TY - JOUR
T1 - Essential roles of Homer-1a in homeostatic regulation of pyramidal cell excitability
T2 - A possible link to clinical benefits of electroconvulsive shock
AU - Sakagami, Yu
AU - Yamamoto, Kenji
AU - Sugiura, Shigeki
AU - Inokuchi, Kaoru
AU - Hayashi, Takuji
AU - Kato, Nobuo
PY - 2005/6
Y1 - 2005/6
N2 - Homer-1a/Vesl1S, a member of the scaffold protein family Homer/Vesl, is expressed during seizure and serves to reduce seizure susceptibility. Cellular mechanisms for this feedback regulation were studied in neocortex pyramidal cells by injecting Homer-1 a protein intracellularly. The injection reduced membrane excitability as demonstrated in two ways. First, the resting potential was hyperpolarized by 5-10 mV. Second, the mean frequency of spikes evoked by depolarizing current injection was decreased. This reduction of excitability was prevented by applying each of the followings: the calcium chelator BAPTA, the calcium store depletor cyclopiazonic acid (CPA), the insitol-1,4,5-trisphosphate receptor (IP3R) blocker heparin, the phospholipase C (PLC) inhibitor U-73122, the metabotropic glutamate receptor (mGluR) antagonist 2-methyl-6-(phenylethynyl)-pyridine (MPEP), and the large-conductance calcium activated potassium channel (BK channel) antagonist charybdotoxin. The small-conductance calcium activated potassium channel (SK channel) blocker dequalinium was ineffective. These findings suggest that activation of mGluR by Homer-1 a produced IP3, which caused inositol-induced calcium release and a consequent BK channel opening, thus hyperpolarizing the injected neurons. In slices from rats subjected to electroconvulsive shock (ECS), a comparable reduction of excitability was observed without Homer-1 a injection. The ECS-induced reduction of excitability was abolished by MPEP, charybdotoxin, heparin or BAPTA. Intracellular injection of anti-Homer-1a antibody was suppressive as well, but anti-Homer-1b/c antibody was not. We propose that ECS-induced Homer-1 a stimulated the same pathway as did the injected Homer-1 a, thereby driving a feedback regulation of excitability.
AB - Homer-1a/Vesl1S, a member of the scaffold protein family Homer/Vesl, is expressed during seizure and serves to reduce seizure susceptibility. Cellular mechanisms for this feedback regulation were studied in neocortex pyramidal cells by injecting Homer-1 a protein intracellularly. The injection reduced membrane excitability as demonstrated in two ways. First, the resting potential was hyperpolarized by 5-10 mV. Second, the mean frequency of spikes evoked by depolarizing current injection was decreased. This reduction of excitability was prevented by applying each of the followings: the calcium chelator BAPTA, the calcium store depletor cyclopiazonic acid (CPA), the insitol-1,4,5-trisphosphate receptor (IP3R) blocker heparin, the phospholipase C (PLC) inhibitor U-73122, the metabotropic glutamate receptor (mGluR) antagonist 2-methyl-6-(phenylethynyl)-pyridine (MPEP), and the large-conductance calcium activated potassium channel (BK channel) antagonist charybdotoxin. The small-conductance calcium activated potassium channel (SK channel) blocker dequalinium was ineffective. These findings suggest that activation of mGluR by Homer-1 a produced IP3, which caused inositol-induced calcium release and a consequent BK channel opening, thus hyperpolarizing the injected neurons. In slices from rats subjected to electroconvulsive shock (ECS), a comparable reduction of excitability was observed without Homer-1 a injection. The ECS-induced reduction of excitability was abolished by MPEP, charybdotoxin, heparin or BAPTA. Intracellular injection of anti-Homer-1a antibody was suppressive as well, but anti-Homer-1b/c antibody was not. We propose that ECS-induced Homer-1 a stimulated the same pathway as did the injected Homer-1 a, thereby driving a feedback regulation of excitability.
KW - Glutamate receptor
KW - Intracellular calcium release
KW - Psychosis
KW - Rat
KW - Scaffold protein
KW - Visual cortex
UR - http://www.scopus.com/inward/record.url?scp=21844444821&partnerID=8YFLogxK
U2 - 10.1111/j.1460-9568.2005.04165.x
DO - 10.1111/j.1460-9568.2005.04165.x
M3 - 学術論文
C2 - 16026461
AN - SCOPUS:21844444821
SN - 0953-816X
VL - 21
SP - 3229
EP - 3239
JO - European Journal of Neuroscience
JF - European Journal of Neuroscience
IS - 12
ER -