The Periplasmic Loop Provides Stability to the Open State of the CorA Magnesium Channel |
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Authors: | Palombo Isolde Daley Daniel O Rapp Mikaela |
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Affiliation: | From the Center for Biomembrane Research, Department of Biochemistry and Biophysics, Stockholm University, 10691 Stockholm, Sweden and. |
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Abstract: | Crystal structures of the CorA Mg(2+) channel have suggested that metal binding in the cytoplasmic domain stabilizes the pentamer in a closed conformation. The open metal free state of the channel is, however, still structurally uncharacterized. Here, we have attempted to map conformational states of CorA from Thermotoga maritima by determining which residues support the pentameric structure in the presence or absence of Mg(2+). We find that when Mg(2+) is present, the pentamer is stabilized by the putative gating sites (M1/M2) in the cytoplasmic domain. Strikingly however, we find that the conserved and functionally important periplasmic loop is vital for the integrity of the pentamer when Mg(2+) is absent from the M1/M2 sites. Thus, although the periplasmic loops were largely disordered in the x-ray structures of the closed channel, our data suggests a prominent role for the loops in stabilizing the open conformation of the CorA channels. |
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Keywords: | Magnesium Magnesium Homeostasis Membrane Proteins Membrane Transport Protein Assembly Transporters CorA Conformational Transition |
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