, protein kinases, phosphatases, small G proteins and adaptor proteins. Obviously, we are only in the beginning of our understanding of how the integrins function, but already now fascinating details have become apparent. Here, we describe recent progress in the field, concentrating mainly on mechanistical and structural studies of integrin regulation. Due to the large number of articles dealing with integrins, we focus on what we think are the most exciting and rewarding directions of contemporary research on cell adhesion and integrins.|Amino Acid Sequence[MESH]|Cell Adhesion/*physiology[MESH]|Humans[MESH]|Integrins/chemistry/genetics/*metabolism[MESH]|Ligands[MESH]|Models, Molecular[MESH]|Molecular Sequence Data[MESH]|Protein Conformation[MESH]|Sequence Alignment[MESH]|Signal Transduction/*physiology[MESH] |