Spike-mediated and graded inhibitory synaptic transmission between leech interneurons: evidence for shared release sites.
نویسندگان
چکیده
Inhibitory synaptic transmission between leech heart interneurons consist of two components: graded, gated by Ca2+ entering by low-threshold [low-voltage-activated (LVA)] Ca channels and spike-mediated, gated by Ca2+ entering by high-threshold [high-voltage-activated (HVA)] Ca channels. Changes in presynaptic background Ca2+ produced by Ca2+ influx through LVA channels modulate spike-mediated transmission, suggesting LVA channels have access to release sites controlled by HVA channels. Here we explore whether spike-mediated and graded transmission can use the same release sites and thus how Ca2+ influx by HVA and LVA Ca channels might interact to evoke neurotransmitter release. We recorded pre- and postsynaptic currents from voltage-clamped heart interneurons bathed in 0 mM Na+/5 mM Ca2+ saline. Using different stimulating paradigms and inorganic Ca channel blockers, we show that strong graded synaptic transmission can occlude high-threshold/spike-mediated synaptic transmission when evoked simultaneously. Suppression of LVA Ca currents diminishes graded release and concomitantly increases the ability of Ca2+ entering by HVA channels to release transmitter. Uncaging of Ca chelator corroborates that graded release occludes spike-mediated transmission. Our results indicate that both graded and spike-mediated synaptic transmission depend on the same readily releasable pool of synaptic vesicles. Thus Ca2+, entering cells through different Ca channels (LVA and HVA), acts to gate release of the same synaptic vesicles. The data argue for a closer location of HVA Ca channels to release sites than LVA Ca channels. The results are summarized in a conceptual model of a heart interneuron release site.
منابع مشابه
Ivanov & Calabrese Shared Sites for Spike-mediated and Graded Transmission Shared Sites for Spike-mediated and Graded Transmission
TITLE: Spike-mediated and graded inhibitory synaptic transmission between leech interneurons: Evidence for shared release sites. Shared sites for spike-mediated and graded transmission 2 Inhibitory synaptic transmission between leech heart interneurons consist of two components; graded, gated by Ca 2+ entering via low-threshold (LVA) Ca channels, and spike-mediated, gated by Ca 2+ entering via ...
متن کاملTITLE : Graded inhibitory synaptic transmission between leech interneurons : Assessing the roles or two kinetically distinct low - threshold Ca currents
TITLE: Graded inhibitory synaptic transmission between leech interneurons: Assessing the roles or two kinetically distinct low-threshold Ca currents. LVA Ca currents and graded synaptic transmission 2 In leeches, two pairs of reciprocally inhibitory heart interneurons that form the core oscillators of the pattern-generating network for heartbeat possess both high-and low-threshold (HVA and LVA)...
متن کاملGraded inhibitory synaptic transmission between leech interneurons: assessing the roles of two kinetically distinct low-threshold Ca currents.
In leeches, two pairs of reciprocally inhibitory heart interneurons that form the core oscillators of the pattern-generating network for heartbeat possess both high- and low-threshold (HVA and LVA) Ca channels. LVA Ca current has two kinetically distinct components (one rapidly activating/inactivating, ICaF, and another slowly activating/inactivating, ICaS) that mediate graded transmission, gen...
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At the core of the rhythmically active leech heartbeat central pattern generator are pairs of mutually inhibitory interneurons. Synaptic transmission between these interneurons consists of spike-mediated and graded components, both of which wax and wane on a cycle-by-cycle basis. Low-threshold Ca2+ currents gate the graded component. Ca imaging experiments indicate that these low-threshold curr...
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We used intracellular recording and single electrode voltage-clamp techniques to explore Ca2+ currents and their relation to graded and spike-mediated synaptic transmissions in leech heart interneurons. Low-threshold Ca2+ currents (activation begins below -50 mV) consist of a rapidly inactivating component (I(CaF)) and a slowly inactivating component (I(CaS)). The apparent inactivation kinetics...
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ورودعنوان ژورنال:
- Journal of neurophysiology
دوره 96 1 شماره
صفحات -
تاریخ انتشار 2006