Activation state of the hyperpolarization-activated current modulates temperature-sensitivity of firing in locus coeruleus neurons from bullfrogs.

نویسندگان

  • Joseph M Santin
  • Lynn K Hartzler
چکیده

Locus coeruleus neurons of anuran amphibians contribute to breathing control and have spontaneous firing frequencies that, paradoxically, increase with cooling. We previously showed that cooling inhibits a depolarizing membrane current, the hyperpolarization-activated current (I h) in locus coeruleus neurons from bullfrogs, Lithobates catesbeianus (Santin JM, Watters KC, Putnam RW, Hartzler LK. Am J Physiol Regul Integr Comp Physiol 305: R1451-R1464, 2013). This suggests an unlikely role for I h in generating cold activation, but led us to hypothesize that inhibition of I h by cooling functions as a physiological brake to limit the cold-activated response. Using whole cell electrophysiology in brain slices, we employed 2 mM Cs(+) (an I h antagonist) to isolate the role of I h in spontaneous firing and cold activation in neurons recorded with either control or I h agonist (cyclic AMP)-containing artificial intracellular fluid. I h did not contribute to the membrane potential (V m) and spontaneous firing at 20°C. Although voltage-clamp analysis confirmed that cooling inhibits I h, its lack of involvement in setting baseline firing and V m precluded its ability to regulate cold activation as hypothesized. In contrast, neurons dialyzed with cAMP exhibited greater baseline firing frequencies at 20°C due to I h activation. Our hypothesis was supported when the starting level of I h was enhanced by elevating cAMP because cold activation was converted to more ordinary cold inhibition. These findings indicate that situations leading to enhancement of I h facilitate firing at 20°C, yet the hyperpolarization associated with inhibiting a depolarizing cation current by cooling blunts the net V m response to cooling to oppose normal cold-depolarizing factors. This suggests that the influence of I h activation state on neuronal firing varies in the poikilothermic neuronal environment.

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Title: Activation State of the Hyperpolarization-activated Current (i H ) Modulates Temperature-sensitivity of Firing in Locus Coeruleus Neurons from Bullfrogs

Title: Activation state of the hyperpolarization-activated current (Ih) modulates temperature-sensitivity of firing in locus coeruleus neurons from bullfrogs Author Names: Joseph M. Santin & Lynn K. Hartzler Author Contributions: J.S. & L.H. conception and design of research; J.S. performed experiments; J.S. analyzed data; J.S. & L.H. interpreted results; J.S. wrote the manuscript; J.S. & L.K. ...

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عنوان ژورنال:
  • American journal of physiology. Regulatory, integrative and comparative physiology

دوره 308 12  شماره 

صفحات  -

تاریخ انتشار 2015