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Bartels, P.

Publications and source records attributed to Bartels, P..

2 recordsLinked to original sources

Alpha-Actinin-1 promotes activity of the L-type Ca2+ Channel CaV1.2

The L-type Ca2+ channel CaV1.2 governs gene expression, cardiac contraction, and neuronal activity. Binding of -actinin to the IQ motif of CaV1.2 supports its surface localization and postsynaptic targeting in neurons. We report a bi-functional mechanism that restricts CaV1.2 activity to its target sites. We solved separate NMR structures of the IQ motif (residues 1646-1664) bound to -actinin-1 and to apo-calmodulin (apoCaM). The CaV1.2 K1647A and Y1649A mutations, which impair -actinin-1 but not apoCaM binding, but not the F1658A and K1662E mutations, which impair apoCaM but not -actinin-1 binding, decreased single channel open probability, gating charge movement, and its coupling to channel opening. Thus, -actinin recruits CaV1.2 to defined surface regions and simultaneously boosts its open probability so that CaV1.2 is mostly active when appropriately localized.

molecular biology

Ecological speciation in European whitefish is driven by a large-gaped predator

Lake-dwelling fish that form species pairs/flocks characterized by body size divergence are important model systems for speciation research. While several sources of divergent selection have been identified in these systems, their importance for driving the speciation process remains elusive. A major problem is that in retrospect, we cannot distinguish selection pressures that initiated divergence from those acting later in the process. To address this issue, we reconstructed the initial stages of speciation in European whitefish (Coregonus lavaretus) using data from 357 populations of varying age (26-10 000 years). We find that whitefish speciation is driven by a large-growing predator, the northern pike (Esox lucius). Pike initiates divergence by causing a largely plastic differentiation into benthic giants and pelagic dwarfs; ecotypes that will subsequently develop partial reproductive isolation and heritable differences in gill raker number. Using an eco-evolutionary model, we demonstrate how pikes habitat specificity and large gape size are critical for imposing a between-habitat trade-off, causing prey to mature in a safer place or at a safer size. Thereby, we propose a novel mechanism for how predators may cause dwarf/giant speciation in lake-dwelling fish species.

evolutionary biology