Literature DB >> 31646511

An Update to Calcium Binding Proteins.

Jacobo Elíes1, Matilde Yáñez2, Thiago M C Pereira3,4, José Gil-Longo1, David A MacDougall5, Manuel Campos-Toimil6.   

Abstract

Ca2+ binding proteins (CBP) are of key importance for calcium to play its role as a pivotal second messenger. CBP bind Ca2+ in specific domains, contributing to the regulation of its concentration at the cytosol and intracellular stores. They also participate in numerous cellular functions by acting as Ca2+ transporters across cell membranes or as Ca2+-modulated sensors, i.e. decoding Ca2+ signals. Since CBP are integral to normal physiological processes, possible roles for them in a variety of diseases has attracted growing interest in recent years. In addition, research on CBP has been reinforced with advances in the structural characterization of new CBP family members. In this chapter we have updated a previous review on CBP, covering in more depth potential participation in physiopathological processes and candidacy for pharmacological targets in many diseases. We review intracellular CBP that contain the structural EF-hand domain: parvalbumin, calmodulin, S100 proteins, calcineurin and neuronal Ca2+ sensor proteins (NCS). We also address intracellular CBP lacking the EF-hand domain: annexins, CBP within intracellular Ca2+ stores (paying special attention to calreticulin and calsequestrin), proteins that contain a C2 domain (such as protein kinase C (PKC) or synaptotagmin) and other proteins of interest, such as regucalcin or proprotein convertase subtisilin kexins (PCSK). Finally, we summarise the latest findings on extracellular CBP, classified according to their Ca2+ binding structures: (i) EF-hand domains; (ii) EGF-like domains; (iii) ɣ-carboxyl glutamic acid (GLA)-rich domains; (iv) cadherin domains; (v) Ca2+-dependent (C)-type lectin-like domains; (vi) Ca2+-binding pockets of family C G-protein-coupled receptors.

Entities:  

Keywords:  Annexins; Ca2+ sensors; Calcineurin; Calmodulin; Calreticulin; EF-hand domain; Parvalbumin; Protein kinase C; S100 proteins; Synaptotagmin

Mesh:

Substances:

Year:  2020        PMID: 31646511     DOI: 10.1007/978-3-030-12457-1_8

Source DB:  PubMed          Journal:  Adv Exp Med Biol        ISSN: 0065-2598            Impact factor:   2.622


  14 in total

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Review 9.  Function of Drosophila Synaptotagmins in membrane trafficking at synapses.

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Review 10.  New Approach for Untangling the Role of Uncommon Calcium-Binding Proteins in the Central Nervous System.

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