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1 - 25 of 85 results for author:"Adelman J." in Literature citations

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Sustaining sleep spindles through enhanced SK2-channel activity consolidates sleep and elevates arousal threshold.

Wimmer R.D., Astori S., Bond C.T., Rovo Z., Chatton J.Y., Adelman J.P., Franken P., Luthi A.

J. Neurosci. 32:13917-13928(2012) · Mapped (8)

Paradoxical contribution of SK3 and GIRK channels to the activation of mouse vomeronasal organ.

Kim S., Ma L., Jensen K.L., Kim M.M., Bond C.T., Adelman J.P., Yu C.R.

Nat. Neurosci. 15:1236-1244(2012) · Mapped (3)

SK2 channel modulation contributes to compartment-specific dendritic plasticity in cerebellar Purkinje cells.

Ohtsuki G., Piochon C., Adelman J.P., Hansel C.

Neuron 75:108-120(2012) · Mapped (8)

Modulation of endothelial SK3 channel activity by Ca²+dependent caveolar trafficking.

Lin M.T., Adelman J.P., Maylie J.

Am. J. Physiol., Cell Physiol. 303:C318-27(2012) · Mapped (3)

SK2 and SK3 expression differentially affect firing frequency and precision in dopamine neurons.

Deignan J., Lujan R., Bond C., Riegel A., Watanabe M., Williams J.T., Maylie J., Adelman J.P.

Neuroscience 217:67-76(2012) · Mapped (11)

Small-conductance Ca2+-activated K+ channels: form and function.

Adelman J.P., Maylie J., Sah P.

Annu. Rev. Physiol. 74:245-269(2012) · Mapped (13)

The Ca(V)3.3 calcium channel is the major sleep spindle pacemaker in thalamus.

Astori S., Wimmer R.D., Prosser H.M., Corti C., Corsi M., Liaudet N., Volterra A., Franken P., Adelman J.P., Luthi A.

Proc. Natl. Acad. Sci. U.S.A. 108:13823-13828(2011) · Mapped (7)

The SK2-long isoform directs synaptic localization and function of SK2-containing channels.

Allen D., Bond C.T., Lujan R., Ballesteros-Merino C., Lin M.T., Wang K., Klett N., Watanabe M., Shigemoto R., Stackman R.W. Jr. et al.

Nat. Neurosci. 14:744-749(2011) · Mapped (8)

Sensing muscle ischemia: coincident detection of acid and ATP via interplay of two ion channels.

Birdsong W.T., Fierro L., Williams F.G., Spelta V., Naves L.A., Knowles M., Marsh-Haffner J., Adelman J.P., Almers W., Elde R.P. et al.

Neuron 68:739-749(2010) · Mapped (1)

Constraint-based, homology model of the extracellular domain of the epithelial Na+ channel alpha subunit reveals a mechanism of channel activation by proteases.

Kashlan O.B., Adelman J.L., Okumura S., Blobner B.M., Zuzek Z., Hughey R.P., Kleyman T.R., Grabe M.

J. Biol. Chem. 286:649-660(2011) · Mapped (4)

Coupled activity-dependent trafficking of synaptic SK2 channels and AMPA receptors.

Lin M.T., Lujan R., Watanabe M., Frerking M., Maylie J., Adelman J.P.

J. Neurosci. 30:11726-11734(2010) · Mapped (8)

The mechanical properties of PCNA: implications for the loading and function of a DNA sliding clamp.

Adelman J.L., Chodera J.D., Kuo I.F., Miller T.F., Barsky D.

Biophys. J. 98:3062-3069(2010) · Mapped (1)

Selective cognitive deficits and reduced hippocampal brain-derived neurotrophic factor mRNA expression in small-conductance calcium-activated K+ channel deficient mice.

Jacobsen J.P., Redrobe J.P., Hansen H.H., Petersen S., Bond C.T., Adelman J.P., Mikkelsen J.D., Mirza N.R.

