Half-calcified Calmodulin Promotes Basal Activity and Inactivation of the Calcium Channel CaV1.2.
Bartels, P.; Salveson, I. C.; Coleman, A. M.; Anderson, D.; Jeng, G.; Estrada-Tobar, Z. M.; Man, K. N. M.; Yu, Q.; Kuzmenkina, E.; Nieves-Cintron, M.; Navedo, M. F.; Horne, M. C.; Hell, J. W.; Ames, J. B.
Show abstract
The L-type Ca2+ channel CaV1.2 controls gene expression, cardiac contraction, and neuronal activity. Calmodulin (CaM) governs CaV1.2 open probability (Po) and Ca2+-dependent inactivation (CDI) but the mechanisms remain unclear. We identified a half Ca2+-saturated CaM species (Ca2/CaM) with Ca2+ bound solely at the third and fourth EF-hands (EF3 and EF4) under resting Ca2+ concentrations (50-100 nM) that constitutively pre-associates with CaV1.2 to promote Po and CDI. We present an NMR structure of a complex between the CaV1.2 IQ motif (residues 1644-1665) and Ca2/CaM12, a calmodulin mutant in which Ca2+ binding to EF1 and EF2 is completely disabled. The CaM12 N-lobe does not interact with the IQ motif. The CaM12 C-lobe bound two Ca2+ ions and formed close contacts with IQ residues I1654 and Y1657. I1654A and Y1657D mutations impaired CaM binding, CDI, and Po, as did disabling Ca2+ binding to EF3 and EF4 in the CaM34 mutant when compared to wildtype CaM. Accordingly, a previously unappreciated Ca2/CaM species promotes CaV1.2 Po and CDI identifying Ca2/CaM as an important mediator of Ca signaling.
Matching journals
The top 1 journal accounts for 50% of the predicted probability mass.
Similar papers in this journal
- Calcium dependence of both lobes of calmodulin is involved in binding to a cytoplasmic domain of SK channels 97%
- Estimating the true stability of the prehydrolytic outward-facing state in an ABC protein 96%
- Ca2+-inactivation of the mammalian ryanodine receptor type 1 in a lipidic environment revealed by cryo-EM 96%
Similar papers in this journal
- Inhibition of CaV1.4 channels by CaV3 channel antagonists ML218 and Z944 96%
- The versatile regulation of K2P channels by polyanionic lipids of the phosphoinositide (PIP2) and fatty acid metabolism (LC-CoA) 95%
- Structure of KCNH2 cyclic nucleotide-binding homology domain reveals a functionally vital salt-bridge 94%
Similar papers in this journal
- A series of Orai1 gating checkpoints in transmembrane and cytosolic regions requires clearance for CRAC channel opening 93%
- Functional investigation of a putative calcium-binding site involved in the inhibition of inositol 1,4,5-trisphosphate receptor activity 93%
- The ATPase mechanism of myosin 15, the molecular motor mutated in DFNB3 deafness 93%
Similar papers in this journal
"Similar papers" are the closest papers from that journal in the model's embedding space. They show what the match is built on, but the ranking comes mostly from a classifier over the whole training set, not from these examples alone.