| Literature DB >> 21102557 |
Frank Erdmann1, Nico Schäuble, Sven Lang, Martin Jung, Alf Honigmann, Mazen Ahmad, Johanna Dudek, Julia Benedix, Anke Harsman, Annika Kopp, Volkhard Helms, Adolfo Cavalié, Richard Wagner, Richard Zimmermann.
Abstract
In eukaryotes, protein transport into the endoplasmic reticulum (ER) is facilitated by a protein-conducting channel, the Sec61 complex. The presence of large, water-filled pores with uncontrolled ion permeability, as formed by Sec61 complexes in the ER membrane, would seriously interfere with the regulated release of calcium from the ER lumen into the cytosol, an essential mechanism for intracellular signalling. We identified a calmodulin (CaM)-binding motif in the cytosolic N-terminus of mammalian Sec61α that bound CaM but not Ca2+-free apocalmodulin with nanomolar affinity and sequence specificity. In single-channel measurements, CaM potently mediated Sec61-channel closure in Ca2+-dependent manner. At the cellular level, two different CaM antagonists stimulated calcium release from the ER through Sec61 channels. However, protein transport into microsomes was not modulated by Ca2+-CaM. Molecular modelling of the ribosome/Sec61/CaM complexes supports the view that simultaneous ribosome and CaM binding to the Sec61 complex may be possible. Overall, CaM is involved in limiting Ca2+ leakage from the ER.Entities:
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Year: 2010 PMID: 21102557 PMCID: PMC3020109 DOI: 10.1038/emboj.2010.284
Source DB: PubMed Journal: EMBO J ISSN: 0261-4189 Impact factor: 11.598