Neuroscience 163:73-81(2009) · Mapped (10)

Genetic deficit of SK3 and IK1 channels disrupts the endothelium-derived hyperpolarizing factor vasodilator pathway and causes hypertension.

Brahler S., Kaistha A., Schmidt V.J., Wolfle S.E., Busch C., Kaistha B.P., Kacik M., Hasenau A.L., Grgic I., Si H. et al.

Circulation 119:2323-2332(2009) · Mapped (6)

Ablation of a Ca2+-activated K+ channel (SK2 channel) results in action potential prolongation in atrial myocytes and atrial fibrillation.

Li N., Timofeyev V., Tuteja D., Xu D., Lu L., Zhang Q., Zhang Z., Singapuri A., Albert T.R., Rajagopal A.V. et al.

J. Physiol. (Lond.) 587:1087-1100(2009) · Mapped (10)

SK2 channels are required for function and long-term survival of efferent synapses on mammalian outer hair cells.

Murthy V., Maison S.F., Taranda J., Haque N., Bond C.T., Elgoyhen A.B., Adelman J.P., Liberman M.C., Vetter D.E.

Mol. Cell. Neurosci. 40:39-49(2009) · Mapped (9)

Expression of the SK2 calcium-activated potassium channel is required for cholinergic function in mouse cochlear hair cells.

Kong J.H., Adelman J.P., Fuchs P.A.

J. Physiol. (Lond.) 586:5471-5485(2008) · Mapped (8)

Neurotransmitter modulation of small-conductance Ca2+-activated K+ channels by regulation of Ca2+ gating.

Maingret F., Coste B., Hao J., Giamarchi A., Allen D., Crest M., Litchfield D.W., Adelman J.P., Delmas P.

Neuron 59:439-449(2008) · Mapped (12)

SK3 K+ channel-deficient mice have enhanced dopamine and serotonin release and altered emotional behaviors.

Jacobsen J.P., Weikop P., Hansen H.H., Mikkelsen J.D., Redrobe J.P., Holst D., Bond C.T., Adelman J.P., Christophersen P., Mirza N.R.

Genes Brain Behav. 7:836-848(2008) · Mapped (3)

T-type Ca2+ channels, SK2 channels and SERCAs gate sleep-related oscillations in thalamic dendrites.

Cueni L., Canepari M., Lujan R., Emmenegger Y., Watanabe M., Bond C.T., Franken P., Adelman J.P., Luthi A.

Nat. Neurosci. 11:683-692(2008) · Mapped (9)

Small-conductance, Ca(2+) -activated K+ channel 2 is the key functional component of SK channels in mouse urinary bladder.

Thorneloe K.S., Knorn A.M., Doetsch P.E., Lashinger E.S., Liu A.X., Bond C.T., Adelman J.P., Nelson M.T.

Am. J. Physiol. Regul. Integr. Comp. Physiol. 294:R1737-43(2008) · Mapped (8)

SK2 channel plasticity contributes to LTP at Schaffer collateral-CA1 synapses.

Lin M.T., Lujan R., Watanabe M., Adelman J.P., Maylie J.

Nat. Neurosci. 11:170-177(2008) · Mapped (8)

Functional roles of a Ca2+-activated K+ channel in atrioventricular nodes.

Zhang Q., Timofeyev V., Lu L., Li N., Singapuri A., Long M.K., Bond C.T., Adelman J.P., Chiamvimonvat N.

Circ. Res. 102:465-471(2008) · Mapped (8)

Genetic deletion of SK2 channels in mouse inner hair cells prevents the developmental linearization in the Ca2+ dependence of exocytosis.

Johnson S.L., Adelman J.P., Marcotti W.

J. Physiol. (Lond.) 583:631-646(2007) · Mapped (8)

Myometrial expression of small conductance Ca2+-activated K+ channels depresses phasic uterine contraction.

Brown A., Cornwell T., Korniyenko I., Solodushko V., Bond C.T., Adelman J.P., Taylor M.S.

Am. J. Physiol., Cell Physiol. 292:C832-40(2007) · Mapped (3)

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